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一种由刺猬蛋白自催化加工释放的不寻常的领鞭毛虫蛋白。

An unusual choanoflagellate protein released by Hedgehog autocatalytic processing.

作者信息

Snell Elizabeth A, Brooke Nina M, Taylor William R, Casane Didier, Philippe Hervé, Holland Peter W H

机构信息

School of Animal and Microbial Sciences, The University of Reading, Whiteknights, Reading RG6 6AJ, UK.

出版信息

Proc Biol Sci. 2006 Feb 22;273(1585):401-7. doi: 10.1098/rspb.2005.3263.

Abstract

Hedgehog proteins are important cell-cell signalling proteins utilized during the development of multicellular animals. Members of the hedgehog gene family have not been detected outside the Metazoa, raising unanswered questions about their evolutionary origin. Here we report a highly unusual hedgehog-related gene from a choanoflagellate, a close unicellular relative of the animals. The deduced C-terminal domain, Hoglet-C, is homologous to the autocatalytic domain of Hedgehog proteins and is predicted to function in autocatalytic cleavage of the precursor peptide. In contrast, the N-terminal Hoglet-N peptide has no similarity to the signalling peptide of Hedgehog (Hh-N). Instead, Hoglet-N is deduced to be a secreted protein with an enormous threonine-rich domain of unprecedented size and purity (over 200 threonine residues) and two polysaccharide-binding domains. Structural modelling reveals that these domains have a novel combination of features found in cellulose-binding domains (CBD) of types IIa and IIb, and are expected to bind cellulose. We propose that the two CBD domains enable Hoglet-N to bind to plant matter, tethering an amorphous nucleophilic anchor, facilitating transient adhesion of the choanoflagellate cell. Since Hh-C and Hoglet-C are homologous, but Hh-N and Hoglet-N are not, we argue that metazoan hedgehog genes evolved by fusion of two distinct genes.

摘要

刺猬蛋白是多细胞动物发育过程中重要的细胞间信号蛋白。在后生动物之外尚未检测到刺猬基因家族的成员,这引发了关于其进化起源的未解之谜。在此,我们报道了一种来自领鞭毛虫的极为特殊的刺猬相关基因,领鞭毛虫是动物的单细胞近亲。推导得出的C端结构域Hoglet-C与刺猬蛋白的自催化结构域同源,预计在前体肽的自催化切割中发挥作用。相比之下,N端的Hoglet-N肽与刺猬信号肽(Hh-N)没有相似性。相反,Hoglet-N被推导为一种分泌蛋白,具有一个前所未有的大小和纯度的巨大富含苏氨酸结构域(超过200个苏氨酸残基)以及两个多糖结合结构域。结构建模显示,这些结构域具有在IIa型和IIb型纤维素结合结构域(CBD)中发现的特征的新颖组合,预计能够结合纤维素。我们提出,这两个CBD结构域使Hoglet-N能够结合植物物质,系住一个无定形亲核锚,促进领鞭毛虫细胞的瞬时附着。由于Hh-C和Hoglet-C是同源的,但Hh-N和Hoglet-N不是,我们认为后生动物的刺猬基因是由两个不同基因融合进化而来的。

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