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Degradation of myoglobin by polymeric artificial metalloproteases containing catalytic modules with various catalytic group densities: Site selectivity in peptide bond cleavage

Authors
Yoo,Chang-eunChae, Pil-seokKim,Jung-eunJeong, Eui-juneSuh,Junghun
Issue Date
Nov-2003
Publisher
American Chemical Society
Citation
Journal of the American Chemical Society, v.125, no.47, pp.14580 - 14589
Indexed
SCIE
SCOPUS
Journal Title
Journal of the American Chemical Society
Volume
125
Number
47
Start Page
14580
End Page
14589
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/46649
DOI
10.1021/ja034730t
ISSN
0002-7863
Abstract
Mononuclear, dinuclear, and tetranuclear artificial metalloproteases were prepared by attaching respective catalytic modules containing the Cu(II) complex of cyclen (Cu(II)Cyc) to a derivative of crosslinked polystyrene. The polymeric artificial metalloproteases effectively cleaved peptide bonds of myoglobin (Mb) by hydrolysis. The proteolytic activity increased considerably as the catalytic group density was raised: the ratio of k(cat)/K-m was 1:13:100 for the mono-, di-, and tetranuclear catalysts. In the degradation of Mb by the dinuclear catalyst, two pairs of intermediate proteins accumulated. One of the two initial cleavage sites leading to the formation of the protein fragments is identified as Gln(91)-Ser(92) and the other is suggested as Ala(94)-Thr(95). On the basis of a molecular modeling study by using the X-ray crystallographic structure of Mb, the site-selectivity is attributed to anchorage of one Cu(II)Cyc unit of the catalytic module to a heme carboxylate of Mb. The high site selectivity for the initial cleavage of a protein substrate and mechanistic analysis of the catalytic action are unprecedented for polymeric artificial enzymes.
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ERICA 첨단융합대학 (ERICA 바이오나노공학전공)
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