THE PROTEIN-FOLDING PROBLEM - THE NATIVE FOLD DETERMINES PACKING, BUT DOES PACKING DETERMINE THE NATIVE FOLD

被引:97
作者
BEHE, MJ
LATTMAN, EE
ROSE, GD
机构
[1] PENN STATE UNIV,MILTON S HERSHEY MED CTR,COLL MED,DEPT BIOL CHEM,HERSHEY,PA 17033
[2] JOHNS HOPKINS UNIV,SCH MED,DEPT BIOPHYS & BIOPHYS CHEM,BALTIMORE,MD 21205
关键词
PROTEIN PACKING; PROTEIN ENGINEERING;
D O I
10.1073/pnas.88.10.4195
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A globular protein adopts its native three-dimensional structure spontaneously under physiological conditions. This structure is specified by a stereochemical code embedded within the amino acid sequence of that protein. Elucidation of this code is a major, unsolved challenge, known as the protein-folding problem. A critical aspect of the code is thought to involve molecular packing. Globular proteins have high packing densities, a consequence of the fact that residue side chains within the molecular interior fit together with an exquisite complementarity, like pieces of a three-dimensional jigsaw puzzle [Richards, F. M. (1977) Annu. Rev. Biophys. Bioeng. 6, 151]. Such packing interactions are widely viewed as the principal determinant of the native structure. To test this view, we analyzed proteins of known structure for the presence of preferred interactions, reasoning that if side-chain complementarity is an important source of structural specificity, then sets of residues that interact favorably should be apparent. Our analysis leads to the surprising conclusion that high packing densities - so characteristic of globular proteins - are readily attainable among clusters of the naturally occurring hydrophobic amino acid residues. It is anticipated that this realization will simplify approaches to the protein--folding problem.
引用
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页码:4195 / 4199
页数:5
相关论文
共 57 条
  • [1] ALBER T, 1989, ANNU REV BIOCHEM, V58, P765, DOI 10.1146/annurev.biochem.58.1.765
  • [2] PRINCIPLES THAT GOVERN FOLDING OF PROTEIN CHAINS
    ANFINSEN, CB
    [J]. SCIENCE, 1973, 181 (4096) : 223 - 230
  • [3] ION-PAIRS IN PROTEINS
    BARLOW, DJ
    THORNTON, JM
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1983, 168 (04) : 867 - 885
  • [4] THE DISTRIBUTION OF CHARGED GROUPS IN PROTEINS
    BARLOW, DJ
    THORNTON, JM
    [J]. BIOPOLYMERS, 1986, 25 (09) : 1717 - 1733
  • [5] PROTEIN DATA BANK - COMPUTER-BASED ARCHIVAL FILE FOR MACROMOLECULAR STRUCTURES
    BERNSTEIN, FC
    KOETZLE, TF
    WILLIAMS, GJB
    MEYER, EF
    BRICE, MD
    RODGERS, JR
    KENNARD, O
    SHIMANOUCHI, T
    TASUMI, M
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1977, 112 (03) : 535 - 542
  • [6] IDENTIFICATION OF PROTEIN FOLDS - MATCHING HYDROPHOBICITY PATTERNS OF SEQUENCE SETS WITH SOLVENT ACCESSIBILITY PATTERNS OF KNOWN STRUCTURES
    BOWIE, JU
    CLARKE, ND
    PABO, CO
    SAUER, RT
    [J]. PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1990, 7 (03): : 257 - 264
  • [7] BRYANT SH, 1987, INT J PEPT PROT RES, V29, P46
  • [8] PKB - A PROGRAM SYSTEM AND DATA-BASE FOR ANALYSIS OF PROTEIN-STRUCTURE
    BRYANT, SH
    [J]. PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1989, 5 (03): : 233 - 247
  • [9] AROMATIC-AROMATIC INTERACTION - A MECHANISM OF PROTEIN-STRUCTURE STABILIZATION
    BURLEY, SK
    PETSKO, GA
    [J]. SCIENCE, 1985, 229 (4708) : 23 - 28
  • [10] STRUCTURAL INVARIANTS IN PROTEIN FOLDING
    CHOTHIA, C
    [J]. NATURE, 1975, 254 (5498) : 304 - 308