Hsieh Y J, Wang Z, Kovelman R, Roeder R G
Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, New York, New York 10021, USA.
Mol Cell Biol. 1999 Jul;19(7):4944-52. doi: 10.1128/MCB.19.7.4944.
Human transcription factor IIIC (hTFIIIC) is a multisubunit complex that mediates transcription of class III genes through direct recognition of promoters (for tRNA and virus-associated RNA genes) or promoter-TFIIIA complexes (for the 5S RNA gene) and subsequent recruitment of TFIIIB and RNA polymerase III. We describe the cognate cDNA cloning and characterization of two subunits (hTFIIIC63 and hTFIIIC102) that are present within a DNA-binding subcomplex (TFIIIC2) of TFIIIC and are related in structure and function to two yeast TFIIIC subunits (yTFIIIC95 and yTFIIIC131) previously shown to interact, respectively, with the promoter (A box) and with a subunit of yeast TFIIIB. hTFIIIC63 and hTFIIIC102 show parallel in vitro interactions with the homologous human TFIIIB and RNA polymerase III components, as well as additional interactions that may facilitate both TFIIIB and RNA polymerase III recruitment. These include novel interactions of hTFIIIC63 with hTFIIIC102, with hTFIIIB90, and with hRPC62, in addition to the hTFIIIC102-hTFIIIB90 and hTFIIIB90-hRPC39 interactions that parallel the previously described interactions in yeast. As reported for yTFIIIC131, hTFIIIC102 contains acidic and basic regions, tetratricopeptide repeats (TPRs), and a helix-loop-helix domain, and mutagenesis studies have implicated the TPRs in interactions both with hTFIIIC63 and with hTFIIIB90. These observations further document conservation from yeast to human of the structure and function of the RNA polymerase III transcription machinery, but in addition, they provide new insights into the function of hTFIIIC and suggest direct involvement in recruitment of both TFIIIB and RNA polymerase III.
人转录因子IIIC(hTFIIIC)是一种多亚基复合物,它通过直接识别启动子(用于tRNA和病毒相关RNA基因)或启动子-TFIIIA复合物(用于5S RNA基因),随后招募TFIIIB和RNA聚合酶III来介导III类基因的转录。我们描述了两个亚基(hTFIIIC63和hTFIIIC102)的同源cDNA克隆及特性,这两个亚基存在于TFIIIC的一个DNA结合亚复合物(TFIIIC2)中,并且在结构和功能上与两个酵母TFIIIC亚基(yTFIIIC95和yTFIIIC131)相关,先前已表明这两个酵母亚基分别与启动子(A框)以及酵母TFIIIB的一个亚基相互作用。hTFIIIC63和hTFIIIC102在体外与同源的人TFIIIB和RNA聚合酶III组分表现出平行的相互作用,以及可能促进TFIIIB和RNA聚合酶III招募的其他相互作用。这些相互作用包括hTFIIIC63与hTFIIIC102、与hTFIIIB90以及与hRPC62的新型相互作用,此外还有hTFIIIC102 - hTFIIIB90和hTFIIIB90 - hRPC39的相互作用,它们与酵母中先前描述的相互作用相似。正如对yTFIIIC131的报道,hTFIIIC102包含酸性和碱性区域、四肽重复序列(TPR)以及一个螺旋-环-螺旋结构域,诱变研究表明TPR参与了与hTFIIIC63以及与hTFIIIB90的相互作用。这些观察结果进一步证明了从酵母到人的RNA聚合酶III转录机制在结构和功能上的保守性,但此外,它们还为hTFIIIC的功能提供了新的见解,并表明其直接参与TFIIIB和RNA聚合酶III的招募。