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在经历自然衰老的拟南芥自噬突变体中,基质蛋白降解不完全。

Stromal protein degradation is incomplete in Arabidopsis thaliana autophagy mutants undergoing natural senescence.

作者信息

Lee Travis A, Vande Wetering Scott W, Brusslan Judy A

机构信息

Department of Biological Sciences, California State University, Long Beach, 1250 Bellflower Boulevard, Long Beach, CA 90840-9502, USA.

出版信息

BMC Res Notes. 2013 Jan 17;6:17. doi: 10.1186/1756-0500-6-17.

Abstract

BACKGROUND

Degradation of highly abundant stromal proteins plays an important role in the nitrogen economy of the plant during senescence. Lines of evidence supporting proteolysis within the chloroplast and outside the chloroplast have been reported. Two extra-plastidic degradation pathways, chlorophagy and Rubisco Containing Bodies, rely on cytoplasmic autophagy.

RESULTS

In this work, levels of three stromal proteins (Rubisco large subunit, chloroplast glutamine synthetase and Rubisco activase) and one thylakoid protein (the major light harvesting complex protein of photosystem II) were measured during natural senescence in WT and in two autophagy T-DNA insertion mutants (atg5 and atg7). Thylakoid-localized protein decreased similarly in all genotypes, but stromal protein degradation was incomplete in the two atg mutants. In addition, degradation of two stromal proteins was observed in chloroplasts isolated from mid-senescence leaves.

CONCLUSIONS

These data suggest that autophagy does contribute to the complete proteolysis of stromal proteins, but does not play a major degenerative role. In addition, support for in organello degradation is provided.

摘要

背景

在衰老过程中,大量存在的基质蛋白的降解在植物的氮素代谢中起着重要作用。已有证据表明叶绿体内部和外部均存在蛋白质水解现象。两种质体外降解途径,即叶绿体自噬和含 Rubisco 小体,依赖于细胞质自噬。

结果

在本研究中,测定了野生型(WT)以及两个自噬 T-DNA 插入突变体(atg5 和 atg7)在自然衰老过程中三种基质蛋白(Rubisco 大亚基、叶绿体谷氨酰胺合成酶和 Rubisco 活化酶)和一种类囊体蛋白(光系统 II 的主要捕光复合体蛋白)的水平。类囊体定位蛋白在所有基因型中的下降情况相似,但在两个 atg 突变体中基质蛋白的降解并不完全。此外,在从衰老中期叶片分离的叶绿体中观察到了两种基质蛋白的降解。

结论

这些数据表明自噬确实有助于基质蛋白的完全蛋白水解,但并不起主要的降解作用。此外,还为叶绿体内部降解提供了证据支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a363/3724497/e2c95f661677/1756-0500-6-17-1.jpg

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