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Cited 9 time in webofscience Cited 10 time in scopus
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Allosteric inhibition site of transglutaminase 2 is unveiled in the N terminusopen access

Authors
Kim, NayeonKang, Joon HeeLee, Won-KyuKim, Seul-GiLee, Jae-SeonLee, Seon-HyeongPark, Jong BaeKim, Kyung-HeeGong, Young-DaeHwang, Kwang YeonKim, Soo-Youl
Issue Date
Nov-2018
Publisher
SPRINGER WIEN
Keywords
Transglutaminase 2; p53; Allosteric binding site; GK921
Citation
AMINO ACIDS, v.50, no.11, pp 1583 - 1594
Pages
12
Indexed
SCI
SCIE
SCOPUS
Journal Title
AMINO ACIDS
Volume
50
Number
11
Start Page
1583
End Page
1594
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/8941
DOI
10.1007/s00726-018-2635-2
ISSN
0939-4451
1438-2199
Abstract
Previously we have demonstrated transglutaminase 2 (TGase 2) inhibition abrogated renal cell carcinoma (RCC) using GK921 (3-(phenylethynyl)-2-(2-(pyridin-2-yl)ethoxy)pyrido[3,2-b]pyrazine), although the mechanism of TGase 2 inhibition remains unsolved. Recently, we found that the increase of TGase 2 expression is required for p53 depletion in RCC by transporting the TGase 2 (1-139 a.a)-p53 complex to the autophagosome, through TGase 2 (472-687 a.a) binding p62. In this study, mass analysis revealed that GK921 bound to the N terminus of TGase 2 (81-116 a.a), which stabilized p53 by blocking TGase 2 binding. This suggests that RCC survival can be stopped by p53-induced cell death through blocking the p53-TGase 2 complex formation using GK921. Although GK921 does not bind to the active site of TGase 2, GK921 binding to the N terminus of TGase 2 also inactivated TGase 2 activity through acceleration of non-covalent self-polymerization of TGase 2 via conformational change. This suggests that TGase 2 has an allosteric binding site (81-116 a.a) which changes the conformation of TGase 2 enough to accelerate inactivation through self-polymer formation.
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