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Nucleus-Specific Importin Alpha Proteins and Nucleoporins Regulate Protein Import and Nuclear Division in the Binucleate Tetrahymena thermophila▿ †

机译:特定于细胞核的Importinα蛋白和Nucleoporins调节嗜热四核膜四膜虫中的蛋白质导入和核分裂

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摘要

The ciliate Tetrahymena thermophila, having both germ line micronuclei and somatic macronuclei, must possess a specialized nucleocytoplasmic transport system to import proteins into the correct nucleus. To understand how Tetrahymena can target proteins to distinct nuclei, we first characterized FG repeat-containing nucleoporins and found that micro- and macronuclei utilize unique subsets of these proteins. This finding implicates these proteins in the differential permeability of the two nuclei and implies that nuclear pores with discrete specificities are assembled within a single cell. To identify the import machineries that interact with these different pores, we characterized the large families of karyopherin homologs encoded within the genome. Localization studies of 13 putative importin (imp) α- and 11 imp β-like proteins revealed that imp α-like proteins are nucleus specific—nine localized to the germ line micronucleus—but that most imp β-like proteins localized to both types of nuclei. These data suggest that micronucleus-specific proteins are transported by specific imp α adapters. The different imp α proteins exhibit substantial sequence divergence and do not appear to be simply redundant in function. Disruption of the IMA10 gene encoding an imp α-like protein that accumulates in dividing micronuclei results in nuclear division defects and lethality. Thus, nucleus-specific protein import and nuclear function in Tetrahymena are regulated by diverse, specialized karyopherins.
机译:具有种系微核和体细胞大核的纤毛嗜热四膜膜必须具有专门的核质运输系统才能将蛋白质导入正确的核中。为了了解四膜虫如何将蛋白质靶向不同的核,我们首先对含有FG重复序列的核孔蛋白进行了表征,并发现微核和大核利用了这些蛋白质的独特子集。这一发现将这些蛋白质牵连到两个核的差异渗透中,并暗示具有离散特异性的核孔在单个细胞内组装。为了确定与这些不同的毛孔相互作用的进口机制,我们表征了基因组内编码的核转运蛋白同源物的大家族。对13种推定的importin(imp)α-和11种impβ-like蛋白的定位研究表明,impα-like蛋白具有特定于细胞核的特质,其中9种位于种系微核中,但大多数impβ-like蛋白均定位于两种类型的核。这些数据表明微核特异性蛋白是通过特异性的impα衔接子转运的。不同的impα蛋白表现出实质的序列差异,并且在功能上似乎并不简单。编码积累在分裂微核中的impα-样蛋白的IMA10基因的破坏导致核分裂缺陷和致死性。因此,四膜虫中的特定于细胞核的蛋白质输入和核功能受多种专门的核球蛋白调节。

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