Three-dimensional structure of the human transglutaminase 3 enzyme: Binding of calcium ions changes structure for activation

  • Ahvazi B.; 
  • Kim H.C.; 
  • Kee S.-H.; 
  • Nemes Z.; 
  • Steinert P.M.
Citations

SCOPUS

103

초록

Transglutaminase (TGase) enzymes catalyze the formation of covalent cross-links between protein-bound glutamines and lysines in a calcium-dependent manner, but the role of Ca2+ ions remains unclear. The TGase 3 isoform is widely expressed and is important for epithelial barrier formation. It is a zymogen, requiring proteolysis for activity. We have solved the three-dimensional structures of the zymogen and the activated forms at 2.2 and 2.1 Å resolution, respectively, and examined the role of Ca2+ ions. The zymogen binds one ion tightly that cannot be exchanged. Upon proteolysis, the enzyme exothermally acquires two more Ca2+ ions that activate the enzyme, are exchangeable and are functionally replaceable by other lanthanide trivalent cations. Binding of a Ca2+ ion at one of these sites opens a channel which exposes the key Trp236 and Trp327 residues that control substrate access to the active site. Together, these biochemical and structural data reveal for the first time in a TGase enzyme that Ca2+ ions induce structural changes which at least in part dictate activity and, moreover, may confer substrate specificity.

키워드

Activation; Calcium binding; Transglutaminase; X-ray structure; isoenzyme; protein glutamine gamma glutamyltransferase; protein glutamine gamma glutamyltransferase 3; unclassified drug; article; calcium binding; conformational transition; enzyme activation; enzyme active site; enzyme conformation; human; molecular dynamics; priority journal; X ray analysis; Binding Sites; Calcium; Calcium-Binding Proteins; Crystallography, X-Ray; Enzyme Activation; Enzyme Precursors; Humans; Protein Structure, Tertiary; Structure-Activity Relationship; Substrate Specificity; Transglutaminases
제목
Three-dimensional structure of the human transglutaminase 3 enzyme: Binding of calcium ions changes structure for activation
저자
Ahvazi B.; Kim H.C.; Kee S.-H.; Nemes Z.; Steinert P.M.
DOI
10.1093/emboj/21.9.2055
발행일
2002
유형
Article
저널명
The EMBO Journal
권
21
호
9
페이지
2055 ~ 2067