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首页> 外文期刊>Molecular & cellular proteomics: MCP >The leukocyte nuclear envelope proteome varies with cell activation and contains novel transmembrane proteins that affect genome architecture.
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The leukocyte nuclear envelope proteome varies with cell activation and contains novel transmembrane proteins that affect genome architecture.

机译:白细胞核被膜蛋白质组随细胞活化而变化,并包含影响基因组结构的新型跨膜蛋白。

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摘要

A favored hypothesis to explain the pathology underlying nuclear envelopathies is that mutations in nuclear envelope proteins alter genome/chromatin organization and thus gene expression. To identify nuclear envelope proteins that play roles in genome organization, we analyzed nuclear envelopes from resting and phytohemagglutinin-activated leukocytes because leukocytes have a particularly high density of peripheral chromatin that undergoes significant reorganization upon such activation. Thus, nuclear envelopes were isolated from leukocytes in the two states and analyzed by multidimensional protein identification technology using an approach that used expected contaminating membranes as subtractive fractions. A total of 3351 proteins were identified between both nuclear envelope data sets among which were 87 putative nuclear envelope transmembrane proteins (NETs) that were not identified in a previous proteomics analysis of liver nuclear envelopes. Nuclear envelope localization was confirmed for 11 new NETs using tagged fusion proteins and antibodies on spleen cryosections. 27% of the new proteins identified were unique to one or the other of the two leukocyte states. Differences in expression between activated and resting leukocytes were confirmed for some NETs by RT-PCR, and most of these proteins appear to only be expressed in certain types of blood cells. Several known proteins identified in both data sets have functions in chromatin organization and gene regulation. To test whether the novel NETs identified might include those that also regulate chromatin, nine were run through two screens for different chromatin effects. One screen found two NETs that can recruit a specific gene locus to the nuclear periphery, and the second found a different NET that promotes chromatin condensation. The variation in the protein milieu with pharmacological activation of the same cell population and consequences for gene regulation suggest that the nuclear envelope is a complex regulatory system with significant influences on genome organization.
机译:解释核包膜病变的病理学的一个受欢迎的假设是核被膜蛋白的突变会改变基因组/染色质的组织,从而改变基因的表达。为了确定在基因组组织中发挥作用的核被膜蛋白,我们分析了静止和植物血凝素激活的白细胞的核被膜,因为白细胞具有特别高的外周染色质密度,在这种激活后会显着重组。因此,在这两种状态下从白细胞中分离出了核被膜,并通过多维蛋白质鉴定技术进行了分析,使用的方法是使用预期的污染膜作为减法部分。在两个核包膜数据集之间共鉴定出3351种蛋白质,其中87种推定的核包膜跨膜蛋白(NETs)在先前对肝核包膜的蛋白质组学分析中未发现。在脾脏冰冻切片上使用标记的融合蛋白和抗体确认了11个新NET的核包膜定位。鉴定出的新蛋白质中有27%对两种白细胞状态中的一种是独特的。通过RT-PCR证实了某些NETs在活化和静息白细胞之间的表达差异,并且大多数这些蛋白质似乎仅在某些类型的血细胞中表达。在这两个数据集中鉴定出的几种已知蛋白质在染色质组织和基因调控中具有功能。为了测试鉴定出的新型NET是否可能包括那些也能调节染色质的NET,通过两个筛查了9个不同的染色质效果。一个屏幕发现了两个可以将特定基因位点募集到核外围的NET,第二个屏幕则发现了另一个促进染色质凝聚的NET。具有相同细胞群药理作用的蛋白质环境的变化以及基因调控的结果表明,核膜是一个复杂的调控系统,对基因组的组织有重大影响。

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