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真核体 Vault 复合物的结构、动态与功能意义。

Structure, Dynamics and Functional Implications of the Eukaryotic Vault Complex.

机构信息

Structural and Molecular Biology Department, Instituto de Biología Molecular de Barcelona (IBMB-CSIC), Barcelona, Spain.

Cryo-Electron Microscopy Platform - IBMB CSIC, Joint Electron Microscopy Center at ALBA (JEMCA), Barcelona, Spain.

出版信息

Subcell Biochem. 2024;104:531-548. doi: 10.1007/978-3-031-58843-3_20.

Abstract

Vault ribonucleoprotein particles are naturally designed nanocages, widely found in the eukaryotic kingdom. Vaults consist of 78 copies of the major vault protein (MVP) that are organized in 2 symmetrical cup-shaped halves, of an approximate size of 70x40x40 nm, leaving a huge internal cavity which accommodates the vault poly(ADP-ribose) polymerase (vPARP), the telomerase-associated protein-1 (TEP1) and some small untranslated RNAs. Diverse hypotheses have been developed on possible functions of vaults, based on their unique capsular structure, their rapid movements and the distinct subcellular localization of the particles, implicating transport of cargo, but they are all pending confirmation. Vault particles also possess many attributes that can be exploited in nanobiotechnology, particularly in the creation of vehicles for the delivery of multiple molecular cargoes. Here we review what is known about the structure and dynamics of the vault complex and discuss a possible mechanism for the vault opening process. The recent findings in the characterization of the vaults in cells and in its natural microenvironment will be also discussed.

摘要

穹窿核糖核蛋白颗粒是天然设计的纳米笼,广泛存在于真核生物界。穹窿由 78 个主要穹窿蛋白 (MVP) 组成,这些 MVP 组织成 2 个对称的杯状半体,大小约为 70x40x40nm,留下一个巨大的内部空腔,容纳穹窿多聚(ADP-核糖)聚合酶 (vPARP)、端粒酶相关蛋白-1 (TEP1) 和一些小的非翻译 RNA。基于其独特的胶囊结构、快速运动和颗粒的独特亚细胞定位,提出了多种关于穹窿可能功能的假设,暗示了货物的运输,但这些都有待证实。穹窿颗粒还具有许多可用于纳米生物技术的特性,特别是在创建用于输送多种分子货物的载体方面。本文综述了穹窿复合物的结构和动力学特性,并讨论了穹窿开放过程的可能机制。还讨论了最近在细胞中和其天然微环境中对穹窿的特征的研究结果。

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