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帽结合蛋白(真核生物起始因子4E)和4E失活蛋白BP-1分别独立调节帽依赖性翻译。

Cap-binding protein (eukaryotic initiation factor 4E) and 4E-inactivating protein BP-1 independently regulate cap-dependent translation.

作者信息

Feigenblum D, Schneider R J

机构信息

Department of Biochemistry, New York University Medical School, New York 10016, USA.

出版信息

Mol Cell Biol. 1996 Oct;16(10):5450-7. doi: 10.1128/MCB.16.10.5450.

Abstract

Cap-dependent protein synthesis in animal cells is inhibited by heat shock, serum deprivation, metaphase arrest, and infection with certain viruses such as adenovirus (Ad). At a mechanistic level, translation of capped mRNAs is inhibited by dephosphorylation of eukaryotic initiation factor 4E (eIF-4E) (cap-binding protein) and its physical sequestration with the translation repressor protein BP-1 (PHAS-I). Dephosphorylation of BP-I blocks cap-dependent translation by promoting sequestration of eIF-4E. Here we show that heat shock inhibits translation of capped mRNAs by simultaneously inducing dephosphorylation of eIF-4E and BP-1, suggesting that cells might coordinately regulate translation of capped mRNAs by impairing both the activity and the availability of eIF-4E. Like heat shock, late Ad infection is shown to induce dephosphorylation of eIF-4E. However, in contrast to heat shock, Ad also induces phosphorylation of BP-1 and release of eIF-4E. BP-1 and eIF-4E can therefore act on cap-dependent translation in either a mutually antagonistic or cooperative manner. Three sets of experiments further underscore this point: (i) rapamycin is shown to block phosphorylation of BP-1 without inhibiting dephosphorylation of eIF-4E induced by heat shock or Ad infection, (ii) eIF-4E is efficiently dephosphorylated during heat shock or Ad infection regardless of whether it is in a complex with BP-1, and (iii) BP-1 is associated with eIF-4E in vivo regardless of the state of eIF-4E phosphorylation. These and other studies establish that inhibition of cap-dependent translation does not obligatorily involve sequestration of eIF-4E by BP-1. Rather, translation is independently regulated by the phosphorylation states of eIF-4E and the 4E-binding protein, BP-1. In addition, these results demonstrate that BP-1 and eIF-4E can act either in concert or in opposition to independently regulate cap-dependent translation. We suggest that independent regulation of eIF-4E and BP-1 might finely regulate the efficiency of translation initiation or possibly control cap-dependent translation for fundamentally different purposes.

摘要

动物细胞中依赖帽子结构的蛋白质合成会受到热休克、血清剥夺、中期阻滞以及感染某些病毒(如腺病毒)的抑制。在机制层面,带有帽子结构的mRNA的翻译会因真核起始因子4E(eIF - 4E,帽子结合蛋白)的去磷酸化以及它与翻译抑制蛋白BP - 1(PHAS - I)的物理隔离而受到抑制。BP - 1的去磷酸化通过促进eIF - 4E的隔离来阻断依赖帽子结构的翻译。在此我们表明,热休克通过同时诱导eIF - 4E和BP - 1的去磷酸化来抑制带有帽子结构的mRNA的翻译,这表明细胞可能通过损害eIF - 4E的活性和可用性来协调调节带有帽子结构的mRNA的翻译。与热休克一样,腺病毒晚期感染也会诱导eIF - 4E的去磷酸化。然而,与热休克不同的是,腺病毒还会诱导BP - 1的磷酸化以及eIF - 4E的释放。因此,BP - 1和eIF - 4E可以以相互拮抗或协同的方式作用于依赖帽子结构的翻译。三组实验进一步强调了这一点:(i)雷帕霉素被证明可阻断BP - 1的磷酸化,而不抑制热休克或腺病毒感染诱导的eIF - 4E的去磷酸化;(ii)无论eIF - 4E是否与BP - 1形成复合物,在热休克或腺病毒感染期间它都会有效地去磷酸化;(iii)无论eIF - 4E的磷酸化状态如何,BP - 1在体内都与eIF - 4E相关联。这些研究以及其他研究表明,依赖帽子结构的翻译的抑制并不一定涉及BP - 1对eIF - 4E的隔离。相反,翻译是由eIF - 4E和4E结合蛋白BP - 1的磷酸化状态独立调节的。此外,这些结果表明BP - 1和eIF - 4E可以协同或相反地作用,以独立调节依赖帽子结构的翻译。我们认为,eIF - 4E和BP - 1的独立调节可能会精细地调节翻译起始的效率,或者可能出于根本不同的目的控制依赖帽子结构的翻译。

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