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热应力与核转运

Thermal Stress and Nuclear Transport.

机构信息

Cellular Dynamics Laboratory, RIKEN Cluster for Pioneering Research, Wako, Saitama, Japan.

出版信息

Adv Exp Med Biol. 2024;1461:61-78. doi: 10.1007/978-981-97-4584-5_5.

Abstract

Nuclear transport is the basis for the biological reaction of eukaryotic cells, as it is essential to coordinate nuclear and cytoplasmic events separated by nuclear envelope. Although we currently understand the basic molecular mechanisms of nuclear transport in detail, many unexplored areas remain. For example, it is believed that the regulations and biological functions of the nuclear transport receptors (NTRs) highlights the significance of the transport pathways in physiological contexts. However, physiological significance of multiple parallel transport pathways consisting of more than 20 NTRs is still poorly understood, because our knowledge of each pathway, regarding their substrate information or how they are differently regulated, is still limited. In this report, we describe studies showing how nuclear transport systems in general are affected by temperature rises, namely, thermal stress or heat stress. We will then focus on Importin α family members and unique transport factor Hikeshi, because these two NTRs are affected in heat stress. Our present review will provide an additional view to point out the importance of diversity of the nuclear transport pathways in eukaryotic cells.

摘要

核转运是真核细胞生物反应的基础,因为它对于协调通过核膜分隔的核和细胞质事件至关重要。尽管我们目前详细了解核转运的基本分子机制,但仍有许多未探索的领域。例如,人们认为核转运受体(NTR)的调节和生物学功能突出了在生理环境中运输途径的重要性。然而,由 20 多个 NTR 组成的多个并行运输途径的生理意义仍知之甚少,因为我们对每个途径的了解,包括其底物信息或它们如何受到不同调节,仍然有限。在本报告中,我们描述了研究表明一般核转运系统如何受到温度升高的影响,即热应激或热应激。然后,我们将重点介绍 Importin α 家族成员和独特的转运因子 Hikeshi,因为这两个 NTR 在热应激中受到影响。我们目前的综述将提供另一种观点,指出真核细胞中核转运途径多样性的重要性。

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