Suppr超能文献

RNA结合是膜联蛋白家族的一个古老特性。

RNA-binding is an ancient trait of the Annexin family.

作者信息

Patil Sudarshan S, Panchal Vipul, Røstbø Trude, Romanyuk Sofya, Hollås Hanne, Brenk Ruth, Grindheim Ann Kari, Vedeler Anni

机构信息

Neurotargeting Group, Department of Biomedicine, University of Bergen, Bergen, Norway.

Biorecognition Unit, Department of Biomedicine, University of Bergen, Bergen, Norway.

出版信息

Front Cell Dev Biol. 2023 Jun 15;11:1161588. doi: 10.3389/fcell.2023.1161588. eCollection 2023.

Abstract

The regulation of intracellular functions in mammalian cells involves close coordination of cellular processes. During recent years it has become evident that the sorting, trafficking and distribution of transport vesicles and mRNA granules/complexes are closely coordinated to ensure effective simultaneous handling of all components required for a specific function, thereby minimizing the use of cellular energy. Identification of proteins acting at the crossroads of such coordinated transport events will ultimately provide mechanistic details of the processes. Annexins are multifunctional proteins involved in a variety of cellular processes associated with Ca-regulation and lipid binding, linked to the operation of both the endocytic and exocytic pathways. Furthermore, certain Annexins have been implicated in the regulation of mRNA transport and translation. Since Annexin A2 binds specific mRNAs via its core structure and is also present in mRNP complexes, we speculated whether direct association with RNA could be a common property of the mammalian Annexin family sharing a highly similar core structure. Therefore, we performed spot blot and UV-crosslinking experiments to assess the mRNA binding abilities of the different Annexins, using annexin A2 and c-myc 3'UTRs as well as c-myc 5'UTR as baits. We supplemented the data with immunoblot detection of selected Annexins in mRNP complexes derived from the neuroendocrine rat PC12 cells. Furthermore, biolayer interferometry was used to determine the K of selected Annexin-RNA interactions, which indicated distinct affinities. Amongst these Annexins, Annexin A13 and the core structures of Annexin A7, Annexin A11 bind c-myc 3'UTR with Ks in the nanomolar range. Of the selected Annexins, only Annexin A2 binds the c-myc 5'UTR indicating some selectivity. The oldest members of the mammalian Annexin family share the ability to associate with RNA, suggesting that RNA-binding is an ancient trait of this protein family. Thus, the combined RNA- and lipid-binding properties of the Annexins make them attractive candidates to participate in coordinated long-distance transport of membrane vesicles and mRNAs regulated by Ca. The present screening results can thus pave the way for studies of the multifunctional Annexins in a novel cellular context.

摘要

哺乳动物细胞内功能的调节涉及细胞过程的紧密协调。近年来,越来越明显的是,运输囊泡和mRNA颗粒/复合物的分选、运输和分布密切协调,以确保有效同时处理特定功能所需的所有成分,从而最大限度地减少细胞能量的使用。鉴定在这种协调运输事件的交叉点起作用的蛋白质最终将提供这些过程的机制细节。膜联蛋白是多功能蛋白质,参与与钙调节和脂质结合相关的各种细胞过程,与内吞和外排途径的运作有关。此外,某些膜联蛋白与mRNA运输和翻译的调节有关。由于膜联蛋白A2通过其核心结构结合特定的mRNA,并且也存在于mRNP复合物中,我们推测与RNA的直接结合是否可能是具有高度相似核心结构的哺乳动物膜联蛋白家族的共同特性。因此,我们进行了斑点印迹和紫外线交联实验,以评估不同膜联蛋白的mRNA结合能力,使用膜联蛋白A2和c-myc 3'UTR以及c-myc 5'UTR作为诱饵。我们用免疫印迹检测从神经内分泌大鼠PC12细胞衍生的mRNP复合物中选定的膜联蛋白来补充数据。此外,生物层干涉术用于确定选定的膜联蛋白-RNA相互作用的K,这表明了不同的亲和力。在这些膜联蛋白中,膜联蛋白A13以及膜联蛋白A7、膜联蛋白A11的核心结构以纳摩尔范围内的K结合c-myc 3'UTR。在选定的膜联蛋白中,只有膜联蛋白A2结合c-myc 5'UTR,表明有一定的选择性。哺乳动物膜联蛋白家族中最古老的成员具有与RNA结合的能力,这表明RNA结合是该蛋白质家族的一个古老特征。因此,膜联蛋白结合RNA和脂质的综合特性使其成为参与由钙调节的膜囊泡和mRNA的协调长距离运输的有吸引力的候选者。因此,目前的筛选结果可以为在新的细胞环境中研究多功能膜联蛋白铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/505d/10311354/f28c406a7be6/fcell-11-1161588-g001.jpg

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