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  • ...thin living organisms, and protein function is largely dependent on the '''protein structure'''. Many diseases are caused by proteins whose structures have been modifi == Basis of protein structure ==
    9 KB (1,340 words) - 22:09, 11 February 2010
  • 12 bytes (1 word) - 16:35, 26 October 2007
  • Dengue envelope protein structure: Modis, et al., ''Proc. Natl. Acad. Sci. USA,'' '''375''', 291 (1995).
    117 bytes (16 words) - 19:39, 1 May 2008
  • 121 bytes (15 words) - 11:56, 14 March 2009
  • Auto-populated based on [[Special:WhatLinksHere/Protein structure]]. Needs checking by a human.
    709 bytes (91 words) - 19:46, 11 January 2010

Page text matches

  • ...is a nonpolar, uncharged, aliphatic and [[hydrophobic]] amino acid. In [[protein structure]]s it is normally found in hydrophobic patches sequestered away from the pr
    533 bytes (78 words) - 08:20, 8 June 2009
  • ...In proteins, leucine is usually buried in a hydrophobic pocket within the protein structure sequestered away from the protein surface. Leucine is similar to the amino
    564 bytes (84 words) - 08:28, 8 June 2009
  • Protein structure with repeating leucines every seven amino acids, which form dimeric coiled-
    146 bytes (17 words) - 10:55, 1 June 2008
  • Dengue envelope protein structure: Modis, et al., ''Proc. Natl. Acad. Sci. USA,'' '''375''', 291 (1995).
    117 bytes (16 words) - 19:39, 1 May 2008
  • Auto-populated based on [[Special:WhatLinksHere/Protein structure]]. Needs checking by a human.
    709 bytes (91 words) - 19:46, 11 January 2010
  • {{r|Protein structure}}
    869 bytes (117 words) - 17:20, 11 January 2010
  • {{r|Protein structure}}
    494 bytes (63 words) - 17:20, 11 January 2010
  • {{r|Protein structure}}
    515 bytes (65 words) - 19:46, 11 January 2010
  • ...the positive charge, lysine is mostly found exposed on the surface of a [[protein structure]]. DNA-binding proteins tend to have many lysines (and arginines) to enhan
    583 bytes (85 words) - 08:31, 8 June 2009
  • '''Leucine zippers''' are a commonly occurring [[structural motif]] in [[protein structure]]s, particularly in [[DNA]]-binding proteins, in which the amino acid [[leu
    1,018 bytes (150 words) - 02:55, 10 February 2010
  • ...charged, polar amino acids and it is typically found on the surface of a [[protein structure]]. It is one of only three positively charged amino acids, the other two b
    730 bytes (118 words) - 06:15, 8 June 2009
  • {{r|Protein structure}}
    2 KB (265 words) - 10:53, 11 January 2010
  • {{r|Protein structure}}
    1 KB (135 words) - 17:20, 11 January 2010
  • *[[Protein structure]]
    2 KB (309 words) - 23:59, 3 July 2008
  • ...thin living organisms, and protein function is largely dependent on the '''protein structure'''. Many diseases are caused by proteins whose structures have been modifi == Basis of protein structure ==
    9 KB (1,340 words) - 22:09, 11 February 2010
  • : ''Main Article: [[Protein structure]]''
    7 KB (1,002 words) - 10:10, 14 August 2010
  • ...hobic]] is found almost exclusively buried within hydrophobic patches in [[protein structure]]s. When [[aspartame]] was first introduced (as Nutrisweet) it caused the
    2 KB (209 words) - 08:43, 8 June 2009
  • {{r|Protein structure}}
    668 bytes (86 words) - 17:20, 11 January 2010
  • {{r|Protein structure}}
    2 KB (280 words) - 09:18, 6 March 2024
  • {{r|Protein structure}}
    5 KB (593 words) - 10:53, 12 May 2023
  • ...ease|infectious agent]], made only of [[protein]]. Prions are abnormally [[protein structure|structured]] forms of a [[host (biology)|host]] protein that can convert no ...e nucleic acids to reproduce. The 'protein-only hypothesis' — that a protein structure (which, unlike [[DNA]], has no obvious means of replication) could reproduc
    13 KB (2,087 words) - 12:48, 11 June 2009
  • {{r|Protein structure}}
    3 KB (457 words) - 12:49, 15 March 2024
  • A connexon is a short-lived protein structure, having the half-life of only a few hours [1, 2]. This provides a mean for
    8 KB (1,095 words) - 07:10, 26 September 2007
  • * [[Protein structure prediction]]
    9 KB (1,270 words) - 09:48, 26 September 2007
  • 19 KB (2,852 words) - 22:42, 22 October 2011
  • ...tertiary structure of protein through interaction of R-groups.(See also [[protein structure]]).
    12 KB (1,827 words) - 17:00, 7 March 2024
  • ...d to Ser126 .<ref>Browne JK ''et al.'' (1986)Erythropoietin: gene cloning, protein structure, and biological properties. Cold Spring Harb Symp Quant Biol. 51:693-702</r
    13 KB (1,859 words) - 17:44, 10 February 2024
  • ...rogramming]] in [[operations research]], many problems in [[logistics]], [[protein structure prediction]] in [[biology]], and the ability to find formal proofs of [[pur
    17 KB (2,637 words) - 13:14, 6 November 2010
  • {{main|Protein structure}}
    36 KB (5,455 words) - 11:49, 6 September 2013
  • {{main|Protein structure}}
    36 KB (5,455 words) - 08:57, 12 September 2013
  • 8 KB (1,119 words) - 13:48, 20 September 2010
  • | journal = Biochimica et Biophysica Acta (BBA) - Protein Structure
    41 KB (6,350 words) - 04:54, 21 March 2024