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动力蛋白样蛋白1参与过氧化物酶体分裂。

Dynamin-like protein 1 is involved in peroxisomal fission.

作者信息

Koch Annett, Thiemann Meinolf, Grabenbauer Markus, Yoon Yisang, McNiven Mark A, Schrader Michael

机构信息

Department of Cell Biology and Cell Pathology, University of Marburg, Robert Koch Str. 5, Germany.

出版信息

J Biol Chem. 2003 Mar 7;278(10):8597-605. doi: 10.1074/jbc.M211761200. Epub 2002 Dec 23.

Abstract

The mammalian dynamin-like protein 1 (DLP1), a member of the dynamin family of large GTPases, possesses mechanochemical properties known to constrict and tubulate membranes. In this study, we have combined two experimental approaches, induction of peroxisome proliferation by Pex11pbeta and expression of dominant-negative mutants, to test whether DLP1 plays a role in peroxisomal growth and division. We were able to localize DLP1 in spots on tubular peroxisomes in HepG2 cells. In addition, immunoblot analysis revealed the presence of DLP1 in highly purified peroxisomal fractions from rat liver and an increase of DLP1 after treatment of rats with the peroxisome proliferator bezafibrate. Expression of a dominant negative DLP1 mutant deficient in GTP hydrolysis (K38A) either alone or in combination with Pex11pbeta caused the appearance of tubular peroxisomes but had no influence on their intracellular distribution. In co-expressing cells, the formation of tubulo-reticular networks of peroxisomes was promoted, and peroxisomal division was completely inhibited. These findings were confirmed by silencing of DLP1 using siRNA. We propose a direct role for the dynamin-like protein DLP1 in peroxisomal fission and in the maintenance of peroxisomal morphology in mammalian cells.

摘要

哺乳动物动力蛋白样蛋白1(DLP1)是大型GTP酶动力蛋白家族的成员,具有已知的可收缩和使膜成管状的机械化学特性。在本研究中,我们结合了两种实验方法,即通过Pex11pβ诱导过氧化物酶体增殖和表达显性负性突变体,以测试DLP1是否在过氧化物酶体的生长和分裂中发挥作用。我们能够将DLP1定位在HepG2细胞中管状过氧化物酶体上的斑点处。此外,免疫印迹分析显示,在大鼠肝脏高度纯化的过氧化物酶体组分中存在DLP1,并且在用过氧化物酶体增殖剂非诺贝特处理大鼠后,DLP1有所增加。单独或与Pex11pβ联合表达缺乏GTP水解能力的显性负性DLP1突变体(K38A)会导致管状过氧化物酶体的出现,但对其细胞内分布没有影响。在共表达细胞中,过氧化物酶体的管状网状网络的形成得到促进,并且过氧化物酶体分裂被完全抑制。使用siRNA沉默DLP1证实了这些发现。我们提出,动力蛋白样蛋白DLP1在哺乳动物细胞的过氧化物酶体分裂和过氧化物酶体形态维持中起直接作用。

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