Small heat shock proteins: molecular structure and chaperone function

被引:0
|
作者
Y. Sun
T. H. MacRae
机构
[1] Dalhousie University,Department of Biology
关键词
Molecular chaperones; small heat shock proteins; the α-crystallin domain; amino- and carboxy-terminal extensions; oligomerization; chaperoning; stress resistance;
D O I
暂无
中图分类号
学科分类号
摘要
Small heat shock proteins (sHSPs) associate with nuclei, cytoskeleton and membranes, and as molecular chaperones they bind partially denatured proteins, thereby preventing irreversible protein aggregation during stress. sHSP monomers consist of a conserved α-crystallin domain of approximately 90 amino acid residues, bordered by variable amino- and carboxy-terminal extensions. The sHSPs undergo dynamic assembly into mono- and poly-disperse oligomers where the rate of disassembly affects chaperoning. The α-crystallin domain contains several β-strands organized into two β-sheets responsible for dimer formation, the basic building block of most sHSPS. The amino-terminal extension modulates oligomerization, subunit dynamics and substrate binding, whereas the flexible carboxy-terminal extension promotes solubility, chaperoning and oligomerization, the latter by inter-subunit linkage. Crystallization studies have revealed sHSP structure and function. Additionally, site-directed mutagenesis, biophysical investigations, functional studies and the discovery of relationships between mutated sHSPs and diseases have illuminated the role of sHSP within cells.
引用
收藏
页码:2460 / 2476
页数:16
相关论文
共 50 条
  • [31] Structure function relationship among α-crystallin related small heat shock proteins
    Farnsworth, P
    Singh, K
    EXPERIMENTAL EYE RESEARCH, 2004, 79 (06) : 787 - 794
  • [32] Some like it hot: the structure and function of small heat-shock proteins
    Haslbeck, M
    Franzmann, T
    Weinfurtner, D
    Buchner, J
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2005, 12 (10) : 842 - 846
  • [33] Investigation of the chaperone function of the small heat shock protein-AgsA
    Tomoyasu, Toshifumi
    Tabata, Atsushi
    Nagamune, Hideaki
    BMC BIOCHEMISTRY, 2010, 11
  • [34] The function of the β3 interactive domain in the small heat shock protein and molecular chaperone, human αB crystallin
    Ghosh, Joy G.
    Estrada, Marcus R.
    Houck, Scott A.
    Clark, John I.
    CELL STRESS & CHAPERONES, 2006, 11 (02): : 187 - 197
  • [35] Chaperone-like activity of α-crystallin and other small heat shock proteins
    Ganea, E
    CURRENT PROTEIN & PEPTIDE SCIENCE, 2001, 2 (03) : 205 - 225
  • [36] Stabilization control of small heat shock proteins in cellular chaperone protection systems
    Chen, HC
    Lee, HC
    Lin, TY
    Chen, BS
    JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 2006, 29 (02) : 361 - 373
  • [37] How Do Small Heat Shock Proteins Function?
    Rajagopal, Ponni
    Jehle, Stefan
    Caputo, Christine
    Cho, Seung-Hee
    Oschkinat, Hartmut
    Klevit, Rachel
    FASEB JOURNAL, 2009, 23
  • [38] SMALL HEAT-SHOCK PROTEINS ARE MOLECULAR CHAPERONES
    JAKOB, U
    GAESTEL, M
    ENGEL, K
    BUCHNER, J
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1993, 268 (03) : 1517 - 1520
  • [39] Molecular chaperones: Small heat shock proteins in the limelight
    van den IJssel, P
    Norman, DG
    Quinlan, RA
    CURRENT BIOLOGY, 1999, 9 (03) : R103 - R105
  • [40] Structure and function of the small heat shock protein/α-crystallin family of molecular chaperones
    Van Montfort, R
    Slingsby, C
    Vierling, E
    PROTEIN FOLDING IN THE CELL, 2002, 59 : 105 - 156