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The peroxin Pex34p functions with the Pex11 family of peroxisomal divisional proteins to regulate the peroxisome population in yeast

机译:过氧化物酶Pex34p与过氧化物酶体分裂蛋白的Pex11家族一起调节酵母中的过氧化物酶体群体

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Peroxisomes are ubiquitous organelles involved in diverse metabolic processes, most notably the metabolism of lipids and the detoxification of reactive oxygen species. Peroxisomes are highly dynamic and change in size and number in response to both intra- and extracellular cues. In the yeast Saccharomyces cerevisiae , peroxisome growth and division are controlled by both the differential import of soluble matrix proteins and a specialized divisional machinery that includes peroxisome-specific factors, such as members of the Pex11 protein family, and general organelle divisional factors, such as the dynamin-related protein Vps1p. Global yeast two-hybrid analyses have demonstrated interactions between the product of the S. cerevisiae gene of unknown function, YCL056c , and Pex proteins involved in peroxisome biogenesis. Here we show that the protein encoded by YCL056c , renamed Pex34p, is a peroxisomal integral membrane protein that acts independently and also in concert with the Pex11 protein family members Pex11p, Pex25p, and Pex27p to control the peroxisome populations of cells under conditions of both peroxisome proliferation and constitutive peroxisome division. Yeast two-hybrid analysis showed that Pex34p interacts physically with itself and with Pex11p, Pex25p, and Pex27p but not with Vps1p. Pex34p can act as a positive effector of peroxisome division as its overexpression leads to increased numbers of peroxisomes in wild type and pex34Δ cells. Pex34p requires the Pex11 family proteins to promote peroxisome division. Our discovery of Pex34p as a protein involved in the already complex control of peroxisome populations emphasizes the necessity of cells to strictly regulate their peroxisome populations to be able to respond appropriately to changing environmental conditions.
机译:过氧化物酶体是参与多种代谢过程的普遍存在的细胞器,最显着的是脂质的代谢和活性氧的解毒。过氧化物酶体是高度动态的,并且响应于细胞内和细胞外提示而改变大小和数量。在酿酒酵母中,过氧化物酶体的生长和分裂受可溶性基质蛋白的差异输入和包括过氧化物酶体特异性因子(例如Pex11蛋白家族的成员)和一般细胞器分裂因子(例如,与动力相关的蛋白Vps1p。全球酵母双杂交分析已证明未知功能的酿酒酵母基因的产物YCL056c与过氧化物酶体生物发生中的Pex蛋白之间存在相互作用。在这里,我们显示由YCL056c编码的蛋白(重命名为Pex34p)是一种过氧化物酶体整合膜蛋白,其独立发挥作用,还与Pex11蛋白家族成员Pex11p,Pex25p和Pex27p协同作用,以在两种过氧化物酶体的条件下控制细胞中的过氧化物酶体群体增殖和本构过氧化物酶体分裂。酵母两杂交分析表明,Pex34p与自身以及与Pex11p,Pex25p和Pex27p进行物理交互,但与Vps1p不进行交互。 Pex34p可以作为过氧化物酶体分裂的阳性效应物,因为其过表达导致野生型和pex34Δ细胞中过氧化物酶体的数量增加。 Pex34p需要Pex11家族蛋白来促进过氧化物酶体分裂。我们发现Pex34p是参与过氧化物酶体种群本来就很复杂的控制的蛋白质,这强调了细胞必须严格调节其过氧化物酶体种群以能够对不断变化的环境条件做出适当反应的必要性。

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