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抑制帽结合复合物因子 4EIP 对于正常分化是必需的。

The suppressive cap-binding complex factor 4EIP is required for normal differentiation.

机构信息

Centre for Molecular Biology of Heidelberg University (ZMBH), DKFZ-ZMBH Alliance, Im Neuenheimer Feld 282, D-69120 Heidelberg, Germany.

出版信息

Nucleic Acids Res. 2018 Sep 28;46(17):8993-9010. doi: 10.1093/nar/gky733.

Abstract

Trypanosoma brucei live in mammals as bloodstream forms and in the Tsetse midgut as procyclic forms. Differentiation from one form to the other proceeds via a growth-arrested stumpy form with low messenger RNA (mRNA) content and translation. The parasites have six eIF4Es and five eIF4Gs. EIF4E1 pairs with the mRNA-binding protein 4EIP but not with any EIF4G. EIF4E1 and 4EIP each inhibit expression when tethered to a reporter mRNA, but while tethered EIF4E1 suppresses only when 4EIP is present, suppression by tethered 4EIP does not require the interaction with EIF4E1. In growing bloodstream forms, 4EIP is preferentially associated with unstable mRNAs. Bloodstream- or procyclic-form trypanosomes lacking 4EIP have only a marginal growth disadvantage. Bloodstream forms without 4EIP are, however, defective in translation suppression during stumpy-form differentiation and cannot subsequently convert to growing procyclic forms. Intriguingly, the differentiation defect can be complemented by a truncated 4EIP that does not interact with EIF4E1. In contrast, bloodstream forms lacking EIF4E1 have a growth defect, stumpy formation seems normal, but they appear unable to grow as procyclic forms. We suggest that 4EIP and EIF4E1 fine-tune mRNA levels in growing cells, and that 4EIP contributes to translation suppression during differentiation to the stumpy form.

摘要

布氏锥虫以血液中循环形式存在于哺乳动物体内,以前cyclic 形式存在于采采蝇的中肠。从一种形式到另一种形式的分化是通过一种生长停滞的短粗形式进行的,这种形式信使 RNA(mRNA)含量和翻译水平较低。寄生虫有六个 eIF4E 和五个 eIF4G。EIF4E1 与 mRNA 结合蛋白 4EIP 配对,但不与任何 EIF4G 配对。EIF4E1 和 4EIP 各自与报告 mRNA 连接时都抑制表达,但当 EIF4E1 存在时,连接的 EIF4E1 仅抑制表达,而连接的 4EIP 不需要与 EIF4E1 相互作用即可抑制表达。在生长中的血液形式中,4EIP 优先与不稳定的 mRNA 相关联。缺乏 4EIP 的血液或前 cyclic 形式锥虫仅具有轻微的生长劣势。然而,没有 4EIP 的血液形式在短粗形式分化过程中在翻译抑制方面存在缺陷,并且随后不能转化为生长的前 cyclic 形式。有趣的是,分化缺陷可以通过不与 EIF4E1 相互作用的截断 4EIP 来弥补。相比之下,缺乏 EIF4E1 的血液形式具有生长缺陷,短粗形成似乎正常,但它们似乎无法作为前 cyclic 形式生长。我们认为,4EIP 和 EIF4E1 可微调生长细胞中的 mRNA 水平,并且 4EIP 有助于分化为短粗形式时的翻译抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b84/6158607/04d15a8c919f/gky733fig1.jpg

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