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蛛网胶:由同一 DNA 序列两条互补链表达的两种蛋白质。

Spider web glue: two proteins expressed from opposite strands of the same DNA sequence.

机构信息

Department of Molecular Biology, University of Wyoming, Laramie, Wyoming 82071-3944, USA.

出版信息

Biomacromolecules. 2009 Oct 12;10(10):2852-6. doi: 10.1021/bm900681w.

Abstract

The various silks that make up the web of the orb web spiders have been studied extensively. However, success in prey capture depends as much on the web glue as on the fibers. Spider silk glue, which is considered one of the strongest and most effective biological glues, is an aqueous solution secreted from the orb weaving spider's aggregate glands and coats the spiral prey capturing threads of their webs. Studies identified the major component of the glue as microscopic nodules made of a glycoprotein. This study describes two newly discovered proteins that form the glue-glycoprotein of the golden orb weaving spider Nephila clavipes . Our results demonstrate that both proteins contain unique 110 amino acid repetitive domains that are encoded by opposite strands of the same DNA sequence. Thus, the genome of the spider encodes two distinct yet functionally related genes by using both strands of an identical DNA sequence. Moreover, the closest match for the nonrepetitive region of one of the proteins is chitin binding proteins. The web glue appears to have evolved a substantial level of sophistication matching that of the spider silk fibers.

摘要

构成蛛网的各种丝已经被广泛研究。然而,成功捕获猎物不仅依赖于纤维,还依赖于蛛网胶。蛛丝胶被认为是最强效和最有效的生物胶之一,是由圆网蜘蛛的集合腺分泌的水溶液,涂覆在其蛛网的螺旋状猎物捕捉线上。研究确定胶的主要成分是由糖蛋白组成的微观结节。本研究描述了两种新发现的蛋白质,它们构成了金圆网蜘蛛 Nephila clavipes 的胶糖蛋白。我们的结果表明,这两种蛋白质都含有独特的 110 个氨基酸重复结构域,由同一 DNA 序列的两条互补链编码。因此,蜘蛛的基因组通过使用相同 DNA 序列的两条链,编码两个不同但功能相关的基因。此外,其中一种蛋白质的非重复区域的最接近匹配物是几丁质结合蛋白。蛛网胶似乎已经进化到了相当复杂的程度,与蜘蛛丝纤维相匹配。

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