Luan Yi, Yu Xiu-Ping, Yang Ning, Frenkel Sally, Chen Lin, Liu Chuan-Ju
Department of Orthopaedic Surgery, New York University School of Medicine, New York, NY 10003, USA.
Mol Biol Cell. 2008 May;19(5):2113-26. doi: 10.1091/mbc.e07-10-1057. Epub 2008 Feb 20.
Id proteins play important roles in osteogenic differentiation; however, the molecular mechanism remains unknown. In this study, we established that inhibitor of differentiation (Id) proteins, including Id1, Id2, and Id3, associate with core binding factor alpha-1 (Cbfa1) to cause diminished transcription of the alkaline phosphatase (ALP) and osteocalcin (OCL) gene, leading to less ALP activity and osteocalcin (OCL) production. Id acts by inhibiting the sequence-specific binding of Cbfa1 to DNA and by decreasing the expression of Cbfa1 in cells undergoing osteogenic differentiation. p204, an interferon-inducible protein that interacts with both Cbfa1 and Id2, overcame the Id2-mediated inhibition of Cbfa1-induced ALP activity and OCL production. We show that 1) p204 disturbed the binding of Id2 to Cbfa1 and enabled Cbfa1 to bind to the promoters of its target genes and 2) that p204 promoted the translocation from nucleus to the cytoplasm and accelerated the degradation of Id2 by ubiquitin-proteasome pathway during osteogenesis. Nucleus export signal (NES) of p204 is required for the p204-enhanced cytoplasmic translocation and degradation of Id2, because a p204 mutant lacking NES lost these activities. Together, Cbfa1, p204, and Id proteins form a regulatory circuit and act in concert to regulate osteoblast differentiation.
Id蛋白在成骨分化中发挥重要作用;然而,其分子机制仍不清楚。在本研究中,我们证实分化抑制因子(Id)蛋白,包括Id1、Id2和Id3,与核心结合因子α-1(Cbfa1)相互作用,导致碱性磷酸酶(ALP)和骨钙素(OCL)基因的转录减少,进而导致ALP活性降低和骨钙素(OCL)生成减少。Id通过抑制Cbfa1与DNA的序列特异性结合以及降低成骨分化细胞中Cbfa1的表达来发挥作用。p204是一种可与Cbfa1和Id2相互作用的干扰素诱导蛋白,它克服了Id2介导的对Cbfa1诱导的ALP活性和OCL生成的抑制作用。我们发现:1)p204干扰了Id2与Cbfa1的结合,使Cbfa1能够结合到其靶基因的启动子上;2)在成骨过程中,p204促进了Id2从细胞核向细胞质的转运,并通过泛素-蛋白酶体途径加速了Id2的降解。p204的核输出信号(NES)对于p204增强的Id2细胞质转运和降解是必需的,因为缺乏NES的p204突变体失去了这些活性。总之,Cbfa1、p204和Id蛋白形成了一个调节回路,并协同作用来调节成骨细胞分化。