Fluorescent DNA-based enzyme sensors.
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E. Kool | Nan Dai | Eric T Kool | N. Dai
[1] D C Ward,et al. Fluorescence studies of nucleotides and polynucleotides. I. Formycin, 2-aminopurine riboside, 2,6-diaminopurine riboside, and their derivatives. , 1969, The Journal of biological chemistry.
[2] N. Leonard,et al. Defined dimensional changes in enzyme substrates and cofactors. Synthesis of lin-benzoadenosine and enzymatic evaluation of derivatives of the benzopurines. , 1976, Journal of the American Chemical Society.
[3] R. Gumport,et al. T4 RNA ligase catalyzed synthesis of base analogue-containing oligodeoxyribonucleotides and a characterization of their thermal stabilities. , 1985, Nucleic acids research.
[4] D. Draper,et al. On the recognition of helical RNA by cobra venom V1 nuclease. , 1986, The Journal of biological chemistry.
[5] L. Nilsson,et al. Structure and dynamics of a fluorescent DNA oligomer containing the EcoRI recognition sequence: fluorescence, molecular dynamics, and NMR studies. , 1989, Biochemistry.
[6] E. Vermaas,et al. Selection of single-stranded DNA molecules that bind and inhibit human thrombin , 1992, Nature.
[7] J. Feigon,et al. Thrombin-binding DNA aptamer forms a unimolecular quadruplex structure in solution. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[8] A. Tulinsky,et al. The structure of alpha-thrombin inhibited by a 15-mer single-stranded DNA aptamer. , 1994, The Journal of biological chemistry.
[9] Mark F. Kubik,et al. High-affinity RNA ligands to human alpha-thrombin , 1994, Nucleic Acids Res..
[10] S. Benkovic,et al. A fluorescence-based assay for monitoring helicase activity. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[11] J M Beechem,et al. Pre-steady-state kinetic analysis of sequence-dependent nucleotide excision by the 3'-exonuclease activity of bacteriophage T4 DNA polymerase. , 1994, Biochemistry.
[12] K. Bjornson,et al. Single-turnover kinetics of helicase-catalyzed DNA unwinding monitored continuously by fluorescence energy transfer. , 1994, Biochemistry.
[13] Y. Pommier,et al. Incorporation of a fluorescent guanosine analog into oligonucleotides and its application to a real time assay for the HIV-1 integrase 3'-processing reaction. , 1995, Nucleic acids research.
[14] A Kumar,et al. Equilibrium and Stopped-flow Kinetic Studies of Interaction between T7 RNA Polymerase and Its Promoters Measured by Protein and 2-Aminopurine Fluorescence Changes* , 1996, The Journal of Biological Chemistry.
[15] Nebojsa Janjic,et al. Inhibitory DNA ligands to platelet-derived growth factor B-chain. , 1996, Biochemistry.
[16] N. Reich,et al. Targeted base stacking disruption by the EcoRI DNA methyltransferase. , 1996, Biochemistry.
[17] S. Sastry,et al. A direct real-time spectroscopic investigation of the mechanism of open complex formation by T7 RNA polymerase. , 1996, Biochemistry.
[18] K. Livak,et al. Real time quantitative PCR. , 1996, Genome research.
[19] C. Martin,et al. Thermodynamic and kinetic measurements of promoter binding by T7 RNA polymerase. , 1996, Biochemistry.
[20] E. Kool,et al. Naphthalene, Phenanthrene, and Pyrene as DNA Base Analogues: Synthesis, Structure, and Fluorescence in DNA. , 1996, Journal of the American Chemical Society.
[21] Y. Husimi,et al. Fluorescence-, isotope- or biotin-labeling of the 5 '-end of single-stranded DNA/RNA using T4 RNA ligase. , 1997, Nucleic acids research.
[22] R. Lloyd,et al. The Role of Base Flipping in Damage Recognition and Catalysis by T4 Endonuclease V* , 1997, The Journal of Biological Chemistry.
[23] M F Kubik,et al. Oligonucleotide inhibitors of human thrombin that bind distinct epitopes. , 1997, Journal of molecular biology.
[24] J M Beechem,et al. Stopped-flow fluorescence study of precatalytic primer strand base-unstacking transitions in the exonuclease cleft of bacteriophage T4 DNA polymerase. , 1998, Biochemistry.
[25] S. Halford,et al. Reactions of the eco RV restriction endonuclease with fluorescent oligodeoxynucleotides: identical equilibrium constants for binding to specific and non-specific DNA. , 1998, Journal of molecular biology.
[26] P. Dehaseth,et al. Equilibrium and kinetic parameters of the sequence-specific interaction of Escherichia coli RNA polymerase with nontemplate strand oligodeoxyribonucleotides. , 1998, Biochemistry.
[27] R. Eritja,et al. Exonuclease-polymerase active site partitioning of primer-template DNA strands and equilibrium Mg2+ binding properties of bacteriophage T4 DNA polymerase. , 1998, Biochemistry.
[28] G. A. Woolley,et al. A fluorescence-based assay for ribonuclease A activity. , 1998, Analytical biochemistry.
[29] J. Beechem,et al. Direct Real Time Observation of Base Flipping by theEcoRI DNA Methyltransferase* , 1998, The Journal of Biological Chemistry.
[30] A. Ellington,et al. Adapting selected nucleic acid ligands (aptamers) to biosensors. , 1998, Analytical chemistry.
[31] S. Klimašauskas,et al. 2-Aminopurine as a fluorescent probe for DNA base flipping by methyltransferases. , 1998, Nucleic acids research.
[32] R. Baker,et al. Identification of a transient excision intermediate at the crossroads between DNA polymerase extension and proofreading pathways. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[33] W. B. Caldwell,et al. Single-molecule fluorescence spectroscopy of enzyme conformational dynamics and cleavage mechanism. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[34] J. Beechem,et al. DNA Bending by EcoRI DNA Methyltransferase Accelerates Base Flipping but Compromises Specificity* , 1999, The Journal of Biological Chemistry.
[35] J. Wölcke,et al. Functional roles of the conserved aromatic amino acid residues at position 108 (motif IV) and position 196 (motif VIII) in base flipping and catalysis by the N6-adenine DNA methyltransferase from Thermus aquaticus. , 1999, Biochemistry.
[36] J. Stivers,et al. Kinetic mechanism of damage site recognition and uracil flipping by Escherichia coli uracil DNA glycosylase. , 1999, Biochemistry.
[37] Eric T. Kool,et al. A specific partner for abasic damage in DNA , 1999, Nature.
[38] S. Jayasena. Aptamers: an emerging class of molecules that rival antibodies in diagnostics. , 1999, Clinical chemistry.
[39] D. Lilley,et al. Extensive central disruption of a four-way junction on binding CCE1 resolving enzyme. , 2000, Journal of molecular biology.
[40] E. Kool,et al. Pyrene nucleotide as a mechanistic probe: evidence for a transient abasic site-like intermediate in the bypass of dipyrimidine photoproducts by T7 DNA polymerase. , 2000, Biochemistry.
[41] W. Tan,et al. Using molecular beacons to probe molecular interactions between lactate dehydrogenase and single-stranded DNA. , 2000, Analytical chemistry.
[42] W. Mark Saltzman,et al. Synthetic DNA delivery systems , 2000, Nature Biotechnology.
[43] F. Balis,et al. Real-time fluorescence assay for O6-alkylguanine-DNA alkyltransferase. , 2000, Analytical biochemistry.
[44] A. Jeltsch,et al. Molecular enzymology of the EcoRV DNA-(Adenine-N (6))-methyltransferase: kinetics of DNA binding and bending, kinetic mechanism and linear diffusion of the enzyme on DNA. , 2000, Journal of molecular biology.
[45] W. Mark Saltzman,et al. Enhancement of transfection by physical concentration of DNA at the cell surface , 2000, Nature Biotechnology.
[46] Xiaodong Cheng,et al. Functional Roles of the Conserved Threonine 250 in the Target Recognition Domain of HhaI DNA Methyltransferase* , 2000, The Journal of Biological Chemistry.
[47] D. Rao,et al. Binding of EcoP15I DNA methyltransferase to DNA reveals a large structural distortion within the recognition sequence. , 2000, Journal of molecular biology.
[48] P. Beal,et al. Analysis of the RNA-editing reaction of ADAR2 with structural and fluorescent analogues of the GluR-B R/G editing site. , 2000, Biochemistry.
[49] P. Beal,et al. Conformational changes that occur during an RNA-editing adenosine deamination reaction. , 2001, The Journal of biological chemistry.
[50] N. Thelwell,et al. Duplex Scorpion primers in SNP analysis and FRET applications. , 2001, Nucleic acids research.
[51] J. Stivers,et al. Turning On Uracil-DNA Glycosylase Using a Pyrene Nucleotide Switch* , 2001, The Journal of Biological Chemistry.
[52] Smita S. Patel,et al. Peculiar 2-Aminopurine Fluorescence Monitors the Dynamics of Open Complex Formation by Bacteriophage T7 RNA Polymerase* , 2001, The Journal of Biological Chemistry.
[53] J. Liu,et al. Insight into the catalytic mechanism of DNA polymerase beta: structures of intermediate complexes. , 2001, Biochemistry.
[54] J. Stivers,et al. Uracil DNA glycosylase: insights from a master catalyst. , 2001, Archives of biochemistry and biophysics.
[55] K. Anderson,et al. Y265H Mutator Mutant of DNA Polymerase β , 2001, The Journal of Biological Chemistry.
[56] A. Ellington,et al. Aptamer beacons for the direct detection of proteins. , 2001, Analytical biochemistry.
[57] C. Martin,et al. Fluorescence characterization of the transcription bubble in elongation complexes of T7 RNA polymerase. , 2001, Journal of molecular biology.
[58] A M Gewirtz,et al. Chimeric RNA-DNA molecular beacon assay for ribonuclease H activity. , 2002, Molecular and cellular probes.
[59] D. Wigley,et al. Direct measurement of single-stranded DNA translocation by PcrA helicase using the fluorescent base analogue 2-aminopurine. , 2002, Biochemistry.
[60] Andres Metspalu,et al. Evaluating the arrayed primer extension resequencing assay of TP53 tumor suppressor gene , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[61] Taekjip Ha,et al. Initiation and re-initiation of DNA unwinding by the Escherichia coli Rep helicase , 2002, Nature.
[62] M. Levy,et al. ATP-dependent allosteric DNA enzymes. , 2002, Chemistry & biology.
[63] Qiuping Guo,et al. A new class of homogeneous nucleic acid probes based on specific displacement hybridization. , 2002, Nucleic acids research.
[64] Cuihua Liu,et al. Promoter Clearance by T7 RNA Polymerase , 2002, The Journal of Biological Chemistry.
[65] Weihong Tan,et al. Molecular aptamer beacons for real-time protein recognition. , 2002, Biochemical and biophysical research communications.
[66] S. Mandal,et al. Using 2-Aminopurine Fluorescence to Measure Incorporation of Incorrect Nucleotides by Wild Type and Mutant Bacteriophage T4 DNA Polymerases* , 2002, The Journal of Biological Chemistry.
[67] E. Kool,et al. Libraries of composite polyfluors built from fluorescent deoxyribosides. , 2002, Journal of the American Chemical Society.
[68] Yingfu Li,et al. An efficient RNA-cleaving DNA enzyme that synchronizes catalysis with fluorescence signaling. , 2003, Journal of the American Chemical Society.
[69] Nobuko Hamaguchi,et al. Aptamer-based biosensor arrays for detection and quantification of biological macromolecules. , 2003, Analytical biochemistry.
[70] C. M. Joyce,et al. Use of 2-aminopurine fluorescence to examine conformational changes during nucleotide incorporation by DNA polymerase I (Klenow fragment). , 2003, Biochemistry.
[71] Yingfu Li,et al. Structure-switching signaling aptamers. , 2003, Journal of the American Chemical Society.
[72] Jianmin Gao,et al. A Four-Base Paired Genetic Helix with Expanded Size , 2003, Science.
[73] Sean J. Johnson,et al. Processive DNA synthesis observed in a polymerase crystal suggests a mechanism for the prevention of frameshift mutations , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[74] L. Strokovskaya,et al. Direct fluorometric measurement of hepatitis C virus helicase activity , 2004, FEBS letters.
[75] Gang Bao,et al. Dual FRET molecular beacons for mRNA detection in living cells. , 2004, Nucleic acids research.
[76] S. L. Le Grice,et al. Using pyrrolo-deoxycytosine to probe RNA/DNA hybrids containing the human immunodeficiency virus type-1 3' polypurine tract. , 2004, Nucleic acids research.
[77] A. Maksimenko,et al. A molecular beacon assay for measuring base excision repair activities. , 2004, Biochemical and biophysical research communications.
[78] M. Goodman,et al. To Slip or Skip, Visualizing Frameshift Mutation Dynamics for Error-prone DNA Polymerases* , 2004, Journal of Biological Chemistry.
[79] Chunli Bai,et al. Signaling aptamer/protein binding by a molecular light switch complex. , 2004, Analytical chemistry.
[80] Y. Yang,et al. Real-time quantitative assay of telomerase activity using the duplex scorpion primer , 2004, Biotechnology Letters.
[81] H. Schluesener,et al. Ultrasensitive detection of protein using an aptamer-based exonuclease protection assay. , 2004, Analytical chemistry.
[82] M. Kurz,et al. ADP-specific sensors enable universal assay of protein kinase activity. , 2004, Chemistry & biology.
[83] J. Knutson,et al. Characterization and applications of CataCleave probe in real-time detection assays. , 2004, Analytical biochemistry.
[84] E. Kool,et al. Modified DNA analogues that sense light exposure with color changes. , 2004, Journal of the American Chemical Society.
[85] Jennifer L. Harris,et al. PNA-encoded protease substrate microarrays. , 2004, Chemistry & biology.
[86] Razvan Nutiu,et al. Signaling Aptamers for Monitoring Enzymatic Activity and for Inhibitor Screening , 2004, Chembiochem : a European journal of chemical biology.
[87] Anita C Jones,et al. Time-resolved fluorescence of 2-aminopurine as a probe of base flipping in M.HhaI–DNA complexes , 2005, Nucleic acids research.
[88] R. S. Coleman,et al. Effect of protein binding on ultrafast DNA dynamics: characterization of a DNA:APE1 complex. , 2005, Biophysical journal.
[89] J. Justin Gooding,et al. Proximity extension of circular DNA aptamers with real-time protein detection , 2005, Nucleic acids research.
[90] T. Su,et al. DNA bending by M.EcoKI methyltransferase is coupled to nucleotide flipping , 2005, Nucleic acids research.
[91] Juan José Díaz-Mochón,et al. Combinatorial libraries - from solution to 2D microarrays. , 2005, Chemical communications.
[92] Yi Hu,et al. Activity-based high-throughput screening of enzymes by using a DNA microarray. , 2005, Angewandte Chemie.
[93] Carlos Bustamante,et al. Direct Observation of the Three-State Folding of a Single Protein Molecule , 2005, Science.
[94] Weihong Tan,et al. Light-switching excimer probes for rapid protein monitoring in complex biological fluids. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[95] Razvan Nutiu,et al. A DNA-protein nanoengine for "on-demand" release and precise delivery of molecules. , 2005, Angewandte Chemie.
[96] M. F. White,et al. DNA end-directed and processive nuclease activities of the archaeal XPF enzyme , 2005, Nucleic acids research.
[97] E. Kool,et al. A new four-base genetic helix, yDNA, composed of widened benzopyrimidine-purine pairs. , 2005, Journal of the American Chemical Society.
[98] W. Greenleaf,et al. Direct observation of base-pair stepping by RNA polymerase , 2005, Nature.
[99] T. Heyduk,et al. Nucleic acid-based fluorescence sensors for detecting proteins. , 2005, Analytical chemistry.
[100] R. Tsien,et al. The Fluorescent Toolbox for Assessing Protein Location and Function , 2006, Science.
[101] N. Potenza,et al. Hybridase activity of human ribonuclease-1 revealed by a real-time fluorometric assay , 2006, Nucleic acids research.
[102] R. Eglen,et al. A Generic, Homogenous Method for Measuring Kinase and Inhibitor Activity via Adenosine 5′-Diphosphate Accumulation , 2006, Journal of biomolecular screening.
[103] Sanjay Tyagi,et al. Real-time assays with molecular beacons and other fluorescent nucleic acid hybridization probes. , 2006, Clinica chimica acta; international journal of clinical chemistry.
[104] Abdellah Allali-Hassani,et al. Small-molecule screening made simple for a difficult target with a signaling nucleic acid aptamer that reports on deaminase activity. , 2006, Angewandte Chemie.
[105] Steven M. Block,et al. Sequence-Resolved Detection of Pausing by Single RNA Polymerase Molecules , 2006, Cell.
[106] G. King,et al. Multitasking by Multivalent Circular DNA Aptamers , 2006, Chembiochem : a European journal of chemical biology.
[107] M. Bradley,et al. Dual colour, microarray-based, analysis of 10,000 protease substrates. , 2006, Chemical communications.
[108] Fredrik Dahl,et al. Analyzing genes using closing and replicating circles. , 2006, Trends in biotechnology.
[109] Ronald T. Raines,et al. Fluorogenic label for biomolecular imaging. , 2006, ACS chemical biology.
[110] Evaldas Katilius,et al. Signaling aptamers created using fluorescent nucleotide analogues. , 2006, Analytical chemistry.
[111] E. Kool,et al. Enzymatic Synthesis of Fluorescent Oligomers Assembled on a DNA Backbone , 2006, Chembiochem : a European journal of chemical biology.
[112] Razvan Nutiu,et al. Solid-phase enzyme activity assay utilizing an entrapped fluorescence-signaling DNA aptamer. , 2006, Angewandte Chemie.
[113] C. M. Joyce,et al. Conformational changes during normal and error-prone incorporation of nucleotides by a Y-family DNA polymerase detected by 2-aminopurine fluorescence. , 2007, Biochemistry.
[114] Bingling Li,et al. Sensitive detection of protein by an aptamer-based label-free fluorescing molecular switch. , 2007, Chemical communications.
[115] L. Archer,et al. T4 DNA ligase is more than an effective trap of cyclized dsDNA , 2007, Nucleic acids research.
[116] L. Reha-Krantz,et al. DNA polymerase proofreading: active site switching catalyzed by the bacteriophage T4 DNA polymerase , 2007, Nucleic acids research.
[117] Taekjip Ha,et al. Spring-Loaded Mechanism of DNA Unwinding by Hepatitis C Virus NS3 Helicase , 2007, Science.
[118] Eric T. Kool,et al. Efficient quenching of oligomeric fluorophores on a DNA backbone. , 2007, Journal of the American Chemical Society.
[119] J. Rao,et al. Fluorescence imaging in vivo: recent advances. , 2007, Current opinion in biotechnology.
[120] I. Willner,et al. Amplified analysis of low-molecular-weight substrates or proteins by the self-assembly of DNAzyme-aptamer conjugates. , 2007, Journal of the American Chemical Society.
[121] E. M. De La Cruz,et al. Fluorescence of 2-aminopurine reveals rapid conformational changes in the RB69 DNA polymerase-primer/template complexes upon binding and incorporation of matched deoxynucleoside triphosphates , 2007, Nucleic Acids Research.
[122] N. Johnsson,et al. Chemical tools for biomolecular imaging. , 2007, ACS chemical biology.
[123] M. Hawkins. Fluorescent pteridine nucleoside analogs , 2007, Cell Biochemistry and Biophysics.
[124] M. Bogyo,et al. Tagging and detection strategies for activity-based proteomics. , 2007, Current opinion in chemical biology.
[125] E. Kool,et al. Fluorescence of size-expanded DNA bases: reporting on DNA sequence and structure with an unnatural genetic set. , 2008, Journal of the American Chemical Society.
[126] Chih-Ming Ho,et al. Aptamer-based optical probes with separated molecular recognition and signal transduction modules. , 2008, Journal of the American Chemical Society.
[127] Yanrong Wu,et al. Light‐Switching Excimer Beacon Assays For Ribonuclease H Kinetic Study , 2008, Chembiochem : a European journal of chemical biology.
[128] H. D. Vanguilder,et al. Twenty-five years of quantitative PCR for gene expression analysis. , 2008, BioTechniques.
[129] D. Ye,et al. Molecular beacons: an optimal multifunctional biological probe. , 2008, Biochemical and biophysical research communications.
[130] D. Filippov,et al. Functions of base flipping in E. coli nucleotide excision repair. , 2008, DNA repair.
[131] B. Liu,et al. RNA-templated single-base mutation detection based on T4 DNA ligase and reverse molecular beacon. , 2008, Talanta.
[132] W. Tan,et al. Aptamer switch probe based on intramolecular displacement. , 2008, Journal of the American Chemical Society.
[133] D. Klostermeier,et al. Cooperative binding of ATP and RNA induces a closed conformation in a DEAD box RNA helicase , 2008, Proceedings of the National Academy of Sciences.
[134] Elio A. Abbondanzieri,et al. Dynamic binding orientations direct activity of HIV reverse transcriptase , 2008, Nature.
[135] Craig A. Belon,et al. Monitoring helicase activity with molecular beacons. , 2008, BioTechniques.
[136] E. Betzig,et al. Live-cell photoactivated localization microscopy of nanoscale adhesion dynamics , 2008, Nature Methods.
[137] R. Juliano,et al. Mechanisms and strategies for effective delivery of antisense and siRNA oligonucleotides , 2008, Nucleic acids research.
[138] E. Mardis. Next-generation DNA sequencing methods. , 2008, Annual review of genomics and human genetics.
[139] Michael A Thompson,et al. Super-resolution imaging in live Caulobacter crescentus cells using photoswitchable EYFP , 2008, Nature Methods.
[140] Stephen R. Quake,et al. Single molecule measurement of the “speed limit” of DNA polymerase , 2009, Proceedings of the National Academy of Sciences.
[141] Colin D. Medley,et al. Molecular engineering of DNA: molecular beacons. , 2009, Angewandte Chemie.
[142] D. Millar,et al. Fluorophore-quencher pair for monitoring protein motion. , 2009, Biochemical and Biophysical Research Communications - BBRC.
[143] G. Stengel,et al. Highly efficient incorporation of the fluorescent nucleotide analogs tC and tCO by Klenow fragment , 2009, Nucleic acids research.
[144] Meiping Zhao,et al. Real-time monitoring of the activity and kinetics of T4 polynucleotide kinase by a singly labeled DNA-hairpin smart probe coupled with lambda exonuclease cleavage. , 2009, Analytical chemistry.
[145] S. Tsuneda,et al. High-throughput screening assay of hepatitis C virus helicase inhibitors using fluorescence-quenching phenomenon. , 2009, Biochemical and biophysical research communications.
[146] P. Dehaseth,et al. Evidence for a tyrosine-adenine stacking interaction and for a short-lived open intermediate subsequent to initial binding of Escherichia coli RNA polymerase to promoter DNA. , 2009, Journal of molecular biology.
[147] T. Ha,et al. Coordinating DNA replication by means of priming loop and differential synthesis rate , 2009, Nature.
[148] E. Kool,et al. Polyfluorophore labels on DNA: dramatic sequence dependence of quenching. , 2009, Chemistry.
[149] Smita S. Patel,et al. Fluorescence Mapping of the Open Complex of Yeast Mitochondrial RNA Polymerase* , 2009, Journal of Biological Chemistry.
[150] Juewen Liu,et al. Functional nucleic acid sensors. , 2009, Chemical reviews.
[151] Mats Nilsson,et al. Analysis of genes, transcripts, and proteins via DNA ligation. , 2009, Annual review of analytical chemistry.
[152] E. Kool,et al. Polyfluorophores on a DNA backbone: a multicolor set of labels excited at one wavelength. , 2009, Journal of the American Chemical Society.
[153] S. Tsuneda,et al. Real-time monitoring of RNA helicase activity using fluorescence resonance energy transfer in vitro. , 2010, Biochemical and biophysical research communications.
[154] E. Kool,et al. Toward a designed genetic system with biochemical function: polymerase synthesis of single and multiple size-expanded DNA base pairs. , 2010, Organic & biomolecular chemistry.
[155] Daniel Herschlag,et al. Multiple Native States Reveal Persistent Ruggedness of an RNA Folding Landscape , 2010, Nature.
[156] A. Ishchenko,et al. Real-time studies of conformational dynamics of the repair enzyme E. coli formamidopyrimidine-DNA glycosylase and its DNA complexes during catalytic cycle. , 2010, Mutation research.
[157] E. Kool,et al. DNA-polyfluorophore excimers as sensitive reporters for esterases and lipases. , 2010, Chemical communications.
[158] Y. Tor,et al. Fluorescent analogs of biomolecular building blocks: design, properties, and applications. , 2010, Chemical reviews.
[159] Sam F. Y. Li,et al. Molecular aptamer beacon for myotonic dystrophy kinase-related Cdc42-binding kinase alpha. , 2010, Talanta.