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SOX 转录因子在骨骼发生中的作用和调控。

Roles and regulation of SOX transcription factors in skeletogenesis.

机构信息

The Children's Hospital of Philadelphia, Philadelphia, PA, United States.

出版信息

Curr Top Dev Biol. 2019;133:171-193. doi: 10.1016/bs.ctdb.2019.01.007. Epub 2019 Feb 26.

Abstract

SOX transcription factors participate in the specification, differentiation and activities of many cell types in development and beyond. The 20 mammalian family members are distributed into eight groups based on sequence identity, and while co-expressed same-group proteins often have redundant functions, different-group proteins typically have distinct functions. More than a handful of SOX proteins have pivotal roles in skeletogenesis. Heterozygous mutations in their genes cause human diseases, in which skeletal dysmorphism is a major feature, such as campomelic dysplasia (SOX9), or a minor feature, such as LAMSHF syndrome (SOX5) and Coffin-Siris-like syndromes (SOX4 and SOX11). Loss- and gain-of-function experiments in animal models have revealed that SOX4 and SOX11 (SOXC group) promote skeletal progenitor survival and control skeleton patterning and growth; SOX8 (SOXE group) delays the differentiation of osteoblast progenitors; SOX9 (SOXE group) is essential for chondrocyte fate maintenance and differentiation, and works in cooperation with SOX5 and SOX6 (SOXD group) and other types of transcription factors. These and other SOX proteins have also been proposed, mainly through in vitro experiments, to have key roles in other aspects of skeletogenesis, such as SOX2 in osteoblast stem cell self-renewal. We here review current knowledge of well-established and proposed skeletogenic roles of SOX proteins, their transcriptional and non-transcriptional actions, and their modes of regulation at the gene, RNA and protein levels. We also discuss gaps in knowledge and directions for future research to further decipher mechanisms underlying skeletogenesis in health and diseases and identify treatment options for skeletal malformation and degeneration diseases.

摘要

SOX 转录因子参与许多细胞类型在发育过程中的特化、分化和活动,甚至超出这一范围。20 种哺乳动物家族成员根据序列同一性分为八组,虽然同组蛋白通常具有冗余功能,但不同组蛋白通常具有不同的功能。超过少数几种 SOX 蛋白在骨骼发生中具有关键作用。它们基因中的杂合突变导致人类疾病,其中骨骼发育不良是主要特征,如 campomelic 发育不良(SOX9),或次要特征,如 LAMSHF 综合征(SOX5)和 Coffin-Siris 样综合征(SOX4 和 SOX11)。动物模型中的缺失和获得功能实验表明,SOX4 和 SOX11(SOXC 组)促进骨骼祖细胞的存活,并控制骨骼模式和生长;SOX8(SOXE 组)延迟成骨细胞祖细胞的分化;SOX9(SOXE 组)对于软骨细胞命运维持和分化是必需的,并且与 SOX5 和 SOX6(SOXD 组)和其他类型的转录因子合作。这些和其他 SOX 蛋白也主要通过体外实验被提出在骨骼发生的其他方面具有关键作用,例如 SOX2 在成骨细胞干细胞自我更新中的作用。我们在此回顾了 SOX 蛋白在骨骼发生中的既定和提出的作用、它们的转录和非转录作用,以及它们在基因、RNA 和蛋白质水平的调节模式。我们还讨论了知识空白和未来研究方向,以进一步阐明健康和疾病中骨骼发生的机制,并确定骨骼畸形和退化疾病的治疗选择。

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