Suppr超能文献

过氧化物酶体Lon蛋白酶和自噬介导的过氧化物酶体降解在多形汉逊酵母细胞活力中起关键作用。

A peroxisomal lon protease and peroxisome degradation by autophagy play key roles in vitality of Hansenula polymorpha cells.

作者信息

Aksam Eda Bener, Koek Anne, Kiel Jan A K W, Jourdan Stefanie, Veenhuis Marten, van der Klei Ida J

机构信息

Eukaryotic Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, Haren, The Netherlands.

出版信息

Autophagy. 2007 Mar-Apr;3(2):96-105. doi: 10.4161/auto.3534. Epub 2007 Mar 23.

Abstract

In eukaryote cells various mechanisms exist that are responsible for the removal of non-functional proteins. Here we show that in the yeast Hansenula polymorpha (H. polymorpha) a peroxisomal Lon protease, Pln, plays a role in degradation of unfolded and non-assembled peroxisomal matrix proteins. In addition, we demonstrate that whole peroxisomes are constitutively degraded by autophagy during normal vegetative growth of WT cells. Deletion of both H. polymorpha PLN and ATG1, required for autophagy, resulted in a significant increase in peroxisome numbers, paralleled by a decrease in cell viability relative to WT cells. Also, in these cells and in cells of PLN and ATG1 single deletion strains, the intracellular levels of reactive oxygen species had increased relative to WT controls. The enhanced generation of reactive oxygen species may be related to an uneven distribution of peroxisomal catalase activities in the mutant cells, as demonstrated by cytochemistry. We speculate that in the absence of HpPln or autophagy unfolded and non-assembled peroxisomal matrix proteins accumulate, which can form aggregates and lead to an imbalance in hydrogen peroxide production and degradation in some of the organelles.

摘要

在真核细胞中,存在多种负责清除无功能蛋白质的机制。在此我们表明,在多形汉逊酵母(H. polymorpha)中,一种过氧化物酶体Lon蛋白酶Pln在未折叠和未组装的过氧化物酶体基质蛋白的降解中发挥作用。此外,我们证明在野生型(WT)细胞的正常营养生长过程中,整个过氧化物酶体通过自噬持续降解。多形汉逊酵母PLN和自噬所需的ATG1基因双缺失导致过氧化物酶体数量显著增加,与此同时,相对于WT细胞,细胞活力下降。同样,在这些细胞以及PLN和ATG1单缺失菌株的细胞中,活性氧的细胞内水平相对于WT对照有所增加。如细胞化学所示,活性氧生成的增强可能与突变细胞中过氧化物酶体过氧化氢酶活性的不均匀分布有关。我们推测,在缺乏HpPln或自噬的情况下,未折叠和未组装的过氧化物酶体基质蛋白会积累,这会形成聚集体,并导致一些细胞器中过氧化氢产生和降解的失衡。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验