NONLOCAL STRUCTURAL PERTURBATIONS IN A MUTANT HUMAN INSULIN - SEQUENTIAL RESONANCE ASSIGNMENT AND C-13-ISOTOPE-AIDED 2D-NMR STUDIES OF [PHEB24-]GLY]INSULIN WITH IMPLICATIONS FOR RECEPTOR RECOGNITION

被引:27
作者
HUA, QX
SHOELSON, SE
WEISS, MA
机构
[1] HARVARD UNIV,BRIGHAM & WOMENS HOSP,JOSLIN DIABET CTR,BOSTON,MA 02115
[2] HARVARD UNIV,BRIGHAM & WOMENS HOSP,SCH MED,DEPT MED,BOSTON,MA 02215
[3] HARVARD UNIV,MASSACHUSETTS GEN HOSP,DEPT MED,BOSTON,MA 02114
[4] CHINESE ACAD SCI,BEIJING,PEOPLES R CHINA
关键词
D O I
10.1021/bi00162a037
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Insulin's mechanism of receptor binding is not well understood despite extensive study by mutagenesis and X-ray crystallography. Of particular interest are "anomalous" analogues whose bioactivities are not readily rationalized by crystal structures. Here the structure and dynamics of one such analogue (GlyB24-insulin) are investigated by circular dichroism (CD) and isotope-aided 2D-NMR spectroscopy. The mutant insulin retains near-native receptor-binding affinity despite a nonconservative substitution (PheB24-->Gly) in the receptor-binding surface. Relative to native insulin, GlyB24-insulin exhibits reduced dimerization; the monomer (the active species) exhibits partial loss of ordered structure, as indicated by CD studies and motional narrowing of selected H-1-NMR resonance. 2D-NMR studies demonstrate that the B-chain beta-turn (residues B20-23) and beta-strand (residues B24-B28) are destabilized; essentially native alpha-helical secondary structure (residues A3-A8, A13-A18, and B9-B19) is otherwise maintained. C-13-Isotope-edited NOESY studies demonstrate that long-range contacts observed between the B-chain beta-strand and the alpha-helical core in native insulin are absent in the mutant. Implications for the mechanism of insulin's interaction with its receptor are discussed.
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收藏
页码:11940 / 11951
页数:12
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