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胸腺肽的应激感应前体。

Precursors of thymic peptides as stress sensors.

机构信息

Laboratory of Reception Mechanisms, Institute of Cell Biophysics of the Russian Academy of Sciences, PSCBR RAS , Pushchino, Russia.

出版信息

Expert Opin Biol Ther. 2020 Dec;20(12):1461-1475. doi: 10.1080/14712598.2020.1800636. Epub 2020 Aug 4.

Abstract

INTRODUCTION

A large volume of data indicates that the known thymic hormones, thymulin, thymopoietin, thymosin-α, thymosin-β, and thymic humoral factor-y2, exhibit different spectra of activities. Although large in volume, available data are rather fragmented, resulting in a lack of understanding of the role played by thymic hormones in immune homeostasis.

AREA COVERED

Existing data compartmentalizes the effect of thymic peptides into 2 categories: influence on immune cells and interconnection with neuroendocrine systems. The current study draws attention to a third aspect of the thymic peptide effect that has not been clarified yet, wherein ubiquitous and highly abundant intranuclear precursors of so called 'thymic peptides' play a fundamental role in all somatic cells.

EXPERT OPINION

Our analysis indicated that, under certain stress-related conditions, these precursors are cleaved to form immunologically active peptides that rapidly leave the nucleus and intracellular spaces, to send 'distress signals' to the immune system, thereby acting as stress sensors. We propose that these peptides may form a link between somatic cells and immune as well as neuroendocrine systems. This model may provide a better understanding of the mechanisms underlying immune homeostasis, leading thereby to the development of new therapeutic regimes utilizing the characteristics of thymic peptides.

摘要

简介

大量数据表明,已知的胸腺激素,如胸腺素、胸腺生成素、胸腺肽-α、胸腺肽-β和胸腺体液因子-y2,具有不同的活性谱。尽管数据量很大,但这些数据相当分散,导致人们对胸腺激素在免疫稳态中的作用缺乏了解。

涵盖领域

现有数据将胸腺肽的作用分为两类:对免疫细胞的影响和与神经内分泌系统的相互联系。本研究提请注意胸腺肽作用的第三个尚未阐明的方面,即所谓的“胸腺肽”的普遍存在且高度丰富的核内前体在所有体细胞中起着根本作用。

专家意见

我们的分析表明,在某些与应激相关的条件下,这些前体被切割形成具有免疫活性的肽,这些肽迅速离开细胞核和细胞内空间,向免疫系统发出“应激信号”,从而充当应激传感器。我们提出,这些肽可能在体细胞与免疫和神经内分泌系统之间形成联系。该模型可以更好地理解免疫稳态的机制,从而开发出利用胸腺肽特性的新治疗方案。

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