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Properties of biomolecules measured from atomic force microscope images: A review
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J Struct Biol
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Hansma, H.G.1
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AFM review study on pox viruses and living cells
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Radiat Oncol Invest
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Candid cameras for the nanoworld
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Amato I: Candid cameras for the nanoworld. Science 1997, 276:1982-1985. This article gives a good overview of recent highlights in scanning probe microscopy that is useful for both the expert and the layperson.
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Science
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Amato, I.1
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Feeling a protein's motion
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Ehrenstein D: Feeling a protein's motion. Science 1997, 277:637. This article gives a good overview of recent highlights in scanning probe microscopy that is useful for both the expert and the layperson.
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Science
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Ehrenstein, D.1
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Stokstad E: DNA on the big screen. Science 1997, 275:1882. This article gives a good overview of recent highlights in scanning probe microscopy that is useful for both the expert and the layperson.
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Science
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Stokstad, E.1
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Miles M: Scanning probe microscopy. Probing the future. Science 1997, 277:1845-1847. This article gives a good overview of recent highlights in scanning probe microscopy that is useful for both the expert and the layperson.
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Science
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Miles, M.1
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Protein biophysics -stretching single protein molecules: Titin is a weird spring
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Erickson HP: Protein biophysics -stretching single protein molecules: titin is a weird spring. Science 1997, 276:1090-1092. This article gives a good overview of recent highlights in scanning probe microscopy that is useful for both the expert and the layperson.
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Science
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Erickson, H.P.1
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Nature
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Entropic exclusion by neurofilament sidearms: A mechanism for maintaining interfilament spacing
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Biochemistry
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Brown, H.G.1
Hoh, J.H.2
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Zhang Y, Shao Z, Somlyo AP, Somlyo AV: Cryo-atomic force microscopy of smooth muscle myosin. Biophys J 1997, 72:1308-1318. The only active lab in cryo-atomic force microscopy has new structural data about myosin monomers.
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Biophys J
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Zhang, Y.1
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Engel A: A closer look at a molecular motor by atomic force microscopy. Biophys J 1997, 72:988.
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Structures and dynamic motion • of laminin-1 as observed by atomic force microscopy
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Chen CH, Clegg DO, Hansma HG: Structures and dynamic motion • of laminin-1 as observed by atomic force microscopy. Biochemistry 1998, 37:8262-8267. This is a new molecule that succeeds at the difficult task of moving in the atomic force microscope, but does not move too much.
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Biochemistry
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Chen, C.H.1
Clegg, D.O.2
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Why are enzymes less active in organic solvents than in water?
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Klibanov AM: Why are enzymes less active in organic solvents than in water? Trends Biotechnol 1997, 15:97-101. The answer, in this intriguing paper, is that they aren't less active.
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Trends Biotechnol
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Klibanov, A.M.1
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Growth of protein 2-D crystals on supported planar lipid bilayers imaged in situ by AFM
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Revaikine I, Bergsma-Schutter W, Brisson A: Growth of protein 2-D crystals on supported planar lipid bilayers imaged in situ by AFM. Struct Biol 1998, 121:356-361. This paper shows beautiful high-resolution images and protein crystal growth are described in this paper.
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Struct Biol
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Revaikine, I.1
Bergsma-Schutter, W.2
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The bacteriophage phi29 head-tail connector imaged at high resolution with the atomic force microscope in buffer solution
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Muller DJ, Engel A, Carrascosa JL, Velez M: The bacteriophage phi29 head-tail connector imaged at high resolution with the atomic force microscope in buffer solution. EMBO J 1997, 16:2547-2553. Beautiful high-resolution images and force-dependent conformation changes are described here.
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EMBO J
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Muller, D.J.1
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28
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0030748519
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54 holoenzyme by scanning force microscopy. J Mol Biol 1997, 270:125-138. This is a careful and elegant paper that shows that atomic force microscopy can be applied to elucidate the mechanism of the transcription activation process.
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J Mol Biol
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Rippe, K.1
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E. coli RNA polymerase activity observed using atomic force microscopy
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Kasas S, Thomson NH, Smith BL, Hansma HG, Zhu X, Guthold M, Bustamante C, Kool ET, Kashlev M, Hansma PK: E. coli RNA polymerase activity observed using atomic force microscopy. Biochemistry 1997, 36:461-468. This outstanding paper demonstrates that atomic force microscopy is becoming a useful tool to study, at the molecular level, biochemical processes such as the transcription of DNA.
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Biochemistry
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Kasas, S.1
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Smith, B.L.3
Hansma, H.G.4
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Kool, E.T.8
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Hansma, P.K.10
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Ku proteins join DNA fragments as shown by atomic force microscopy
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Pang D, Yoo S, Dynan WS, Jung M, Dritschilo A: Ku proteins join DNA fragments as shown by atomic force microscopy. Cancer Res 1997, 57:1412-1415.
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Cancer Res
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Pang, D.1
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Proc Natl Acad Sci USA
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Allison DP, Kerper PS, Doktycz MJ, Thundat T, Modrich P, Larimer FW, Johnson DK, Hoyt PR, Mucenski ML, Warmack RJ: Mapping individual cosmid DNAs by direct AFM imaging. Genomics 1997, 41:379-384. This paper presents an innovative strategy to identify, by direct atomic force microscopy imaging, site-specific protein-DNA interactions.
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Genomics
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Allison, D.P.1
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Oncogene
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Atomic force microscopic demonstration of DNA looping by GaIR and HU
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Lyubchenko YL, Shlyakhtenko LS, Aki T, Adhya S: Atomic force microscopic demonstration of DNA looping by GaIR and HU. Nucleic Acids Res 1997, 25:873-876.
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Nucleic Acids Res
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Lyubchenko, Y.L.1
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DNA condensation for gene therapy as monitored by atomic force microscopy
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Hansma HG, Golan R, Hsieh W, Lollo CP, Mullen-Ley P, Kwoh D: DNA condensation for gene therapy as monitored by atomic force microscopy. Nucleic Acids Res 1998, 26:2481-2487.
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Nucleic Acids Res
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Hansma, H.G.1
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Dunlap DD, Maggi A, Soria MR, Monaco L: Nanoscopic structure of DNA condensed for gene delivery. Nucleic Acids Res 1997, 25:3095-3101.
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Nucleic Acids Res
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Dunlap, D.D.1
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Surface-directed DNA condensation in the absence of soluble multivalent cations
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Fang Y, Hoh JH: Surface-directed DNA condensation in the absence of soluble multivalent cations. Nucleic Acids Res 1998, 26:588-593.
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Nucleic Acids Res
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Fang, Y.1
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Kawaura C, Noguchi A, Furuno T, Nakanishi M: Atomic force microscopy for studying gene transfection mediated by cationic liposomes with a cationic cholesterol derivative. FEBS Lett 1998, 421:69-72.
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FEBS Lett
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Ludwig M, Dettmann W, Gaub HE: Atomic force microscope imaging contrast based on molecular recognition. Biophys J 1997, 72:445-448.
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43
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0031012863
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Changes in the elastic properties of cholinergic synaptic vesicles as measured by atomic force microscopy
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Laney DE, Garcia RA, Parsons SM, Hansma HG: Changes in the elastic properties of cholinergic synaptic vesicles as measured by atomic force microscopy. Biophys J 1997, 72:806-813.
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Biophys J
, vol.72
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Laney, D.E.1
Garcia, R.A.2
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Investigating the cytoskeleton of chicken cardiocytes with the atomic force microscope
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Hofmann UG, Rotsch C, Parak WJ, Radmacher M: Investigating the cytoskeleton of chicken cardiocytes with the atomic force microscope. J Struct Biol 1997, 119:84-91.
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J Struct Biol
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Hofmann, U.G.1
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Koshland DE: The era of pathway quantification. Science 1998, 280:852-853.
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Khan S, Sheetz MP: Force effects on biochemical kinetics. Annu Rev Biochem 1997, 66:785-805.
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Reversible unfolding of individual titin immunoglobulin domains by AFM
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Rief M, Gautel M, Oesterhelt F, Fernandez JM, Gaub HE: Reversible unfolding of individual titin immunoglobulin domains by AFM. Science 1997, 276:1109-1112. This is a good candidate for 'Paper of the Year' in the scanning probe microscopy field.
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Science
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Rief, M.1
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Elasticity and unfolding of single molecules of the giant muscle protein titin
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Tskhovrebova L, Trinick J, Sleep JA, Simmons RM: Elasticity and unfolding of single molecules of the giant muscle protein titin. Nature 1997, 387:308-312.
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Nature
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Tskhovrebova, L.1
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Kellermayer MS, Smith SB, Granzier HL, Bustamante C: Folding-unfolding transitions in single titin molecules characterized with laser tweezers. Science 1997, 276:1112-1116.
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Science
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Kellermayer, M.S.1
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Izrailev S, Stepaniants S, Baisera M, Oono Y, Schulten K: Molecular dynamics study of unbinding of the avidin-biotin complex. Biophys J 1997, 72:1568-1581.
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Izrailev, S.1
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0031471235
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Structural activity of a cloned potassium channel (ROMK1) monitored with the atomic force microscope: The 'molecular-sandwich' technique
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Oberleithner H, Schneider SW, HendersonRM: Structural activity of a cloned potassium channel (ROMK1) monitored with the atomic force microscope: the 'molecular-sandwich' technique. Proc Natl Acad Sci USA 1997, 94:14144-14149. This report introduces a new method, in addition to the patch clamp, for directly evaluating the function of single ion channels.
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Proc Natl Acad Sci USA
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Oberleithner, H.1
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Voltage-dependent membrane displacements measured by atomic force microscopy
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Mosbacher J, Langer M, Horber JK, Sachs F: Voltage-dependent membrane displacements measured by atomic force microscopy. J Gen Physiol 1998, 111:65-74.
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J Gen Physiol
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Mosbacher, J.1
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Hydration scanning tunneling microscopy of DNA and a bacterial surface protein
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Heim M, Steigerwald R, Guckenberger R: Hydration scanning tunneling microscopy of DNA and a bacterial surface protein. J Struct Biol 1997, 119:212-221.
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J Struct Biol
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Heim, M.1
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