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贻贝足丝中的可延伸胶原蛋白:一种天然嵌段共聚物。

Extensible collagen in mussel byssus: a natural block copolymer.

作者信息

Coyne K J, Qin X X, Waite J H

机构信息

College of Marine Studies and Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, USA.

出版信息

Science. 1997 Sep 19;277(5333):1830-2. doi: 10.1126/science.277.5333.1830.

Abstract

To adhere to solid surfaces, marine mussels produce byssal threads, each of which is a stiff tether at one end and a shock absorber with 160 percent extensibility at the other end. The elastic extensibility of proximal byssus is extraordinary given its construction of collagen and the limited extension (less than 10 percent) of most collagenous materials. From the complementary DNA, we deduced that the primary structure of a collagenous protein (preCol-P) predominating in the extensible proximal portion of the threads encodes an unprecedented natural block copolymer with three major domain types: a central collagen domain, flanking elastic domains, and histidine-rich terminal domains. The elastic domains have sequence motifs that strongly resemble those of elastin and the amorphous glycine-rich regions of spider silk fibroins. Byssal thread extensibility may be imparted by the elastic domains of preCol-P.

摘要

为了附着在固体表面,海洋贻贝会产生足丝,每根足丝一端是坚硬的系绳,另一端是具有160%延伸性的减震器。考虑到近端足丝由胶原蛋白构成且大多数胶原质材料的延伸有限(不到10%),其弹性延伸性非常突出。从互补DNA中,我们推断出在足丝可延伸近端部分占主导的一种胶原蛋白质(preCol-P)的一级结构编码了一种前所未有的天然嵌段共聚物,它有三种主要结构域类型:一个中央胶原结构域、两侧的弹性结构域以及富含组氨酸的末端结构域。弹性结构域具有与弹性蛋白以及蜘蛛丝纤维蛋白中无定形富含甘氨酸区域的序列基序非常相似的序列基序。足丝的延伸性可能是由preCol-P的弹性结构域赋予的。

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