Kundu T K, Wang Z, Roeder R G
Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, New York, New York 10021, USA.
Mol Cell Biol. 1999 Feb;19(2):1605-15. doi: 10.1128/MCB.19.2.1605.
Human TFIIIC is a multisubunit factor that is essential for transcription by RNA polymerase III on tRNA and virus-associated RNA genes and initiates preinitiation complex assembly by direct recognition of promoter elements. We show that highly purified TFIIIC, at concentrations above those sufficient for transcription of naked DNA templates, effectively relieves nucleosome-mediated repression on an in vitro-reconstituted chromatin template. Highly purified TFIIIC alone can bind to the A and B boxes of a tRNA gene within a chromatin template and, further, displays a histone acetyltransferase activity that is intrinsic to at least one (and probably three) of its subunits. The possibility of a direct link between TFIIIC-dependent chromatin transcription and acetyltransferase activities is suggested by the partial loss of these activities, but not DNA transcription activity, following pretreatment of TFIIIC with p-hydroxymercuribenzoic acid.
人TFIIIC是一种多亚基因子,对于RNA聚合酶III转录tRNA和病毒相关RNA基因至关重要,并通过直接识别启动子元件启动前起始复合物组装。我们发现,高度纯化的TFIIIC在高于足以转录裸露DNA模板的浓度时,能有效缓解体外重组染色质模板上核小体介导的抑制作用。单独的高度纯化TFIIIC可与染色质模板内tRNA基因的A盒和B盒结合,此外,还表现出组蛋白乙酰转移酶活性,该活性至少存在于其一个(可能三个)亚基中。用对羟基汞苯甲酸预处理TFIIIC后,这些活性部分丧失,但DNA转录活性未丧失,这提示了TFIIIC依赖性染色质转录与乙酰转移酶活性之间存在直接联系的可能性。