Suppr超能文献

VIPP2 在叶绿体膜上与 VIPP1 和 HSP22E/F 相互作用,并调节 HSP22E/F 基因表达的逆行信号。

VIPP2 interacts with VIPP1 and HSP22E/F at chloroplast membranes and modulates a retrograde signal for HSP22E/F gene expression.

机构信息

Molekulare Biotechnologie & Systembiologie, TU Kaiserslautern, Kaiserslautern, Germany.

Molecular Genetics of Eukaryotes, TU Kaiserslautern, Kaiserslautern, Germany.

出版信息

Plant Cell Environ. 2020 May;43(5):1212-1229. doi: 10.1111/pce.13732. Epub 2020 Feb 28.

Abstract

VIPP proteins aid thylakoid biogenesis and membrane maintenance in cyanobacteria, algae, and plants. Some members of the Chlorophyceae contain two VIPP paralogs termed VIPP1 and VIPP2, which originate from an early gene duplication event during the evolution of green algae. VIPP2 is barely expressed under nonstress conditions but accumulates in cells exposed to high light intensities or H O , during recovery from heat stress, and in mutants with defective integration (alb3.1) or translocation (secA) of thylakoid membrane proteins. Recombinant VIPP2 forms rod-like structures in vitro and shows a strong affinity for phosphatidylinositol phosphate. Under stress conditions, >70% of VIPP2 is present in membrane fractions and localizes to chloroplast membranes. A vipp2 knock-out mutant displays no growth phenotypes and no defects in the biogenesis or repair of photosystem II. However, after exposure to high light intensities, the vipp2 mutant accumulates less HSP22E/F and more LHCSR3 protein and transcript. This suggests that VIPP2 modulates a retrograde signal for the expression of nuclear genes HSP22E/F and LHCSR3. Immunoprecipitation of VIPP2 from solubilized cells and membrane-enriched fractions revealed major interactions with VIPP1 and minor interactions with HSP22E/F. Our data support a distinct role of VIPP2 in sensing and coping with chloroplast membrane stress.

摘要

VIPP 蛋白有助于蓝藻、藻类和植物的类囊体生物发生和膜的维持。一些绿藻门的成员包含两个 VIPP 同源物,称为 VIPP1 和 VIPP2,它们起源于绿藻进化过程中的早期基因复制事件。在非胁迫条件下,VIPP2 的表达几乎检测不到,但在高光强或 H 2 O 下、从热胁迫中恢复时、以及在类囊体膜蛋白整合(alb3.1)或易位(secA)缺陷的突变体中积累。重组 VIPP2 在体外形成杆状结构,并表现出与磷脂酰肌醇磷酸强烈的亲和力。在胁迫条件下,超过 70%的 VIPP2 存在于膜部分中,并定位于叶绿体膜上。vipp2 敲除突变体没有表现出生长表型,也没有在光合作用 II 的生物发生或修复中出现缺陷。然而,在暴露于高光强后,vipp2 突变体积累的 HSP22E/F 较少,而 LHCSR3 蛋白和转录本较多。这表明 VIPP2 调节核基因 HSP22E/F 和 LHCSR3 表达的逆行信号。从溶解细胞和富含膜的级分中免疫沉淀 VIPP2 显示与 VIPP1 有主要相互作用,与 HSP22E/F 有次要相互作用。我们的数据支持 VIPP2 在感知和应对叶绿体膜应激方面的独特作用。

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