4.2 Review

Effects of i and i+3 residue identity on cis-trans isomerism of the aromatic(i+1)-prolyl(i+2) amide bond: Implications for type VI beta-turn formation

期刊

BIOPOLYMERS
卷 84, 期 2, 页码 192-204

出版社

WILEY
DOI: 10.1002/bip.20382

关键词

cis-trans isomerization; aromatic-prolyl interaction; aromatic-aromatic interaction; type VI beta-turn; proline

资金

  1. NCRR NIH HHS [2 P20 RR016472-04] Funding Source: Medline
  2. NIGMS NIH HHS [T32 GM 08550] Funding Source: Medline
  3. NATIONAL CENTER FOR RESEARCH RESOURCES [P20RR016472] Funding Source: NIH RePORTER
  4. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [T32GM008550] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Cis-trans isomerization of amide bonds plays critical roles in protein molecular recognition, protein folding, protein misfolding, and disease. Aromatic-proline sequences are particularly prone to exhibit cis amide bonds. The roles of residues adjacent to a tyrosine-proline residue pair oil cis-trans isomerism were examined. A short series of peptides XYPZ was synthesized and cis-trans isomerism was analyzed. Based oil these initial studies, a series of peptides XYPN, X = all 20 canonical amino acids, was spithesized and analyzed by NMR for i residue effects oil cis-trans isomerization. The following effects were observed: (a) aromatic residues immediately preceding Tyr-Pro disfavor cis amide bonds, with K-trans/cis = 5-7-8.0. W > Y > F; (b) proline residues preceding Tyr-Pro lead to multiple species, exhibiting cis-trans isomerization of either or both X-Pro amide bonds; and (c) other residues exhibit similar values of K-trans/cis (= 2.9-4.2), with Thr and protonated His exhibiting the highest fraction cis. beta-Branched and short polar residues were somewhat more favorable in stabilizing the cis conformation. Phosphorylation of serine at the i position modestly increases the stability of the cis conformer. In addition, the effect of the i+3 residue was examined in a limited series of peptides TYPZ. NMR data indicated that aromatic residues, Pro, Asn, Ala, and Val at the i+3 residue all favor cis amide bonds, with aromatic residues and Asn favoring more compact phi at Tyr(cis) and Ala and Pro favoring more extended phi at Tyr(cis). D-Alanine at the i+3 position particularly disfalors cis amide bonds. (c) 2005 Wiley Periodicals, Inc.

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