4.2 Review

Impact of genetic insights into calpain biology

期刊

JOURNAL OF BIOCHEMISTRY
卷 150, 期 1, 页码 23-37

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jb/mvr070

关键词

calcium ion; calpain; intracellular proteolysis; muscular dystrophy; stomach ulcer

资金

  1. MEXT.KAKENHI [18076007, 20780106, 22770139]
  2. JSPS.KAKENHI [20370055]
  3. Takeda Science Foundation
  4. Grants-in-Aid for Scientific Research [20780106, 20370055, 22770139, 18076007] Funding Source: KAKEN

向作者/读者索取更多资源

Calpain has long been an enigmatic enzyme, although it is involved in a variety of biological phenomena. Recent progress in calpain genetics has highlighted numerous physiological contexts in which the functions of calpain are of great significance. This review focuses on recent findings in the field of calpain genetics and the importance of calpain function. Calpain is an intracellular Ca2+-dependent cysteine protease (EC 3.4.22.17; Clan CA, family C02) found in almost all eukaryotes. It is also present in a few bacteria, but not in archaebacteria. Calpain has limited proteolytic activity; rather, it transforms or modulates the structure and/or activity of its substrates. It is, therefore, referred to as a 'modulator protease'. Within the human genome, 15 genes (CAPN1-3, CAPN5-16) encode a calpain-like protease (CysPc) domain along with several different functional domains. Thus, calpains can be regarded as a distinct family of versatile enzymes that fulfil numerous tasks in vivo. Genetic studies show that a variety of defects in many different organisms, including lethality, muscular dystrophies and gastropathy, actually stem from calpain deficiencies. The cause-effect relationships identified by these studies form the basis for ongoing and future studies regarding the physiological role of calpains.

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