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The calcium ATPase SERCA2 regulates desmoplakin dynamics and intercellular adhesive strength through modulation of PKCα signaling

机译:钙ATP酶Serca2通过调制PKCα信号传导来调节去氧素动力学和细胞间粘合强度

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Darier's disease (DD) is an inherited autosomal-dominant skin disorder characterized histologically by loss of adhesion between keratinocytes. DD is typically caused by mutations in sarcoendoplasmic reticulum Ca2+-ATPase isoform 2 (SERCA2), a major regulator of intracellular Ca2+ homeostasis in the skin. However, a defined role for SERCA2 in regulating intercellular adhesion remains poorly understood. We found that diminution of SERCA2 function by pharmacological inhibition or siRNA silencing in multiple human epidermal-derived cell lines was sufficient to disrupt desmosome assembly and weaken intercellular adhesive strength. Specifically, SERCA2-deficient cells exhibited up to a 60% reduction in border translocation of desmoplakin (DP), the desmosomal cytolinker protein necessary for intermediate filament (IF) anchorage to sites of robust cell-cell adhesion. In addition, loss of SERCA2 impaired the membrane translocation of protein kinase C α (PKCα), a known regulator of DP-IF association and desmosome assembly, to the plasma membrane by up to 70%. Exogenous activation of PKCα in SERCA2-deficient cells was sufficient to rescue the defective DP localization, desmosome assembly, and intercellular adhesive strength to levels comparable to controls. Our findings indicate that SERCA2-deficiency is sufficient to impede desmosome assembly and weaken intercellular adhesive strength via a PKCα-dependent mechanism, implicating SERCA2 as a novel regulator of PKCα signaling.—Hobbs, R. P., Amargo, E. V., Somasundaram, A., Simpson, C. L., Prakriya, M., Denning, M. F., Green, K. J. The calcium ATPase SERCA2 regulates desmoplakin dynamics and intercellular adhesive strength through modulation of PKCα signaling.
机译:Darier的疾病(DD)是一种遗传的常染色体显性皮肤病,其特征在于通过角质形成细胞之间的粘附性丧失而组织学。 DD通常是由Sarcoendoptasmic Tearulum Ca2 + -AtPase同种型2(Serca2)中的突变引起的,皮肤中的细胞内Ca2 +稳态的主要调节剂。然而,Serca2在调节细胞间粘附方面的定义作用仍然是较差的理解。我们发现,通过在多种人表皮衍生的细胞系中通过药理抑制或siRNA沉默的Serca2功能的减少足以破坏Demosome组装并削弱细胞间粘合强度。具体地,Serca2缺陷细胞的边界易位(DP)的边界易位减少高达60%,中间长丝(IF)锚固至强大的细胞 - 细胞粘附位点所必需的去染色体细胞蛋白蛋白。此外,Serca2的损失损失了蛋白激酶Cα(PKCα),已知的DP-IF关联和DESMOSOME组件的已知调节剂的膜易位,使等离子体膜高达70%。在Serca2缺陷细胞中对PKCα的外源性激活足以拯救缺陷的DP定位,DESMOSOMES组件和细胞间粘合强度与对照相当的水平。我们的研究结果表明,Serca2缺乏足以通过PKCα依赖性机制阻碍Dermosome组件和削弱细胞间粘合强度,暗示Serca2作为PKCα信号传导的新型调节器.-霍布斯,RP,Amargo,EV,Somasundaram,A.,SIMPSON ,Cl,Prakriya,M.,Denning,MF,Green,KJ钙ATP酶Serca2通过调制PKCα信号传导来调节去氧化蛋白动力学和细胞间粘合强度。

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