The physics of life: one molecule at a time
暂无分享,去创建一个
[1] Mathias Gautel,et al. The elasticity of single titin molecules using a two-bead optical tweezers assay. , 2004, Biophysical journal.
[2] K. Svoboda,et al. Biological applications of optical forces. , 1994, Annual review of biophysics and biomolecular structure.
[3] Carlos Bustamante,et al. Recent advances in optical tweezers. , 2008, Annual review of biochemistry.
[4] T. Hirschfeld. Optical microscopic observation of single small molecules. , 1976, Applied optics.
[5] Eric J. Brown,et al. Decreased Resistance to Bacterial Infection and Granulocyte Defects in IAP-Deficient Mice , 1996, Science.
[6] M. Leake,et al. Single molecule experimentation in biological physics: exploring the living component of soft condensed matter one molecule at a time , 2011, Journal of physics. Condensed matter : an Institute of Physics journal.
[7] K. Ritchie,et al. Single-molecule imaging in live bacteria cells , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[8] G. Wadhams,et al. Stoichiometry and turnover in single, functioning membrane protein complexes , 2006, Nature.
[9] G. Binnig,et al. Tunneling through a controllable vacuum gap , 1982 .
[10] Mark C Leake,et al. Are Escherichia coli OXPHOS complexes concentrated in specialized zones within the plasma membrane? , 2008, Biochemical Society transactions.
[11] J. Breckow,et al. Methods in modern biophysics , 2004 .
[12] J. Elf,et al. Probing Transcription Factor Dynamics at the Single-Molecule Level in a Living Cell , 2007, Science.
[13] Sandberg,et al. Shelved optical electron amplifier: Observation of quantum jumps. , 1986, Physical review letters.
[14] S. Smith,et al. Folding-unfolding transitions in single titin molecules characterized with laser tweezers. , 1997, Science.
[15] Gerber,et al. Atomic Force Microscope , 2020, Definitions.
[16] W. Moerner,et al. Optical detection and spectroscopy of single molecules in a solid. , 1989, Physical review letters.
[17] Christoph F. Schmidt,et al. Direct observation of kinesin stepping by optical trapping interferometry , 1993, Nature.
[18] Ivan Razinkov,et al. High-throughput gene expression analysis at the level of single proteins using a microfluidic turbidostat and automated cell tracking , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[19] Belinda Bullard,et al. The elasticity of single kettin molecules using a two‐bead laser‐tweezers assay , 2003, FEBS letters.
[20] R. M. Simmons,et al. Elasticity and unfolding of single molecules of the giant muscle protein titin , 1997, Nature.
[21] N. Friedman,et al. Stochastic protein expression in individual cells at the single molecule level , 2006, Nature.
[22] E. Isacoff,et al. Subunit counting in membrane-bound proteins , 2007, Nature Methods.
[23] D. Sherratt,et al. Stoichiometry and Architecture of Active DNA Replication Machinery in Escherichia coli , 2010, Science.
[24] D. F. Ogletree,et al. Probing the interaction between single molecules: fluorescence resonance energy transfer between a single donor and a single acceptor , 1996, Summaries of Papers Presented at the Quantum Electronics and Laser Science Conference.
[25] Tom Quirk,et al. There’s Plenty of Room at the Bottom , 2006, Size Really Does Matter.
[26] J. Irudayaraj,et al. Surface-enhanced Raman spectroscopy at single-molecule scale and its implications in biology , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[27] Boris Rotman,et al. MEASUREMENT OF ACTIVITY OF SINGLE MOLECULES OF β-D-GALACTOSIDASE , 1961 .
[28] Kazuhiko Kinosita,et al. Direct observation of the rotation of F1-ATPase , 1997, Nature.
[29] G. Marriott,et al. Reversible optical control of cyanine fluorescence in fixed and living cells: optical lock-in detection immunofluorescence imaging microscopy , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[30] Visualizing single molecular complexes in vivo using advanced fluorescence microscopy. , 2009, Journal of visualized experiments : JoVE.
[31] G. Schütz,et al. A critical survey of methods to detect plasma membrane rafts , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[32] C. Schmidt,et al. Interference model for back-focal-plane displacement detection in optical tweezers. , 1998, Optics letters.
[33] G. Rosser,et al. Signal-dependent turnover of the bacterial flagellar switch protein FliM , 2010, Proceedings of the National Academy of Sciences.
[34] Kevin Burrage,et al. Inferring diffusion in single live cells at the single-molecule level , 2012, Philosophical Transactions of the Royal Society B: Biological Sciences.
[35] S. Nie,et al. Probing single molecules in single living cells. , 2000, Analytical chemistry.
[36] Ashley L. Nord,et al. High-resolution single-molecule characterization of the enzymatic states in Escherichia coli F1-ATPase , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[37] J. Liphardt,et al. Reversible Unfolding of Single RNA Molecules by Mechanical Force , 2001, Science.
[38] H Schindler,et al. Imaging of single molecule diffusion. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[39] Paul R. Selvin,et al. Myosin V Walks Hand-Over-Hand: Single Fluorophore Imaging with 1.5-nm Localization , 2003, Science.
[40] E. Greene,et al. Towards physiological complexity with in vitro single-molecule biophysics , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[41] B. Rotman,et al. Measurement of activity of single molecules of beta-D-galactosidase. , 1961, Proceedings of the National Academy of Sciences of the United States of America.
[42] Toshio Yanagida,et al. Single-molecule imaging of EGFR signalling on the surface of living cells , 2000, Nature Cell Biology.
[43] J H Jett,et al. Detection of single molecules of phycoerythrin in hydrodynamically focused flows by laser-induced fluorescence. , 1987, Analytical chemistry.
[44] W. C. Johnson,et al. Principles of physical biochemistry , 1998 .
[45] J. Spudich,et al. Single myosin molecule mechanics: piconewton forces and nanometre steps , 1994, Nature.
[46] D. Klenerman,et al. Imaging the cell surface and its organization down to the level of single molecules , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[47] C. Hall. Method for the Observation of Macromolecules with the Electron Microscope Illustrated with Micrographs of DNA , 1956, The Journal of biophysical and biochemical cytology.
[48] Barry R. Masters. Single-Molecule Cellular Biophysics , 2013 .
[49] M. Leake. Shining the spotlight on functional molecular complexes , 2010, Communicative & integrative biology.
[50] A. Ashkin. Acceleration and trapping of particles by radiation pressure , 1970 .
[51] C. Bustamante,et al. Overstretching B-DNA: The Elastic Response of Individual Double-Stranded and Single-Stranded DNA Molecules , 1996, Science.
[52] G. Wadhams,et al. Millisecond timescale slimfield imaging and automated quantification of single fluorescent protein molecules for use in probing complex biological processes. , 2009, Integrative biology : quantitative biosciences from nano to macro.
[53] M. Rief,et al. Reversible unfolding of individual titin immunoglobulin domains by AFM. , 1997, Science.
[54] S. Chu,et al. Observation of a single-beam gradient force optical trap for dielectric particles. , 1986, Optics letters.
[55] R. Berry,et al. Variable stoichiometry of the TatA component of the twin-arginine protein transport system observed by in vivo single-molecule imaging , 2008, Proceedings of the National Academy of Sciences.
[56] N. Thompson,et al. Total internal reflection fluorescence. , 1984, Annual review of biophysics and bioengineering.
[57] Mark C Leake,et al. Clustering and dynamics of cytochrome bd‐I complexes in the Escherichia coli plasma membrane in vivo , 2008, Molecular microbiology.
[58] M. Leake,et al. Experimental approaches for addressing fundamental biological questions in living, functioning cells with single molecule precision , 2012, Open Biology.
[59] Michael Börsch,et al. Twisting and subunit rotation in single FOF1-ATP synthase , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[60] M. Leake,et al. Functioning Nanomachines Seen in Real-Time in Living Bacteria Using Single-Molecule and Super-Resolution Fluorescence Imaging , 2011, International journal of molecular sciences.
[61] M. Sheetz,et al. Tracking kinesin-driven movements with nanometre-scale precision , 1988, Nature.