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dXNP 和 dADD1 的多重角色——ATRX 染色质重塑酶的同源物。

Multiple Roles of dXNP and dADD1- Orthologs of ATRX Chromatin Remodeler.

机构信息

Department of Drosophila Molecular Genetics, Institute of Gene Biology, Russian Academy of Sciences, 34/5 Vavilov St., 119334 Moscow, Russia.

出版信息

Int J Mol Sci. 2023 Nov 18;24(22):16486. doi: 10.3390/ijms242216486.

Abstract

The dADD1 and dXNP proteins are orthologues of the ADD and SNF2 domains of the vertebrate ATRX (Alpha-Thalassemia with mental Retardation X-related) protein. ATRX plays a role in general molecular processes, such as regulating chromatin status and gene expression, while dADD1 and dXNP have similar functions in the genome. Both ATRX and dADD1/dXNP interact with various protein partners and participate in various regulatory complexes. Disruption of ATRX expression in humans leads to the development of α-thalassemia and cancer, especially glioma. However, the mechanisms that allow ATRX to regulate various cellular processes are poorly understood. Studying the functioning of dADD1/dXNP in the model may contribute to understanding the mechanisms underlying the multifunctional action of ATRX and its connection with various cellular processes. This review provides a brief overview of the currently available information in mammals and regarding the roles of ATRX, dXNP, and dADD1. It discusses possible mechanisms of action of complexes involving these proteins.

摘要

dADD1 和 dXNP 蛋白是脊椎动物 ATRX(与智力迟钝相关的α-地中海贫血 X 相关)蛋白的 ADD 和 SNF2 结构域的同源物。ATRX 在一般分子过程中发挥作用,例如调节染色质状态和基因表达,而 dADD1 和 dXNP 在 基因组中具有相似的功能。ATRX 和 dADD1/dXNP 均与各种蛋白伴侣相互作用,并参与各种调节复合物。人类 ATRX 表达的破坏会导致α-地中海贫血和癌症的发展,尤其是神经胶质瘤。然而,允许 ATRX 调节各种细胞过程的机制尚未得到充分理解。研究 dADD1/dXNP 在 模型中的功能可能有助于理解 ATRX 多功能作用的机制及其与各种细胞过程的联系。本文简要综述了哺乳动物和 中关于 ATRX、dXNP 和 dADD1 作用的现有信息,并讨论了涉及这些蛋白的复合物的可能作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/188b/10671109/9a05950d9f5f/ijms-24-16486-g001.jpg

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