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Sorting out IF networks: consequences of domain swapping on IF recognition and assembly

机译:整理中频网络:域交换对中频识别和组装的影响

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摘要

Vimentin and keratin are coexpressed in many cells, but they segregate into two distinct intermediate filament (IF) networks. To understand the molecular basis for the sorting out of these IF subunits, we genetically engineered cDNAs encoding hybrid IF proteins composed of part vimentin and part type I keratin. When these cDNAs were transiently expressed in cells containing vimentin, keratin, or both IFs, the hybrid IF proteins all recognized one or the other or both networks. The ability to distinguish networks was dependent upon which segments of IF proteins were present in each construct. Constructs containing sequences encoding either helix 1B or helix 2B seemed to be the most critical in conferring IF recognition. At least for type I keratins, recognition was exerted at the level of dimer formation with wild-type type II keratin, as demonstrated by anion exchange chromatography. Interestingly, despite the fact that swapping of helical domains was not as deleterious to IF structure/function as deletion of helical domains, keratin/vimentin hybrids still caused structural aberrations in one or more of the cytoplasmic IF network. Thus, sequence diversity among IF proteins seems to influence not only coiled-coil but also higher ordered associations leading to 10-nm filament formation and/or IF interactions with other cellular organelles/proteins.
机译:波形蛋白和角蛋白在许多细胞中共表达,但它们分离成两个不同的中间丝(IF)网络。为了了解整理这些IF亚基的分子基础,我们进行了基因工程改造,以编码由部分波形蛋白和部分I型角蛋白组成的混合IF蛋白的cDNA。当这些cDNA在含有波形蛋白,角蛋白或两种IF的细胞中瞬时表达时,杂种IF蛋白全部识别一个或另一个或两个网络。区分网络的能力取决于每个构建体中存在哪些IF蛋白片段。含有编码螺旋1B或螺旋2B的序列的构建体似乎在赋予IF识别中是最关键的。至少对于I型角蛋白,如阴离子交换色谱所示,在野生型II型角蛋白的二聚体形成水平上发挥了作用。有趣的是,尽管螺旋结构域的交换对IF结构/功能的危害不如螺旋结构域的缺失,但角蛋白/波形蛋白杂合体仍然在一个或多个细胞质IF网络中引起结构畸变。因此,IF蛋白之间的序列多样性似乎不仅影响卷曲螺旋,而且还影响导致10 nm细丝形成和/或IF与其他​​细胞器/蛋白相互作用的较高序关联。

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