首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Pex12 Interacts with Pex5 and Pex10 and Acts Downstream of Receptor Docking in Peroxisomal Matrix Protein Import
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Pex12 Interacts with Pex5 and Pex10 and Acts Downstream of Receptor Docking in Peroxisomal Matrix Protein Import

机译:Pex12与Pex5和Pex10相互作用并在过氧化物酶体基质蛋白导入中作用于受体对接下游

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摘要

Peroxisomal matrix protein import requires PEX12, an integral peroxisomal membrane protein with a zinc ring domain at its carboxy terminus. Mutations in human PEX12 result in Zellweger syndrome, a lethal neurological disorder, and implicate the zinc ring domain in PEX12 function. Using two-hybrid studies, blot overlay assays, and coimmunoprecipitation experiments, we observed that the zinc-binding domain of PEX12 binds both PEX5, the PTS1 receptor, and PEX10, another integral peroxisomal membrane protein required for peroxisomal matrix protein import. Furthermore, we identified a patient with a missense mutation in the PEX12 zinc-binding domain, S320F, and observed that this mutation reduces the binding of PEX12 to PEX5 and PEX10. Overexpression of either PEX5 or PEX10 can suppress this PEX12 mutation, providing genetic evidence that these interactions are biologically relevant. PEX5 is a predominantly cytoplasmic protein and previous PEX5-binding proteins have been implicated in docking PEX5 to the peroxisome surface. However, we find that loss of PEX12 or PEX10 does not reduce the association of PEX5 with peroxisomes, demonstrating that these peroxins are not required for receptor docking. These and other results lead us to propose that PEX12 and PEX10 play direct roles in peroxisomal matrix protein import downstream of the receptor docking event.
机译:过氧化物酶体基质蛋白的进口需要PEX12,PEX12是必不可少的过氧化物酶体膜蛋白,在其羧基末端具有一个锌环结构域。人类PEX12中的突变会导致Zellweger综合征,这是一种致命的神经系统疾病,并暗示PEX12功能中的锌环结构域。使用两次杂交研究,印迹重叠测定和免疫共沉淀实验,我们观察到PEX12的锌结合域与PEX5,PTS1受体和PEX10结合,PEX10是过氧化物酶体基质蛋白输入所需的另一种过氧化物酶体膜蛋白。此外,我们确定了一名患者,该患者在PEX12锌结合域S320F中存在一个错义突变,并观察到该突变降低了PEX12与PEX5和PEX10的结合。 PEX5或PEX10的过表达都可以抑制PEX12突变,从而提供遗传学证据证明这些相互作用与生物学相关。 PEX5是主要的胞质蛋白,以前的PEX5结合蛋白与PEX5对接过氧化物酶体表面有关。但是,我们发现PEX12或PEX10的丢失并不会减少PEX5与过氧化物酶体的缔合,表明这些过氧化物酶不是受体对接所必需的。这些和其他结果使我们提出,PEX12和PEX10在过氧化物酶体基质蛋白导入受体对接事件的下游中起直接作用。

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