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HMG框4是RNA聚合酶I转录因子UBF中物种特异性的主要决定因素。

HMG box 4 is the principal determinant of species specificity in the RNA polymerase I transcription factor UBF.

作者信息

Cairns C, McStay B

机构信息

Biomedical Research Centre, Ninewells Hospital and Medical School, University of Dundee, UK.

出版信息

Nucleic Acids Res. 1995 Nov 25;23(22):4583-90. doi: 10.1093/nar/23.22.4583.

Abstract

Transcription of ribosomal genes requires, in addition to RNA polymerase I, the trans-acting factors UBF and Rib1 in Xenopus or SL1 in humans. RNA polymerase I transcription is remarkably species specific. Between closely related species SL1 is the sole determinant of this specificity. Between more distantly related species, however, UBF is also a component of this species specificity. Xenopus UBF cannot function in human RNA polymerase I transcription and human UBF cannot function in Xenopus RNA polymerase I transcription. Xenopus and human UBFs are remarkably similar at the amino acid sequence level, both containing multiple HMG box DNA binding motifs. The only major difference between xUBF and hUBF is the lack of a HMG box 4 equivalent in xUBF. Utilizing a series of hybrid UBF molecules we have identified HMG box 4 as the principal determinant of species specificity. Addition of human HMG box 4 to xUBF converts it to a form that functions in human RNA polymerase I transcription. Deletion of HMG box 4 from hUBF converts it to a form that functions in Xenopus RNA polymerase I transcription. Furthermore, mutations within Xenopus UBF demonstrate that UBF requires a precise arrangement and number of HMG boxes to function in RNA polymerase I transcription.

摘要

核糖体基因的转录除了需要RNA聚合酶I外,在非洲爪蟾中还需要反式作用因子UBF和Rib1,在人类中则需要SL1。RNA聚合酶I转录具有显著的物种特异性。在亲缘关系密切的物种之间,SL1是这种特异性的唯一决定因素。然而,在亲缘关系较远的物种之间,UBF也是这种物种特异性的一个组成部分。非洲爪蟾的UBF不能在人类RNA聚合酶I转录中发挥作用,人类的UBF也不能在非洲爪蟾RNA聚合酶I转录中发挥作用。非洲爪蟾和人类的UBF在氨基酸序列水平上非常相似,都含有多个HMG盒DNA结合基序。非洲爪蟾UBF和人类UBF之间唯一的主要区别是非洲爪蟾UBF缺乏相当于HMG盒4的结构。利用一系列杂交UBF分子,我们确定HMG盒4是物种特异性的主要决定因素。将人类HMG盒4添加到非洲爪蟾UBF中可将其转化为能在人类RNA聚合酶I转录中发挥作用的形式。从人类UBF中删除HMG盒4可将其转化为能在非洲爪蟾RNA聚合酶I转录中发挥作用的形式。此外,非洲爪蟾UBF内的突变表明,UBF需要精确的排列和数量的HMG盒才能在RNA聚合酶I转录中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15ef/307429/e2dd6a810cbf/nar00022-0061-a.jpg

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