Human Molecular Genetics Lab, Department of Biochemistry, School of Medicine University of Puerto Rico, Medical Sciences Campus, PO Box 365067, San Juan, PR 00936, USA.
Nucleic Acids Res. 2011 Mar;39(4):1177-86. doi: 10.1093/nar/gkq890. Epub 2010 Oct 8.
Twist1 and Twist2 are highly conserved members of the Twist subfamily of bHLH proteins responsible for the transcriptional regulation of the developmental programs in mesenchymal cell lineages. The regulation of such processes requires that Twist1 and Twist2 function as molecular switches to activate and repress target genes by employing several direct and indirect mechanisms. Modes of action by these proteins include direct DNA binding to conserved E-box sequences and recruitment of coactivators or repressors, sequestration of E-protein modulators, and interruption of proper activator/repressor function through protein-protein interactions. Regulatory outcomes of Twist1 and Twist2 are themselves controlled by spatial-temporal expression, phosphoregulation, dimer choice and cellular localization. Although these two proteins are highly conserved and exhibit similar functions in vitro, emerging literature have demonstrated different roles in vivo. The involvement of Twist1 and Twist2 in a broad spectrum of regulatory pathways highlights the importance of understanding their roles in normal development, homeostasis and disease. Here we focus on the mechanistic models of transcriptional regulation and summarize the similarities and differences between Twist1 and Twist2 in the context of myogenesis, osteogenesis, immune system development and cancer.
Twist1 和 Twist2 是 bHLH 蛋白 Twist 亚家族的高度保守成员,负责间质细胞谱系中发育程序的转录调控。此类过程的调节要求 Twist1 和 Twist2 作为分子开关,通过几种直接和间接的机制激活和抑制靶基因。这些蛋白质的作用模式包括直接与保守的 E 盒序列结合 DNA 以及募集共激活剂或抑制剂、隔离 E 蛋白调节剂,以及通过蛋白-蛋白相互作用中断适当的激活剂/抑制剂功能。Twist1 和 Twist2 的调控结果本身受时空表达、磷酸化调节、二聚体选择和细胞定位的控制。尽管这两种蛋白质高度保守,并在体外表现出相似的功能,但新兴文献已经证明了它们在体内的不同作用。Twist1 和 Twist2 参与广泛的调节途径,突出了理解它们在正常发育、稳态和疾病中的作用的重要性。在这里,我们重点介绍转录调节的机制模型,并总结 Twist1 和 Twist2 在成肌、成骨、免疫系统发育和癌症中的相似性和差异。