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首页> 外文期刊>Nucleus >SUN1 splice variants, SUN1_888, SUN1_785, and predominant SUN1_916, variably function in directional cell migration
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SUN1 splice variants, SUN1_888, SUN1_785, and predominant SUN1_916, variably function in directional cell migration

机译:SUN1剪接变体SUN1_888,SUN1_785和主要的SUN1_916,在定向细胞迁移中起可变作用

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摘要

The LINC complex is a multifunctional protein complex that is involved in various processes at the nuclear envelope, such as nuclear migration, mechanotransduction and chromatin tethering in the meiotic phase. However, it remains unknown how these functions are regulated in different cell contexts. An inner nuclear membrane component of the LINC complex, SUN1, is ubiquitously expressed. The human SUN1 gene produces over 10 variants by alternative splicing. Although functions of SUN1 are relatively well characterized, functional differences among SUN1 splice variants are poorly characterized. LINC complex components are associated with a wide range of human diseases; therefore, it is important to understand the functional diversity among SUN1 splice variants. Here, we identified a novel human SUN1 splice variant, SUN1_888. overexpression of the SUN1 splice variants, SUN1_888 or SUN1_785, but not the predominant isoform, SUN1_916, activated directional cell migration. Knockdown of SUN1_888 suppressed cell migration; in contrast depletion of SUN1_916 activated cell migration. In addition, all of investigated SUN1 splicing variants rescued cell migration in SUN1 knock out cell. These results indicate that redundant and non-redundant functions of SUN1 splice variant in directional cell migration and suggest that variable LINC complexes with distinct task may exit. Furthermore, in contrast to previous studies, we showed association between SUN1 and B-type lamins. Interestingly, B-type lamin preferentially interacts with SUN1 but not SUN2. These results suggest that tissue-specific SUN1 variants variably interact with nucleoplasmic partners and allow variable assembly of LINC complexes that can be assigned to distinct tasks.
机译:LINC复合物是一种多功能蛋白复合物,它参与核包膜的各种过程,例如减数分裂期的核迁移,机械转导和染色质束缚。但是,如何在不同的细胞环境中调节这些功能仍然未知。 LINC复合体的内部核膜成分SUN1被普遍表达。人类SUN1基因通过选择性剪接产生超过10个变异体。尽管SUN1的功能已相对较好地表征,但SUN1剪接变体之间的功能差异却很难表征。 LINC复杂成分与多种人类疾病有关;因此,了解SUN1剪接变体之间的功能多样性非常重要。在这里,我们确定了一种新型的人类SUN1剪接变体SUN1_888。 SUN1剪接变体SUN1_888或SUN1_785的过表达,但不是主要的同种型SUN1_916,则激活了定向细胞迁移。击倒SUN1_888抑制细胞迁移;相反,SUN1_916的耗尽激活了细胞迁移。此外,所有研究的SUN1剪接变体均可拯救SUN1敲除细胞中的细胞迁移。这些结果表明SUN1剪接变体在方向性细胞迁移中的冗余和非冗余功能,并表明具有不同任务的可变LINC复合体可能退出。此外,与以前的研究相反,我们显示了SUN1和B型lamin之间的关联。有趣的是,B型核纤层蛋白优先与SUN1相互作用,但不与SUN2相互作用。这些结果表明,组织特异性SUN1变体与核质伴侣可变地相互作用,并允许可分配给不同任务的LINC复合体可变组装。

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