Dynamic light scattering: a practical guide and applications in biomedical sciences
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[1] R. Pecora. Doppler Shifts in Light Scattering from Pure Liquids and Polymer Solutions , 1964 .
[2] E. Gross. Change of Wave-length of Light due to Elastic Heat Waves at Scattering in Liquids. , 1930, Nature.
[3] V. Bloomfield,et al. Quasi-elastic laser light scattering. , 1978, Methods in enzymology.
[4] D. O'Dowd,et al. α3Na+/K+-ATPase Is a Neuronal Receptor for Agrin , 2006, Cell.
[5] J. García de la Torre,et al. Equivalent radii and ratios of radii from solution properties as indicators of macromolecular conformation, shape, and flexibility. , 2007, Biomacromolecules.
[6] P. Groen,et al. Data Analysis of Multi‐Angle Photon Correlation measurements without and with prior knowledge , 1992 .
[7] Trushar R. Patel,et al. The beta-Lactamase Gene Regulator AmpR Is a Tetramer That Recognizes and Binds the d-Ala-d-Ala Motif of Its Repressor UDP-N-acetylmuramic Acid (MurNAc)-pentapeptide. , 2014 .
[8] J. García de la Torre,et al. Prediction of hydrodynamic and other solution properties of rigid proteins from atomic- and residue-level models. , 2011, Biophysical journal.
[9] N. Fusenig,et al. Inhibition of basement membrane formation by a nidogen-binding laminin γ1-chain fragment in human skin-organotypic cocultures , 2004, Journal of Cell Science.
[10] G. Mie. Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen , 1908 .
[11] Trushar R. Patel,et al. Solution conformation of adenovirus virus associated RNA-I and its interaction with PKR. , 2014, Journal of structural biology.
[12] T. Sasaki,et al. Structural characterization of two variants of fibulin-1 that differ in nidogen affinity. , 1995, Journal of molecular biology.
[13] W. Burchard. Static and dynamic light scattering from branched polymers and biopolymers , 1983 .
[14] T. Sasaki,et al. Binding of mouse and human fibulin-2 to extracellular matrix ligands. , 1995, Journal of molecular biology.
[15] M. Paulsson,et al. Binding of Netrin-4 to Laminin Short Arms Regulates Basement Membrane Assembly* , 2007, Journal of Biological Chemistry.
[16] Á. Ortega,et al. Hydrodynamic Properties of Wormlike Macromolecules: Monte Carlo Simulation and Global Analysis of Experimental Data , 2011 .
[17] R. Kammerer,et al. Modulation of agrin function by alternative splicing and Ca2+ binding. , 2004, Structure.
[18] P. Debye,et al. Zerstreuung von Röntgenstrahlen , 1915 .
[19] E. Domingo,et al. Impact of Protein Kinase PKR in Cell Biology: from Antiviral to Antiproliferative Action , 2006, Microbiology and Molecular Biology Reviews.
[20] Joseph D Puglisi,et al. Rapid purification of RNAs using fast performance liquid chromatography (FPLC). , 2006, RNA.
[21] J. Engel,et al. Mapping of the laminin‐binding site of the N‐terminal agrin domain (NtA) , 2003, The EMBO journal.
[22] Bruno H. Zimm,et al. Apparatus and Methods for Measurement and Interpretation of the Angular Variation of Light Scattering; Preliminary Results on Polystyrene Solutions , 1948 .
[23] Trushar R. Patel,et al. Recognition of viral RNA stem-loops by the tandem double-stranded RNA binding domains of PKR. , 2013, RNA.
[24] J. Justesen,et al. The human 2'-5'oligoadenylate synthetase family: unique interferon-inducible enzymes catalyzing 2'-5' instead of 3'-5' phosphodiester bond formation. , 2007, Biochimie.
[25] M. Smith,et al. Identification of agrin, a synaptic organizing protein from Torpedo electric organ , 1987, The Journal of cell biology.
[26] I. D. Morrison,et al. Improved techniques for particle size determination by quasi-elastic light scattering , 1985 .
[27] Charles Tanford,et al. Physical Chemistry of Macromolecules , 1961 .
[28] Pavel Zakharov,et al. Advances in dynamic light scattering techniques , 2009 .
[29] Trushar R Patel,et al. Determination of a molecular shape for netrin-4 from hydrodynamic and small angle X-ray scattering measurements. , 2012, Matrix biology : journal of the International Society for Matrix Biology.
[30] A. Einstein. Über einen die Erzeugung und Verwandlung des Lichtes betreffenden heuristischen Gesichtspunkt [AdP 17, 132 (1905)] , 2005, Annalen der Physik.
[31] K. Holde. Physical characterization of the protein molecule. , 1970 .
[32] J. M. Schurr,et al. Dynamic light scattering of biopolymers and biocolloids. , 1977, CRC critical reviews in biochemistry.
[33] Dennis E. Koppel,et al. Analysis of Macromolecular Polydispersity in Intensity Correlation Spectroscopy: The Method of Cumulants , 1972 .
[34] Trushar R. Patel,et al. Characterization of the termini of the West Nile virus genome and their interactions with the small isoform of the 2' 5'-oligoadenylate synthetase family. , 2015, Journal of structural biology.
[35] Martin A. Smith,et al. The COOH-terminal domain of agrin signals via a synaptic receptor in central nervous system neurons , 2003, The Journal of cell biology.
[36] S. Provencher,et al. Global Analysis of Dynamic Light Scattering Autocorrelation Functions , 1996 .
[37] A. Livesey,et al. Maximum entropy analysis of quasielastic light scattering from colloidal dispersions , 1986 .
[38] J. García de la Torre,et al. Global fit and structure optimization of flexible and rigid macromolecules and nanoparticles from analytical ultracentrifugation and other dilute solution properties. , 2011, Methods.
[39] A. Einstein,et al. Theorie der Opaleszenz von homogenen Flüssigkeiten und Flüssigkeitsgemischen in der Nähe des kritischen Zustandes [AdP 33, 1275 (1910)] , 2005, Annalen der Physik.
[40] J. Clauwaert,et al. Quasi-elastic light scattering of Artemia ribosomes sedimented in a CsCl density gradient. , 1981, Journal of biochemical and biophysical methods.
[41] G. Ralston. Introduction to Analytical Ultracentrifugation , 2004 .
[42] E. Pike,et al. Determination of Diffusion Coefficients of Haemocyanin at Low Concentration by Intensity Fluctuation Spectroscopy of Scattered Laser Light , 1970, Nature.
[43] Didier Sornette,et al. Exponential Sampling Method for Light Scattering Polydispersity Analysis , 1981 .
[44] John William Strutt,et al. XV. On the light from the sky, its polarization and colour , 1871 .
[45] Robert Bruce Lindsay,et al. On the Light from the Sky, its Polarization and Colour (1871) , 1970 .
[46] W. Sutherland,et al. LXXV. A dynamical theory of diffusion for non-electrolytes and the molecular mass of albumin , 1905 .
[47] L. Donald,et al. Regulation of the interferon-inducible 2'-5'-oligoadenylate synthetases by adenovirus VA(I) RNA. , 2012, Journal of molecular biology.
[48] R. Timpl,et al. Localization of a major nidogen-binding site to domain III of laminin B2 chain. , 1991, European journal of biochemistry.
[49] S. Provencher. A constrained regularization method for inverting data represented by linear algebraic or integral equations , 1982 .
[50] K. Kwack,et al. LAMC1 gene is associated with premature ovarian failure. , 2012, Maturitas.
[51] H. Kleinman,et al. Laminin γ1 chain peptide, C-16 (KAFDITYVRLKF), promotes migration, MMP-9 secretion, and pulmonary metastasis of B16–F10 mouse melanoma cells , 2002, British Journal of Cancer.
[52] A. Kokhanovsky,et al. Single light scattering and radiative transfer , 2009 .
[53] S. Provencher. CONTIN: A general purpose constrained regularization program for inverting noisy linear algebraic and integral equations , 1984 .
[54] P. Wyatt. Light scattering and the absolute characterization of macromolecules , 1993 .
[55] Trushar R. Patel,et al. The β-Lactamase Gene Regulator AmpR Is a Tetramer That Recognizes and Binds the d-Ala-d-Ala Motif of Its Repressor UDP-N-acetylmuramic Acid (MurNAc)-pentapeptide* , 2014, The Journal of Biological Chemistry.
[56] Trushar R. Patel,et al. Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU , 2015, PloS one.
[57] Brendan Fish,et al. Dynamic light scattering as a relative tool for assessing the molecular integrity and stability of monoclonal antibodies , 2007, Biotechnology & genetic engineering reviews.
[58] E. Pike,et al. LETTER TO THE EDITOR: Spectrum of clipped photon-counting fluctuations of Gaussian light , 1969 .
[59] P. Groen,et al. Singular value analysis and reconstruction of photon correlation data equidistant in time , 1989 .
[60] R. Gans. Asymmetrie von Gasmolekeln. Ein Beitrag zur Bestimmung der molekularen Form , 1921 .
[61] L. Rimai,et al. Quasi-elastic light scattering by diffusional fluctuations in RNase solutions. , 1970, Biophysical journal.
[62] R. Timpl,et al. A single EGF‐like motif of laminin is responsible for high affinity nidogen binding. , 1993, The EMBO journal.
[63] B. Zimm. Molecular Theory of the Scattering of Light in Fluids , 1945 .
[64] J. G. de la Torre,et al. Prediction of solution properties and dynamics of RNAs by means of Brownian dynamics simulation of coarse-grained models: Ribosomal 5S RNA and phenylalanine transfer RNA , 2015, BMC biophysics.
[65] E. Pike. THE ACCURACY OF DIFFUSION-CONSTANT MEASUREMENTS BY DIGITAL AUTOCORRELATION OF PHOTON-COUNTING FLUCTUATIONS , 1972 .
[66] R. Gans. Das Tyndallphänomen in Flüssigkeiten , 1923 .
[67] Trushar R. Patel,et al. Examination of the discrepancy between size estimates for ovalbumin from small-angle X-ray scattering and other physicochemical measurements. , 2011, The journal of physical chemistry. B.
[68] V. Bloomfield,et al. Quasi-elastic light scattering applications in biochemistry and biology. , 1981, Annual review of biophysics and bioengineering.
[69] P A Hassan,et al. Modification to the cumulant analysis of polydispersity in quasielastic light scattering data. , 2006, Journal of colloid and interface science.
[70] S. Harding,et al. Light Scattering , 1998, Current protocols in protein science.
[71] R. Pecora. Quasi-elastic light scattering from macromolecules. , 1972, Annual review of biophysics and bioengineering.
[72] L. Brillouin. Diffusion de la lumière et des rayons X par un corps transparent homogène - Influence de l'agitation thermique , 1922 .
[73] J. D. Harvey. Diffusion coefficients and hydrodynamic radii of three spherical RNA viruses by laser light scattering. , 1973, Virology.
[74] M. Smoluchowski. Molekular-kinetische Theorie der Opaleszenz von Gasen im kritischen Zustande, sowie einiger verwandter Erscheinungen , 1908 .
[75] W. Steubing,et al. Zur Theorie der Brownschen Bewegung , 1908 .
[76] C. Barnett. Some Applications of Wave-length Turbidimetry in the Infrared. , 1942 .
[77] Y. Yeh,et al. Observation of Diffusion Broadening of Rayleigh Scattered Light , 1964 .
[78] S. Fujime. Quasi-elastic scattering of laser light. A new tool for the dynamic study of biological macromolecules. , 1972, Advances in biophysics.
[79] Trushar R. Patel,et al. T‐shaped arrangement of the recombinant agrin G3 – IgG Fc protein , 2011, Protein science : a publication of the Protein Society.
[80] B. Berne,et al. Dynamic Light Scattering: With Applications to Chemistry, Biology, and Physics , 1976 .
[81] Igor N. Serdyuk,et al. Methods in Molecular Biophysics: Structure, Dynamics, Function , 2007 .
[82] Y. Rocard,et al. La diffusion moléculaire de la lumiere , 1930, Nature.
[83] Trushar R Patel,et al. Binding of G-quadruplexes to the N-terminal Recognition Domain of the RNA Helicase Associated with AU-rich Element (RHAU)* , 2013, The Journal of Biological Chemistry.
[84] A. Jamieson,et al. Studies of elastin coacervation by quasielastic light scattering. , 1972, Biochimica et biophysica acta.
[85] G. Parry. Photon Correlation and Light Beating Spectroscopy , 1975 .
[86] Trushar R. Patel,et al. Structural elucidation of full-length nidogen and the laminin-nidogen complex in solution. , 2014, Matrix biology : journal of the International Society for Matrix Biology.
[87] J. Donovan,et al. Structural basis for cytosolic double-stranded RNA surveillance by human oligoadenylate synthetase 1 , 2013, Proceedings of the National Academy of Sciences.
[88] John Tyndall,et al. IV. On the blue colour of the sky, the polarization of skylight, and on the polarization of light by cloudy matter generally , 1869, Proceedings of the Royal Society of London.
[89] R. Kammerer,et al. The laminin-binding domain of agrin is structurally related to N-TIMP-1 , 2001, Nature Structural Biology.
[90] Trushar R. Patel,et al. Activation of 2′ 5′-Oligoadenylate Synthetase by Stem Loops at the 5′-End of the West Nile Virus Genome , 2014, PloS one.
[91] M. Soloski,et al. Physiological Regulation of the Immunological Synapse by Agrin , 2001, Science.
[92] Trushar R. Patel,et al. Nano-structure of the laminin γ-1 short arm reveals an extended and curved multidomain assembly. , 2010, Matrix biology : journal of the International Society for Matrix Biology.
[93] J. Puglisi,et al. Biophysical and biochemical investigations of dsRNA-activated kinase PKR. , 2007, Methods in enzymology.
[94] H. J. Strutt,et al. LVIII. On the scattering of light by small particles , 1871 .
[95] Albert E. Chung,et al. The binding of fibronectin to entactin is mediated through the 29 kDa amino terminal fragment of fibronectin and the G2 domain of entactin. , 1994, Biochemical and biophysical research communications.
[96] B. Lorber,et al. Protein analysis by dynamic light scattering: Methods and techniques for students , 2012, Biochemistry and molecular biology education : a bimonthly publication of the International Union of Biochemistry and Molecular Biology.