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小麦胚凝集素通过交联鞭毛膜中与凝集素相关的糖蛋白,诱导衣藻产生交配反应。

Wheat germ agglutinin induces mating reactions in Chlamydomonas eugametos by cross-linking agglutinin-associated glycoproteins in the flagellar membrane.

作者信息

Kooijman R, de Wildt P, Beumer S, van der Vliet G, Homan W, Kalshoven H, Musgrave A, van den Ende H

机构信息

Department of Molecular Cell Biology, University of Amsterdam, the Netherlands.

出版信息

J Cell Biol. 1989 Oct;109(4 Pt 1):1677-87. doi: 10.1083/jcb.109.4.1677.

Abstract

Species-specific binding between the flagellar surfaces of mating types plus and minus (mt+ and mt-) gametes of Chlamydomonas eugametos is mediated by mating type-specific agglutinins. Their interaction triggers several mating responses that are necessary for cell fusion, such as flagellar twitching, flagellar tip activation, redistribution of agglutinin molecules to the flagellar tip (tipping), and mating structure activation. Earlier, we reported that a monoclonal antibody (mAb 66.3) can induce mating reactions by cross-linking the agglutinins (Homan, W. L., A. Musgrave, H. de Nobel, R. Wagter, A. H. J. Kolk, D. de Wit, and H. van den Ende. 1988. J. Cell Biol. 107:177-189). Here we report that the lectin wheat germ agglutinin (WGA), which does not bind to the agglutinins, can also invoke all these mating reactions. We show, by immunofluorescence studies using anti-WGA and an agglutinin-specific monoclonal antibody (mAb 66.3), that WGA induces the redistribution of agglutinin to the flagellar tips of mt- gametes. Vice versa, when agglutinin tipping is induced by mAb 66.3, the WGA-binding glycoproteins are also tipped. Under the same conditions, the major flagellar glycoproteins are not redistributed, indicating that membrane transport is limited to a few components. We conclude that each agglutinin is associated with a WGA-binding glycoprotein. When cells lacking agglutinin or cells possessing inactive agglutinins are treated with WGA, mating responses are again elicited. The data suggest that clustering of agglutinin-containing complexes results in the production of intracellular signals, such as cAMP, and the coupling of the complex to a force generating system. In nature, the complexes are clustered via the agglutinins, but artificially they can be clustered by lectins or antibodies directed against other proteins in the complex.

摘要

衣藻(Chlamydomonas eugametos)正交配型(mt +)和负交配型(mt -)配子鞭毛表面之间的种特异性结合是由交配型特异性凝集素介导的。它们的相互作用引发了细胞融合所需的几种交配反应,如鞭毛抽搐、鞭毛尖端激活、凝集素分子重新分布到鞭毛尖端(尖端化)以及交配结构激活。此前,我们报道一种单克隆抗体(mAb 66.3)可通过交联凝集素诱导交配反应(霍曼,W. L.,A. 马斯格雷夫,H. 德诺贝尔,R. 瓦格特,A. H. J. 科尔克,D. 德威特,和H. 范登恩德。1988年。《细胞生物学杂志》107:177 - 189)。在此我们报道,不与凝集素结合的凝集素小麦胚凝集素(WGA)也能引发所有这些交配反应。我们通过使用抗WGA和凝集素特异性单克隆抗体(mAb 66.3)的免疫荧光研究表明,WGA诱导凝集素重新分布到mt - 配子的鞭毛尖端。反之,当mAb 66.3诱导凝集素尖端化时,WGA结合糖蛋白也会尖端化。在相同条件下,主要鞭毛糖蛋白不会重新分布,这表明膜转运仅限于少数成分。我们得出结论,每种凝集素都与一种WGA结合糖蛋白相关。当用WGA处理缺乏凝集素的细胞或具有无活性凝集素的细胞时,再次引发交配反应。数据表明,含凝集素复合物的聚集导致细胞内信号如cAMP的产生,以及复合物与力产生系统的偶联。在自然情况下,复合物通过凝集素聚集,但在人工条件下,它们可通过针对复合物中其他蛋白质的凝集素或抗体聚集。

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