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  4. Solution structure and base specificity of cytotoxic RC-RNase 2 from Rana catesbeiana
 
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Solution structure and base specificity of cytotoxic RC-RNase 2 from Rana catesbeiana

Journal
Archives of Biochemistry and Biophysics
Journal Volume
584
Journal Volume
584
Pages
70-78
Start Page
70
End Page
78
ISSN
00039861
Date Issued
2015-10-15
Author(s)
CHUN-HUA HSU  
Chang, Chi-Fon
Liao, You-Di
Wu, Shih-Hsiung
Chen, Chinpan
DOI
10.1016/j.abb.2015.08.010
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-84941242304&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/391056
Abstract
Cytotoxic ribonucleases found in the oocytes and early embryos of frogs with antitumor activity are well-documented. RC-RNase 2, a cytotoxic ribonuclease isolated from oocytes of bullfrog Rana catesbeiana, consists of 105 residues linked with 4 disulfide bridges and belongs to the bovine pancreatic ribonuclease (RNase A) superfamily. Among the RC-RNases, the base preference for RNase 2 is UpG but CpG for RC-RNase 4; while RC-RNase possesses the base specificity of both UpG and CpG. Interestingly, RC-RNase 2 or 4 has much lower catalytic activity but only three-fold less cytotoxicity than RC-RNase. Here, we report the NMR solution structure of rRC-RNase 2, comprising three alpha-helices and two sets of antiparallel beta-sheets. The differences of side-chain conformations of subsite residues among RNase A, RC-RNase, RC-RNase 4 and rRNase 2 are related to their distinct catalytic activities and base preferences. Furthermore, the substrate-related residues in the base specificity among native RC-RNases are derived using the chemical shift perturbation on ligand binding.
Subjects
Base specificity
NMR
RC-RNase 2
Ribonuclease
Solution structure
Publisher
Academic Press Inc.
Type
journal article

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