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治疗血红蛋白病中调控珠蛋白基因表达的最新方法

Recent Approaches for Manipulating Globin Gene Expression in Treating Hemoglobinopathies.

作者信息

Mussolino Claudio, Strouboulis John

机构信息

Institute for Transfusion Medicine and Gene Therapy, Medical Center-University of Freiburg, Freiburg, Germany.

Center for Chronic Immunodeficiency, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

出版信息

Front Genome Ed. 2021 Aug 2;3:618111. doi: 10.3389/fgeed.2021.618111. eCollection 2021.

Abstract

Tissue oxygenation throughout life depends on the activity of hemoglobin (Hb) one of the hemeproteins that binds oxygen in the lungs and secures its delivery throughout the body. Hb is composed of four monomers encoded by eight different genes the expression of which is tightly regulated during development, resulting in the formation of distinct hemoglobin tetramers in each developmental stage. Mutations that alter hemoglobin structure or its regulated expression result in a large group of diseases typically referred to as hemoglobinopathies that are amongst the most common genetic defects worldwide. Unprecedented efforts in the last decades have partially unraveled the complex mechanisms that control globin gene expression throughout development. In addition, genome wide association studies have revealed protective genetic traits capable of ameliorating the clinical manifestations of severe hemoglobinopathies. This knowledge has fueled the exploration of innovative therapeutic approaches aimed at modifying the genome or the epigenome of the affected cells to either restore hemoglobin function or to mimic the effect of protective traits. Here we describe the key steps that control the switch in gene expression that concerns the different globin genes during development and highlight the latest efforts in altering globin regulation for therapeutic purposes.

摘要

一生中组织的氧合作用依赖于血红蛋白(Hb)的活性,血红蛋白是一种血红素蛋白,它在肺部结合氧气并确保其在全身的输送。Hb由四个单体组成,由八个不同的基因编码,这些基因的表达在发育过程中受到严格调控,导致在每个发育阶段形成不同的血红蛋白四聚体。改变血红蛋白结构或其调控表达的突变会导致一大类疾病,通常称为血红蛋白病,这是全球最常见的遗传缺陷之一。在过去几十年中,前所未有的努力部分揭示了在整个发育过程中控制珠蛋白基因表达的复杂机制。此外,全基因组关联研究已经揭示了能够改善严重血红蛋白病临床表现的保护性遗传特征。这些知识推动了对创新治疗方法的探索,旨在修改受影响细胞的基因组或表观基因组,以恢复血红蛋白功能或模拟保护性状的效果。在这里,我们描述了在发育过程中控制与不同珠蛋白基因相关的基因表达开关的关键步骤,并强调了为治疗目的改变珠蛋白调控的最新努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3937/8525358/cb744acc7247/fgeed-03-618111-g001.jpg

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