Leichter Michael, Marko Marija, Ganou Vassiliki, Patrinou-Georgoula Meropi, Tora László, Guialis Apostolia
Institute of Biological Research and Biotechnology, National Hellenic Research Foundation, Athens, Greece.
Biochim Biophys Acta. 2011 Dec;1814(12):1812-24. doi: 10.1016/j.bbapap.2011.09.008. Epub 2011 Oct 12.
RNA/ssDNA-binding proteins comprise an emerging class of multifunctional proteins with an anticipated role in coupling transcription with RNA processing. We focused here on the highly related transcription factors of the TET sub-class: TLS/FUS, EWS and in particular the least studied member TAF15. An extensive array of immunoprecipitation studies on differentially extracted HeLa nuclei revealed the specific association of TAF15 with the spliceosomal U1 snRNP complex, as deduced by the co-precipitating U1 snRNA, U1-70K and Sm proteins. Additionally, application of anti-U1 RNP autoantibodies identified TAF15 in the immunoprecipitates. Minor fractions of nuclear TAF15 and U1 snRNP were involved in this association. Pull-down assays using recombinant TAF15 and U1 snRNP-specific proteins (U1-70K, U1A and U1C) provided in vitro evidence for a direct protein-protein interaction between TAF15 and U1C, which required the N-terminal domain of TAF15. The ability of TAF15 to directly contact RNA, most likely RNA pol II transcripts, was supported by in vivo UV cross-linking studies in the presence of α-amanitin. By all findings, the existence of a functionally discrete subset of U1 snRNP in association with TAF15 was suggested and provided further support for the involvement of U1 snRNP components in early steps of coordinated gene expression.
RNA/单链DNA结合蛋白构成了一类新兴的多功能蛋白,预计在转录与RNA加工的偶联中发挥作用。我们在此聚焦于TET亚类中高度相关的转录因子:TLS/FUS、EWS,尤其是研究最少的成员TAF15。对差异提取的HeLa细胞核进行的一系列广泛免疫沉淀研究表明,TAF15与剪接体U1 snRNP复合物存在特异性关联,这是通过共沉淀的U1 snRNA、U1-70K和Sm蛋白推断出来的。此外,应用抗U1 RNP自身抗体在免疫沉淀物中鉴定出了TAF15。细胞核中少量的TAF15和U1 snRNP参与了这种关联。使用重组TAF15和U1 snRNP特异性蛋白(U1-70K、U1A和U1C)进行的下拉实验为TAF15与U1C之间的直接蛋白质-蛋白质相互作用提供了体外证据,这需要TAF15的N末端结构域。在α-鹅膏蕈碱存在的情况下进行的体内紫外线交联研究支持了TAF15直接接触RNA(很可能是RNA聚合酶II转录本)的能力。综合所有发现,提示存在与TAF15相关的功能离散的U1 snRNP亚群,并为U1 snRNP成分参与协调基因表达的早期步骤提供了进一步支持。