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群居尾索动物柄海鞘中的β连环蛋白:一种蛋白,多种功能。

BS-cadherin in the colonial urochordate Botryllus schlosseri: one protein, many functions.

作者信息

Rosner Amalia, Rabinowitz Claudette, Moiseeva Elizabeth, Voskoboynik Ayelet, Rinkevich Baruch

机构信息

National Institute of Oceanography, Israel Oceanographic and Limnological Research, Tel Shikmona, P.O. Box 8030, Haifa 31080, Israel.

出版信息

Dev Biol. 2007 Apr 15;304(2):687-700. doi: 10.1016/j.ydbio.2007.01.018. Epub 2007 Jan 17.

DOI:10.1016/j.ydbio.2007.01.018
PMID:17316601
Abstract

Botryllus schlosseri is a colonial urochordate composed of coexisting modules of three asexually derived generations, the zooids and two cohorts of buds, each at disparate developmental stage. Functional zooids are replaced weekly by the older generation of buds through a highly synchronized developmental cycle called blastogenesis (which is, in turn, divided into four major stages, A to D). In this study, we examined the mode of expression of BS-cadherin, a 130-kDa transmembrane protein isolated from this species, during blastogenesis. BS-Cadherin is expressed extensively in internal organs of developing buds, embryos, ampullae and, briefly, in the digestive system of zooids at early blastogenic stage D (in contrast to low mRNA expression at this stage). In vitro trypsin assays on single-cell suspensions prepared from blastogenic stage D zooids, confirmed that BS-cadherin protein is expressed on cell surfaces and is, therefore, functional. BS-Cadherin expression is also upregulated in response to various stress conditions, such as oxidative stress, injury and allorecognition. It plays an important role in colony morphogenesis, because siRNA knockdown during D/A blastogenic transition causes chaotic colonial structures and disrupts oocytes homing onto their bud niches. These results reveal that BS-cadherin protein functions are exerted through a specific spatiotemporal pattern and fluctuating expression levels, in both development/regular homeostasis and in response to various stress conditions.

摘要

柄海鞘是一种群体尾索动物,由三个无性繁殖衍生世代共存的模块组成,即游动孢子和两个芽体群体,每个群体处于不同的发育阶段。功能性游动孢子每周通过一个高度同步的发育周期(称为芽球形成,芽球形成又分为四个主要阶段,A到D)被较老一代的芽体取代。在本研究中,我们研究了从该物种中分离出的一种130 kDa跨膜蛋白BS - 钙黏蛋白在芽球形成过程中的表达模式。BS - 钙黏蛋白在发育中的芽体、胚胎、壶腹的内部器官中广泛表达,并且在芽球形成早期阶段D的游动孢子消化系统中短暂表达(与此阶段低mRNA表达形成对比)。对从芽球形成阶段D的游动孢子制备的单细胞悬液进行体外胰蛋白酶测定,证实BS - 钙黏蛋白在细胞表面表达,因此具有功能。BS - 钙黏蛋白的表达在各种应激条件下也会上调,如氧化应激、损伤和异体识别。它在群体形态发生中起重要作用,因为在D/A芽球形成转变期间进行siRNA敲低会导致混乱的群体结构,并破坏卵母细胞归巢到其芽体龛位。这些结果表明,BS - 钙黏蛋白的功能是通过特定的时空模式和波动的表达水平来发挥的,无论是在发育/正常稳态中还是在对各种应激条件的反应中。

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