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Virtual-tissue computer simulations define the roles of cell adhesion and proliferation in the onset of kidney cystic disease

机译:虚拟组织计算机模拟定义了细胞黏附和增殖在肾囊性疾病发作中的作用

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摘要

In autosomal dominant polycystic kidney disease (ADPKD), cysts accumulate and progressively impair renal function. Mutations in PKD1 and PKD2 genes are causally linked to ADPKD, but how these mutations drive cell behaviors that underlie ADPKD pathogenesis is unknown. Human ADPKD cysts frequently express cadherin-8 (cad8), and expression of cad8 ectopically in vitro suffices to initiate cystogenesis. To explore cell behavioral mechanisms of cad8-driven cyst initiation, we developed a virtual-tissue computer model. Our simulations predicted that either reduced cell-cell adhesion or reduced contact inhibition of proliferation triggers cyst induction. To reproduce the full range of cyst morphologies observed in vivo, changes in both cell adhesion and proliferation are required. However, only loss-of-adhesion simulations produced morphologies matching in vitro cad8-induced cysts. Conversely, the saccular cysts described by others arise predominantly by decreased contact inhibition, that is, increased proliferation. In vitro experiments confirmed that cell-cell adhesion was reduced and proliferation was increased by ectopic cad8 expression. We conclude that adhesion loss due to cadherin type switching in ADPKD suffices to drive cystogenesis. Thus, control of cadherin type switching provides a new target for therapeutic intervention.
机译:在常染色体显性遗传性多囊肾疾病(ADPKD)中,囊肿积聚并逐渐损害肾功能。 PKD1和PKD2基因的突变与ADPKD因果相关,但是这些突变如何驱动构成ADPKD发病机理基础的细胞行为尚不清楚。人ADPKD囊肿经常表达cadherin-8(cad8),而在体外异位表达cad8足以启动囊肿形成。为了探索cad8驱动的囊肿起始的细胞行为机制,我们开发了虚拟组织计算机模型。我们的模拟预测,降低的细胞粘附或降低的增殖接触抑制触发囊肿诱导。为了重现体内观察到的全部囊肿形态,细胞粘附和增殖都需要改变。但是,只有失去附着力的模拟才能产生与体外cad8诱导的囊肿相匹配的形态。相反,其他人描述的囊性囊肿主要是由于接触抑制降低,即增生而引起的。体外实验证实,异位cad8表达可减少细胞粘附,并增加增殖。我们得出的结论是,由于ADPKD中钙黏着蛋白类型转换而导致的粘着丧失足以驱动囊肿发生。因此,对钙粘蛋白类型转换的控制为治疗干预提供了新的目标。

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