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再生蛋白 3A:在癌症中具有双重作用的关键分子。

The regenerating protein 3A: a crucial molecular with dual roles in cancer.

机构信息

Department of Clinlical Medicine, Weifang Medical College, Weifang, China.

Department of Neurology, Linyi People's Hospital, Linyi, China.

出版信息

Mol Biol Rep. 2022 Feb;49(2):1491-1500. doi: 10.1007/s11033-021-06904-x. Epub 2021 Nov 23.

Abstract

INTRODUCTION

REG3A, a member of the third subclass of the Reg family, has been found in a variety of tissues but is not detected in immune cells. In the past decade, it has been determined that REG3A expression is regulated by injury, infection, inflammatory stimuli, and pro-cytokines via different signaling pathways, and it acts as a tissue-repair, bactericidal, and anti-inflammatory molecule in human diseases. Recently, the role of REG3A in cancer has received increasing attention. The present article aims to investigate the structure, expression, regulation, function of REG3A, and to highlight the potential role of REG3A in tumors.

METHODS

A detailed literature search and data organization were conducted to find information about the role of REG3A in variety of physiological functions and tumors.

RESULTS

Contradictory roles of REG3A have been reported in different tumor models. Some studies have demonstrated that high expression of REG3A in cancers can be oncogenic. Other studies have shown decreased REG3A expression in cancer cells as well as suppressed tumor growth.

CONCLUSIONS

Taken together, better understanding of REG3A may lead to new insights that make it a potentially useful target for cancer therapy.

摘要

简介

REG3A 是 REG 家族的第三个亚类的成员,已在多种组织中发现,但在免疫细胞中未检测到。在过去的十年中,已经确定 REG3A 的表达受损伤、感染、炎症刺激和前细胞因子通过不同的信号通路调节,并且在人类疾病中作为组织修复、杀菌和抗炎分子发挥作用。最近,REG3A 在癌症中的作用受到了越来越多的关注。本文旨在研究 REG3A 的结构、表达、调节、功能,并强调 REG3A 在肿瘤中的潜在作用。

方法

对有关 REG3A 在各种生理功能和肿瘤中的作用的文献进行了详细的检索和数据整理。

结果

在不同的肿瘤模型中,REG3A 表现出矛盾的作用。一些研究表明,癌症中高表达的 REG3A 可能具有致癌性。其他研究表明,癌细胞中 REG3A 的表达减少,肿瘤生长受到抑制。

结论

综上所述,更好地了解 REG3A 可能会带来新的见解,使其成为癌症治疗的潜在有用靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f333/8825409/e2904fd5ca45/11033_2021_6904_Fig1_HTML.jpg

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