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Molecular functional analyses revealed essential roles of HSP90 and lamin A/C in growth, migration, and self-aggregation of dermal papilla cells

机译:分子官能分析显示HSP90和Lamin A / C在皮肤乳头细胞的生长,迁移和自聚集中的基本作用

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Previous expression study using quantitative proteomics has shown that immune-mediated pathway may not be the main mechanism inducing alopecia areata (AA). Nevertheless, functional impact of such expression data set remained unknown and unexplored. This study thus aimed to define potentially novel mechanisms of the AA pathogenesis by functional investigations of the differentially expressed proteins previously identified from lesional biopsies. From 122 altered proteins, protein–protein interactions network analysis revealed that downregulated heat shock protein 90 (HSP90) and lamin A/C served as the central nodes of protein–protein interactions involving in several crucial biological functions, including cytoskeleton organization, extracellular matrix organization, and tissue development. Interaction between HSP90 and lamin A/C in dermal papilla cells (DPCs) was confirmed by reciprocal immunoprecipitation and immunofluorescence co-staining. Small-interfering RNA (siRNA) targeting to HSP90 (siHSP90) and lamin A/C (siLamin A/C) effectively reduced levels of HSP90 and lamin A/C, respectively and vice versa, comparing to non-transfected and siControl-transfected cells, strengthening their interactive roles in DPCs. Functional investigations revealed that DPCs transfected with siHSP90 and siLamin A/C had defective cell proliferation and growth, prolonged doubling time, cell cycle arrest at G0/G1 phase, and defective self-aggregation formation. Moreover, siHSP90-transfected cells had less spindle index, reduced levels of vimentin (mesenchymal marker) and fibronectin (extracellular matrix), and defective migratory activity. Our data have demonstrated for the first time that HSP90 and lamin A/C physically interact with each other. Moreover, both of them are essential for growth, migration, and self-aggregation of DPCs and can be linked to the disease mechanisms of AA.
机译:先前使用定量蛋白质组学的表达研究表明,免疫介导的途径可能不是诱导脱发Alopecia(AA)的主要机制。然而,这种表达数据集的功能影响仍然是未知的并且未探索。因此,该研究旨在通过先前鉴定的裂变活组织检查鉴定的差异表达蛋白质的功能性研究来确定AA发病机制的潜在新机制。从122个改变的蛋白质,蛋白质 - 蛋白质相互作用网络分析显示,下调的热休克蛋白90(HSP90)和Lamin A / C作为涉及若干关键生物功能的蛋白质 - 蛋白质相互作用的中心节点,包括细胞骨架组织,细胞外基质组织和组织发育。通过往复免疫沉淀和免疫荧光共染料证实了HSP90和Lamin A / C之间的相互作用和皮脂乳头细胞(DPC)。靶向HSP90(SiHSP90)和Lamin A / C(Silamin A / C)的小干扰RNA(siRNA)分别减少了Hsp90和Lamin A / C的水平,反之亦然,比较非转染和Sicontrol转染的细胞,加强其在DPC中的互动角色。功能性研究表明,用SiHSP90和Silamin A / C转染的DPC具有缺陷的细胞增殖和生长,延长的倍增时间,G0 / G1相的细胞周期骤停,自聚集形成有缺陷。此外,SiHSP90转染的细胞具有较少的主轴指数,降低了降花蛋白(间充质标记物)和纤连蛋白(细胞外基质)和缺陷的迁移活性。我们的数据首次展示了HSP90和Lamin A / C彼此身体互动。此外,它们都对于DPC的生长,迁移和自我聚集至关重要,并且可以与AA的疾病机制相关联。

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