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The ADPKD genes pkd1a/b and pkd2 regulate extracellular matrix formation

机译:ADPKD基因pkd1a / b和pkd2调节细胞外基质的形成

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Mutations in polycystin1 (PKD1) account for the majority of autosomal dominant polycystic kidney disease (ADPKD). PKD1 mutations are also associated with vascular aneurysm and abdominal wall hernia, suggesting a role for polycystin1 in extracellular matrix (ECM) integrity. In zebrafish, combined knockdown of the PKD1 paralogs pkd1a and pkd1b resulted in dorsal axis curvature, hydrocephalus, cartilage and craniofacial defects, and pronephric cyst formation at low frequency (10–15%). Dorsal axis curvature was identical to the axis defects observed in pkd2 knockdown embryos. Combined pkd1a/b , pkd2 knockdown demonstrated that these genes interact in axial morphogenesis. Dorsal axis curvature was linked to notochord collagen overexpression and could be reversed by knockdown of col2a1 mRNA or chemical inhibition of collagen crosslinking. pkd1a/b - and pkd2 -deficient embryos exhibited ectopic, persistent expression of multiple collagen mRNAs, suggesting a loss of negative feedback signaling that normally limits collagen gene expression. Knockdown of pkd1a/b also dramatically sensitized embryos to low doses of collagen-crosslinking inhibitors, implicating polycystins directly in the modulation of collagen expression or assembly. Embryos treated with wortmannin or LY-29400 also exhibited dysregulation of col2a1 expression, implicating phosphoinositide 3-kinase (PI3K) in the negative feedback signaling pathway controlling matrix gene expression. Our results suggest that pkd1a/b and pkd2 interact to regulate ECM secretion or assembly, and that altered matrix integrity may be a primary defect underlying ADPKD tissue pathologies.
机译:多囊藻蛋白1(PKD1)中的突变占常染色体显性多囊肾疾病(ADPKD)的大部分。 PKD1突变还与血管瘤和腹壁疝相关,表明多囊藻蛋白1在细胞外基质(ECM)完整性中起作用。在斑马鱼中,PKD1旁系同源蛋白pkd1a和pkd1b的组合敲低导致背轴弯曲,脑积水,软骨和颅面缺损,并在低频下形成前肾囊肿(10-15%)。背轴曲率与在pkd2基因敲除胚胎中观察到的轴缺陷相同。组合的pkd1a / b,pkd2敲低证明这些基因在轴向形态发生中相互作用。背轴曲率与脊索胶原过度表达有关,可通过敲低col2a1 mRNA或化学抑制胶原交联来逆转。 pkd1a / b和pkd2缺陷的胚胎表现出异位,持续表达多种胶原mRNA,这表明通常会限制胶原基因表达的负反馈信号丢失。敲除pkd1a / b也会使胚胎对低剂量的胶原蛋白交联抑制剂敏感,使多囊藻毒素直接参与胶原蛋白表达或组装的调节。用渥曼青霉素或LY-29400处理的胚胎还表现出col2a1表达失调,这暗示着负肌醇3-激酶(PI3K)在控制基质基因表达的负反馈信号通路中。我们的结果表明pkd1a / b和pkd2相互作用以调节ECM分泌或组装,而改变的基质完整性可能是ADPKD组织病理学的主要缺陷。

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