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鉴定丝状真菌粗糙脉孢菌过氧化物酶体对接复合物的一个新组分 PEX33。

Identification of PEX33, a novel component of the peroxisomal docking complex in the filamentous fungus Neurospora crassa.

机构信息

Institut für Physiologische Chemie, Ruhr-Universität Bochum, 44780 Bochum, Germany.

出版信息

Eur J Cell Biol. 2010 Dec;89(12):955-64. doi: 10.1016/j.ejcb.2010.07.003. Epub 2010 Aug 21.

Abstract

The docking complex of peroxisomal matrix protein import is composed of PEX13 and PEX14 in all species analyzed so far, whereas only yeast appears to possess an additional component, PEX17. In this report we isolated PEX14 complexes of Neurospora crassa. Among the complex constituents, one protein designated as PEX33 possessed homology to PEX14 but only in a short N-terminal domain. The PEX14/PEX33 interaction was verified by means of two-hybrid analysis. Moreover, PEX33 was shown to interact with itself and the PTS1-receptor PEX5. Localization studies demonstrated that PEX33 constitutes a glyoxysomal protein. Growth tests of the pex33 deletion strain revealed a defect of this strain in the biogenesis of glyoxysomes and Woronin bodies. As the function of PEX33 was not redundant to that of PEX14, it is a genuine novel peroxin. Based on our experimental data, the function of PEX33 seems to resemble that of yeast PEX17 despite clear structural differences.

摘要

过氧化物酶体基质蛋白导入的对接复合物由 PEX13 和 PEX14 组成,迄今为止在所有分析的物种中均如此,而只有酵母似乎还具有另一个成分 PEX17。在本报告中,我们分离了粗糙脉孢菌的 PEX14 复合物。在复合物成分中,一种被指定为 PEX33 的蛋白质与 PEX14 具有同源性,但仅在短的 N 端结构域中。通过双杂交分析验证了 PEX14/PEX33 相互作用。此外,还表明 PEX33 与自身以及 PTS1-受体 PEX5 相互作用。定位研究表明 PEX33 构成了乙醛酸体蛋白。pex33 缺失菌株的生长测试表明,该菌株在乙醛酸体和沃罗宁体的生物发生中存在缺陷。由于 PEX33 的功能不是 PEX14 的冗余功能,因此它是一种真正的新型过氧化物酶体蛋白。根据我们的实验数据,尽管存在明显的结构差异,但 PEX33 的功能似乎类似于酵母 PEX17。

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