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酵母和人类TATA结合蛋白与古细菌RNA聚合酶及启动子的功能相互作用。

Functional interaction of yeast and human TATA-binding proteins with an archaeal RNA polymerase and promoter.

作者信息

Wettach J, Gohl H P, Tschochner H, Thomm M

机构信息

Institut für Mikrobiologie, Christian-Albrechts-Universität zu Kiel, Federal Republic of Germany.

出版信息

Proc Natl Acad Sci U S A. 1995 Jan 17;92(2):472-6. doi: 10.1073/pnas.92.2.472.

Abstract

TATA boxes are common structural features of eucaryal class II and archaeal promoters. In addition, a gene encoding a polypeptide with sequence similarity to eucaryal TATA-binding protein (TBP) has recently been detected in Archaea, but its relationship to the archaeal transcription factors A (aTFA) and B (aTFB) was unclear. Here, we demonstrate that yeast and human TBP can substitute for aTFB in a Methanococcus-derived archaeal cell-free transcription system. Template-commitment studies show that eucaryal TBP is stably sequestered at the archaeal promoter and that this interaction is further stabilized in combination with aTFA. Binding studies revealed that recognition of an archaeal promoter by TBP involves specific binding to the TATA box. These findings demonstrate a common function of TBP and aTFB and imply a common evolutionary origin of eucaryal and archaeal transcriptional machinery.

摘要

TATA 框是真核生物II类启动子和古细菌启动子的常见结构特征。此外,最近在古细菌中检测到一种编码与真核生物TATA结合蛋白(TBP)具有序列相似性的多肽的基因,但其与古细菌转录因子A(aTFA)和B(aTFB)的关系尚不清楚。在这里,我们证明酵母和人类TBP可以在源自甲烷球菌的无细胞古细菌转录系统中替代aTFB。模板结合研究表明,真核生物TBP稳定地结合在古细菌启动子上,并且这种相互作用与aTFA结合后会进一步稳定。结合研究表明,TBP对古细菌启动子的识别涉及与TATA框的特异性结合。这些发现证明了TBP和aTFB的共同功能,并暗示了真核生物和古细菌转录机制的共同进化起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/414b/42762/bda21852143b/pnas01480-0141-a.jpg

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