Conformational Variants of Duplex DNA Correlated with Cytosine-rich Chromosomal Fragile Sites*
暂无分享,去创建一个
M. Lieber | I. Haworth | N. Hud | Albert G. Tsai | A. Engelhart | Ma’mon M. Hatmal | Sabrina I. Houston
[1] Daniel Svozil,et al. DNA conformations and their sequence preferences , 2008, Nucleic acids research.
[2] Stephen Neidle,et al. Principles of nucleic acid structure , 2007 .
[3] M. Lieber,et al. The structure-specific nicking of small heteroduplexes by the RAG complex: implications for lymphoid chromosomal translocations. , 2007, DNA repair.
[4] Stephen C. J. Parker,et al. Detection of DNA structural motifs in functional genomic elements. , 2007, Genome research.
[5] R. Yeh,et al. Identification of two distinct MYC breakpoint clusters and their association with various IGH breakpoint regions in the t(8;14) translocations in sporadic Burkitt-lymphoma , 2007, Leukemia.
[6] S. Mirkin,et al. DNA structures, repeat expansions and human hereditary disorders. , 2006, Current opinion in structural biology.
[7] Yunmei Ma,et al. The Artemis:DNA-PKcs endonuclease cleaves DNA loops, flaps, and gaps. , 2005, DNA repair.
[8] Yunmei Ma,et al. Double-Strand Break Formation by the RAG Complex at the Bcl-2 Major Breakpoint Region and at Other Non-B DNA Structures In Vitro , 2005, Molecular and Cellular Biology.
[9] P Shing Ho,et al. How sequence defines structure: a crystallographic map of DNA structure and conformation. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[10] Nathan A. Baker,et al. PDB2PQR: an automated pipeline for the setup of Poisson-Boltzmann electrostatics calculations , 2004, Nucleic Acids Res..
[11] M. Lieber,et al. A non-B-DNA structure at the Bcl-2 major breakpoint region is cleaved by the RAG complex , 2004, Nature.
[12] E. Zucca,et al. Molecular basis of mantle cell lymphoma , 2004, British journal of haematology.
[13] G. Lamm,et al. The Poisson–Boltzmann Equation , 2003 .
[14] Michael Krawczak,et al. Translocation and gross deletion breakpoints in human inherited disease and cancer I: Nucleotide composition and recombination‐associated motifs , 2003, Human mutation.
[15] Janez Plavec,et al. A unified model for the origin of DNA sequence-directed curvature. , 2003, Biopolymers.
[16] M. Lieber,et al. R-loops at immunoglobulin class switch regions in the chromosomes of stimulated B cells , 2003, Nature Immunology.
[17] Nathan A. Baker,et al. Electrostatics of nanosystems: Application to microtubules and the ribosome , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[18] P. S. Ho,et al. A crystallographic map of the transition from B-DNA to A-DNA , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[19] W. Olson,et al. A-form conformational motifs in ligand-bound DNA structures. , 2000, Journal of molecular biology.
[20] H. Ng,et al. The structure of a stable intermediate in the A <--> B DNA helix transition. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[21] U. Dornberger,et al. High Base Pair Opening Rates in Tracts of GC Base Pairs* , 1999, The Journal of Biological Chemistry.
[22] M. Sundaralingam,et al. Crystal structures of A‐DNA duplexes , 1997 .
[23] Peter A. Kollman,et al. AMBER, a package of computer programs for applying molecular mechanics, normal mode analysis, molecular dynamics and free energy calculations to simulate the structural and energetic properties of molecules , 1995 .
[24] J. Jost,et al. A bisulfite method of 5-methylcytosine mapping that minimizes template degradation. , 1995, Analytical biochemistry.
[25] S. Clark,et al. High sensitivity mapping of methylated cytosines. , 1994, Nucleic acids research.
[26] T. Darden,et al. Particle mesh Ewald: An N⋅log(N) method for Ewald sums in large systems , 1993 .
[27] D. Lilley. Understanding DNA: The molecule and how it works , 1993 .
[28] R Lavery,et al. The definition of generalized helicoidal parameters and of axis curvature for irregular nucleic acids. , 1988, Journal of biomolecular structure & dynamics.
[29] D. Lilley,et al. The structure of cruciforms in supercoiled DNA: probing the single‐stranded character of nucleotide bases with bisulphite. , 1986, The EMBO journal.
[30] R. Shapiro,et al. Deamination of cytosine derivatives by bisulfite. Mechanism of the reaction. , 1974, Journal of the American Chemical Society.
[31] Y. Wataya,et al. Role of bisulfite in the deamination and the hydrogen isotope exchange of cytidylic acid. , 1973, Journal of the American Chemical Society.