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含有dysferlin结构域的蛋白质Pex30p和Pex31p定位于两个区室,控制毕赤酵母中油酸诱导的过氧化物酶体的数量和大小。

Dysferlin domain-containing proteins, Pex30p and Pex31p, localized to two compartments, control the number and size of oleate-induced peroxisomes in Pichia pastoris.

作者信息

Yan Mingda, Rachubinski Dorian A, Joshi Saurabh, Rachubinski Richard A, Subramani Suresh

机构信息

Division of Biological Sciences, University of California, San Diego, La Jolla, CA 92093-0322, USA.

出版信息

Mol Biol Cell. 2008 Mar;19(3):885-98. doi: 10.1091/mbc.e07-10-1042. Epub 2007 Dec 19.

Abstract

Yarrowia lipolytica Pex23p and Saccharomyces cerevisiae Pex30p, Pex31p, and Pex32p comprise a family of dysferlin domain-containing peroxins. We show that the deletion of their Pichia pastoris homologues, PEX30 and PEX31, does not affect the function or division of methanol-induced peroxisomes but results in fewer and enlarged, functional, oleate-induced peroxisomes. Synthesis of Pex30p is constitutive, whereas that of Pex31p is oleate-induced but at a much lower level relative to Pex30p. Pex30p interacts with Pex31p and is required for its stability. At steady state, both Pex30p and Pex31p exhibit a dual localization to the endoplasmic reticulum (ER) and peroxisomes. However, Pex30p is localized mostly to the ER, whereas Pex31p is predominantly on peroxisomes. Consistent with ER-to-peroxisome trafficking of these proteins, Pex30p accumulates on peroxisomes upon overexpression of Pex31p. Additionally, Pex31p colocalizes with Pex30p at the ER in pex19Delta cells and can be chased from the ER to peroxisomes in a Pex19p-dependent manner. The dysferlin domains of Pex30p and Pex31p, which are dispensable for their interaction, stability, and subcellular localization, are essential for normal peroxisome number and size. The growth environment-specific role of these peroxins, their dual localization, and the function of their dysferlin domains provide novel insights into peroxisome morphogenesis.

摘要

解脂耶氏酵母Pex23p以及酿酒酵母Pex30p、Pex31p和Pex32p构成了一个包含dysferlin结构域的过氧化物酶家族。我们发现,它们在毕赤酵母中的同源物PEX30和PEX31的缺失并不影响甲醇诱导的过氧化物酶体的功能或分裂,但会导致油酸诱导的功能性过氧化物酶体数量减少且体积增大。Pex30p的合成是组成型的,而Pex31p的合成是油酸诱导的,但相对于Pex30p而言水平要低得多。Pex30p与Pex31p相互作用,并且是其稳定性所必需的。在稳态下,Pex30p和Pex31p在内质网(ER)和过氧化物酶体中均表现出双重定位。然而,Pex30p主要定位于内质网,而Pex31p主要定位于过氧化物酶体。与这些蛋白质从内质网到过氧化物酶体的转运一致,在Pex31p过表达时,Pex30p会在过氧化物酶体上积累。此外,在pex19Δ细胞中,Pex31p与Pex30p在内质网中共定位,并且可以以依赖于Pex19p的方式从内质网被转运至过氧化物酶体。Pex30p和Pex31p的dysferlin结构域对于它们的相互作用、稳定性和亚细胞定位并非必需,但对于正常过氧化物酶体的数量和大小却是必不可少的。这些过氧化物酶在生长环境特异性方面的作用、它们的双重定位以及dysferlin结构域的功能为过氧化物酶体形态发生提供了新的见解。

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