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降低 PEX13 表达可改善晚期作用过氧化物酶体蛋白突变体的生理缺陷。

Reducing PEX13 expression ameliorates physiological defects of late-acting peroxin mutants.

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77005, USA.

出版信息

Traffic. 2011 Jan;12(1):121-34. doi: 10.1111/j.1600-0854.2010.01136.x. Epub 2010 Nov 24.

Abstract

Proteins are targeted to the peroxisome matrix via processes that are mechanistically distinct from those used by other organelles. Protein entry into peroxisomes requires peroxin (PEX) proteins, including early-acting receptor (e.g. PEX5) and docking peroxins (e.g. PEX13 and PEX14) and late-acting PEX5-recycling peroxins (e.g. PEX4 and PEX6). We examined genetic interactions among Arabidopsis peroxin mutants and found that the weak pex13-1 allele had deleterious effects when combined with pex5-1 and pex14-2, which are defective in early-acting peroxins, as shown by reduced matrix protein import and enhanced physiological defects. In contrast, combining pex13-1 with pex4-1 or pex6-1, which are defective in late-acting peroxins, unexpectedly ameliorated mutant growth defects. Matrix protein import remained impaired in pex4-1 pex13-1 and pex6-1 pex13-1, suggesting that the partial suppression of pex4-1 and pex6-1 physiological defects by a weak pex13 allele may result from restoring the balance between import and export of PEX5 or other proteins that are retrotranslocated from the peroxisome with the assistance of PEX4 and PEX6. Our results suggest that symptoms caused by pex mutants defective in late-acting peroxins may result not only from defects in matrix protein import but also from inefficient removal of PEX5 from the peroxisomal membrane following cargo delivery.

摘要

蛋白质通过与其他细胞器使用的机制不同的过程靶向过氧化物酶体基质。蛋白质进入过氧化物酶体需要过氧化物酶体蛋白(PEX),包括早期作用受体(例如 PEX5)和对接过氧化物酶体(例如 PEX13 和 PEX14)和晚期作用 PEX5-回收过氧化物酶体(例如 PEX4 和 PEX6)。我们研究了拟南芥过氧化物酶体突变体之间的遗传相互作用,发现弱 pex13-1 等位基因与 pex5-1 和 pex14-2 结合时具有有害影响,这两种基因在早期作用过氧化物酶体中都有缺陷,表现为基质蛋白导入减少和生理缺陷增强。相比之下,弱 pex13 等位基因与 pex4-1 或 pex6-1(晚期作用过氧化物酶体有缺陷)结合出乎意料地改善了突变体的生长缺陷。pex4-1 pex13-1 和 pex6-1 pex13-1 中的基质蛋白导入仍然受损,这表明弱 pex13 等位基因对 pex4-1 和 pex6-1 生理缺陷的部分抑制可能是由于恢复了 PEX5 或其他在 PEX4 和 PEX6 的协助下从过氧化物体反向转运的蛋白质的导入和导出之间的平衡。我们的结果表明,晚期作用过氧化物酶体缺陷的 pex 突变体引起的症状不仅可能是由于基质蛋白导入缺陷,而且还可能是由于货物运输后 PEX5 从过氧化物体膜中去除效率低下。

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