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Nuclear localization signal deletion mutants of lamin A and progerin reveal insights into lamin A processing and emerin targeting

机译:Lamin A和progerin的核定位信号缺失突变体揭示了Lamin A加工和Emerin靶向的见解

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Lamin A is a major component of the lamina, which creates a dynamic network underneath the nuclear envelope. Mutations in the lamin A gene (LMNA ) cause severe genetic disorders, one of which is Hutchinson-Gilford progeria syndrome (HGPS), a disease triggered by a dominant mutant named progerin. Unlike the wild-type lamin A, whose farnesylated C-terminus is excised during post-translational processing, progerin retains its farnesyl tail and accumulates on the nuclear membrane, resulting in abnormal nuclear morphology during interphase. In addition, membrane-associated progerin forms visible cytoplasmic aggregates in mitosis. To examine the potential effects of cytoplasmic progerin, nuclear localization signal (NLS) deleted progerin and lamin A (PGΔNLS and LAΔNLS, respectively) have been constructed. We find that both ΔNLS mutants are farnesylated in the cytosol and associate with a sub-domain of the ER via their farnesyl tails. While the farnesylation on LAΔNLS can be gradually removed, which leads to its subsequent release from the ER into the cytoplasm, PGΔNLS remains permanently farnesylated and membrane-bounded. Moreover, both ΔNLS mutants dominantly affect emerin’s nuclear localization. These results reveal new insights into lamin A biogenesis and lamin A-emerin interaction.
机译:薄层A是薄层的主要组成部分,它在核层之下形成一个动态网络。核纤层蛋白A基因(LMNA)中的突变会导致严重的遗传疾病,其中之一就是Hutchinson-Gilford早衰综合症(HGPS),该疾病是由名为progerin的显性突变体引发的。与野生型核纤层蛋白A在翻译后加工过程中切除了法呢基化的C末端不同,progerin保留了其法呢基尾部并积聚在核膜上,从而在相间产生异常的核形态。另外,膜相关的早老蛋白在有丝分裂中形成可见的胞质聚集体。为了检查细胞质早老蛋白的潜在作用,已经构建了核定位信号(NLS)缺失的早老蛋白和层粘连蛋白A(分别为PGΔNLS和LAΔNLS)。我们发现,两个ΔNLS突变体在细胞质中都被法尼基化,并通过其法呢基尾与ER的一个子域缔合。尽管可以逐渐去除LAΔNLS上的法呢基化,从而导致其随后从ER释放到细胞质中,但PGΔNLS仍然被永久地法呢基化和膜结合。此外,两个ΔNLS突变体都主要影响Emerin的核定位。这些结果揭示了对lamin A生物发生和lamin A-emerin相互作用的新见解。

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