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1
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0242353209
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Architecture of Ure2p prion filaments: The N-terminal domains form a central core fiber
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Baxa U., Taylor K.L., Wall J.S., Simon M.N., Cheng N., Wickner R.B., and Steven A.C. Architecture of Ure2p prion filaments: The N-terminal domains form a central core fiber. J. Biol. Chem. 278 (2003) 43717-43727
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Steven, A.C.7
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3
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0024256291
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High resolution electron microscopy for structure and mapping
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Hainfeld J.F., and Wall J.S. High resolution electron microscopy for structure and mapping. Basic Life Sci. 46 (1988) 131-147
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Basic Life Sci.
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Hainfeld, J.F.1
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4
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0033977297
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Combinatorics of giant hexagonal bilayer hemoglobins
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Hanin L.G., and Vinogradov S.N. Combinatorics of giant hexagonal bilayer hemoglobins. Math. Biosci. 163 (2000) 59-73
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Hanin, L.G.1
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5
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Mass distribution of a macromolecular assembly based on electrospray ionization molecular masses of its constituent subunits
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Hanin L.G., Zal F., Green B.N., and Vinogradov S.N. Mass distribution of a macromolecular assembly based on electrospray ionization molecular masses of its constituent subunits. J. Biosci. 28 (2003) 101-112
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Hanin, L.G.1
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6
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24144465828
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Characterization of paired helical filaments by scanning transmission electron microscopy
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Ksiesak-Reding H., and Wall J.S. Characterization of paired helical filaments by scanning transmission electron microscopy. Microsc. Res. Tech. 67 (2005) 126-140
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Microsc. Res. Tech.
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Ksiesak-Reding, H.1
Wall, J.S.2
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7
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0033603386
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The role of the linker subunits in the reassembly of the 3.6MDa hexagonal bilayer hemoglobin from Lumbricus terrestris
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Kuchumov A.R., Taveau J.-C., Lamy J.N., Wall J.S., Weber R.E., and Vinogradov S.N. The role of the linker subunits in the reassembly of the 3.6MDa hexagonal bilayer hemoglobin from Lumbricus terrestris. J. Mol. Biol. 289 (1999) 1361-1374
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Kuchumov, A.R.1
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Vinogradov, S.N.6
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8
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0000924130
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Giant hexagonal bilayer hemoglobins
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Lamy J.N., Green B.N., Toulmond A., Wall J.S., Weber R.E., and Vinogradov S.N. Giant hexagonal bilayer hemoglobins. Chem. Rev. 96 (1996) 3113-3124
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Chem. Rev.
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Lamy, J.N.1
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Vinogradov, S.N.6
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9
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0029989329
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Mass spectrometric composition and molecular mass of Lumbricus terrestris hemoglobin: A refined model of its quaternary structure
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Martin P.D., Kuchumov A.R., Green B.N., Oliver R.W., Braswell E.H., Wall J.S., and Vinogradov S.N. Mass spectrometric composition and molecular mass of Lumbricus terrestris hemoglobin: A refined model of its quaternary structure. J. Mol. Biol. 255 (1996) 154-169
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Martin, P.D.1
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Vinogradov, S.N.7
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10
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33745843278
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Lumbricus erythrocruorin at 3.5 A resolution: Architecture of a megadalton respiratory complex
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Royer Jr. W.E., Sharma H., Strand K., Knapp J.E., and Bhyravbhatla B. Lumbricus erythrocruorin at 3.5 A resolution: Architecture of a megadalton respiratory complex. Structure 14 (2006) 1167-1177
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Structure
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Bhyravbhatla, B.5
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11
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0028136474
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Mass analysis of biological macromolecular complexes by STEM
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Thomas D., Schultz P., Steven A.C., and Wall J.S. Mass analysis of biological macromolecular complexes by STEM. Biol. Cell. 80 (1994) 181-192
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Biol. Cell.
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Thomas, D.1
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0022526226
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Mass mapping with the scanning transmission electron microscope
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Wall J.S., and Hainfeld J.F. Mass mapping with the scanning transmission electron microscope. Annu. Rev. Biophys. Chem. 15 (1986) 355-376
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Wall, J.S.1
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14
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0035231630
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Scanning transmission electron microscopy of DNA-protein complexes
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Wall J.S., and Simon M.N. Scanning transmission electron microscopy of DNA-protein complexes. Methods Mol. Biol. 148 (2001) 589-601
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Methods Mol. Biol.
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Wall, J.S.1
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