首页> 美国卫生研究院文献>Molecular and Cellular Biology >Two AAA Family Peroxins PpPex1p and PpPex6p Interact with Each Other in an ATP-Dependent Manner and Are Associated with Different Subcellular Membranous Structures Distinct from Peroxisomes
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Two AAA Family Peroxins PpPex1p and PpPex6p Interact with Each Other in an ATP-Dependent Manner and Are Associated with Different Subcellular Membranous Structures Distinct from Peroxisomes

机译:两个AAA家庭过氧化物酶PpPex1p和PpPex6p以ATP依赖的方式相互作用并且与过氧化物酶体不同的不同亚细胞膜结构相关

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摘要

Two peroxins of the AAA family, PpPex1p and PpPex6p, are required for peroxisome biogenesis in the yeast Pichia pastoris. Cells from the corresponding deletion strains (PpΔpex1 and PpΔpex6) contain only small vesicular remnants of peroxisomes, the bulk of peroxisomal matrix proteins is mislocalized to the cytosol, and these cells cannot grow in peroxisome-requiring media (J. A. Heyman, E. Monosov, and S. Subramani, J. Cell Biol. 127:1259–1273, 1994; A. P. Spong and S. Subramani, J. Cell Biol. 123:535–548, 1993). We demonstrate that PpPex1p and PpPex6p interact in an ATP-dependent manner. Genetically, the interaction was observed in a suppressor screen with a strain harboring a temperature-sensitive allele of PpPEX1 and in the yeast two-hybrid system. Biochemially, these proteins were coimmunoprecipitated with antibodies raised against either of the proteins, but only in the presence of ATP. The protein complex formed under these conditions was 320 to 400 kDa in size, consistent with the formation of a heterodimeric PpPex1p-PpPex6p complex. Subcellular fractionation revealed PpPex1p and PpPex6p to be predominantly associated with membranous subcellular structures distinct from peroxisomes. Based on their behavior in subcellular fractionation experiments including flotation gradients and on the fact that these structures are also present in a PpΔpex3 strain in which no morphologically detectable peroxisomal remnants have been observed, we propose that these structures are small vesicles. The identification of vesicle-associated peroxins is novel and implies a role for these vesicles in peroxisome biogenesis. We discuss the possible role of the ATP-dependent interaction between PpPex1p and PpPex6p in regulating peroxisome biogenesis events.
机译:酵母毕赤酵母中的过氧化物酶体生物发生需要两个AAA家族的过氧化物酶PpPex1p和PpPex6p。来自相应缺失菌株(PpΔpex1和PpΔpex6)的细胞仅含有少量过氧化物酶体的囊泡残余物,大部分过氧化物酶体基质蛋白错位到细胞质中,这些细胞不能在需要过氧化物酶体的培养基中生长(JA Heyman,E。Monosov和S. Subramani,J. Cell Biol。127:1259-1273,1994; AP Spong和S. Subramani,J. Cell Biol。123:535-548,1993)。我们证明PpPex1p和PpPex6p以ATP依赖的方式相互作用。遗传上,在抑制筛选中与带有PpPEX1温度敏感等位基因的菌株以及在酵母双杂交系统中观察到了相互作用。从生化角度看,这些蛋白质与针对任何一种蛋白质的抗体共免疫沉淀,但仅在ATP存在的情况下。在这些条件下形成的蛋白质复合物大小为320至400 kDa,与异二聚体PpPex1p-PpPex6p复合物的形成一致。亚细胞分级显示PpPex1p和PpPex6p主要与不同于过氧化物酶体的膜状亚细胞结构有关。基于它们在包括浮选梯度的亚细胞分级实验中的行为,以及这些结构也存在于PpΔpex3菌株中的事实(在该菌株中未观察到形态学上可检测的过氧化物酶体残留物),我们提出这些结构是小囊泡。囊泡相关的过氧化物酶的鉴定是新颖的,并暗示了这些囊泡在过氧化物酶体生物发生中的作用。我们讨论了PpPex1p和PpPex6p之间的ATP依赖性相互作用在调节过氧化物酶体生物发生事件中的可能作用。

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