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Int-6(一种哺乳动物癌蛋白和真核生物翻译起始因子3(eIF3)亚基)的裂殖酵母同源物在过表达时会诱导耐药性。

A fission yeast homolog of Int-6, the mammalian oncoprotein and eIF3 subunit, induces drug resistance when overexpressed.

作者信息

Crane R, Craig R, Murray R, Dunand-Sauthier I, Humphrey T, Norbury C

机构信息

Imperial Cancer Research Fund, Molecular Oncology Laboratory, University of Oxford, Institute of Molecular Medicine, John Radcliffe Hospital, Oxford OX3 9DS, United Kingdom.

出版信息

Mol Biol Cell. 2000 Nov;11(11):3993-4003. doi: 10.1091/mbc.11.11.3993.

Abstract

Through a screen to identify genes that induce multi-drug resistance when overexpressed, we have identified a fission yeast homolog of Int-6, a component of the human translation initiation factor eIF3. Disruption of the murine Int-6 gene by mouse mammary tumor virus (MMTV) has been implicated previously in tumorigenesis, although the underlying mechanism is not yet understood. Fission yeast Int6 was shown to interact with other presumptive components of eIF3 in vivo, and was present in size fractions consistent with its incorporation into a 43S translation preinitiation complex. Drug resistance induced by Int6 overexpression was dependent on the AP-1 transcription factor Pap1, and was associated with increased abundance of Pap1-responsive mRNAs, but not with Pap1 relocalization. Fission yeast cells lacking the int6 gene grew slowly. This growth retardation could be corrected by the expression of full length Int6 of fission yeast or human origin, or by a C-terminal fragment of the fission yeast protein that also conferred drug resistance, but not by truncated human Int-6 proteins corresponding to the predicted products of MMTV-disrupted murine alleles. Studies in fission yeast may therefore help to explain the ways in which Int-6 function can be perturbed during MMTV-induced mammary tumorigenesis.

摘要

通过一个筛选实验来鉴定过表达时能诱导多药耐药性的基因,我们鉴定出了人类翻译起始因子eIF3的一个组分Int-6在裂殖酵母中的同源物。小鼠乳腺肿瘤病毒(MMTV)对小鼠Int-6基因的破坏先前已被认为与肿瘤发生有关,尽管其潜在机制尚不清楚。裂殖酵母Int6在体内被证明能与eIF3的其他假定组分相互作用,并且存在于与它掺入43S翻译起始前复合物相一致的大小级分中。Int6过表达诱导的耐药性依赖于AP-1转录因子Pap1,并且与Pap1反应性mRNA丰度的增加有关,但与Pap1的重新定位无关。缺乏int6基因的裂殖酵母细胞生长缓慢。这种生长迟缓可以通过表达裂殖酵母或人类来源的全长Int6,或通过也赋予耐药性的裂殖酵母蛋白的C末端片段来纠正,但不能通过与MMTV破坏的小鼠等位基因的预测产物相对应的截短人类Int-6蛋白来纠正。因此,在裂殖酵母中的研究可能有助于解释在MMTV诱导的乳腺肿瘤发生过程中Int-6功能可能被扰乱的方式。

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