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干扰素-γ在构成性中肾间充质中的特异性表达通过调节 Sall1 表达导致肾发育不良。

Constitutive metanephric mesenchyme-specific expression of interferon-gamma causes renal dysplasia by regulating Sall1 expression.

机构信息

National Cancer Institute/NIH, Cancer and Developmental Biology Laboratory, Frederick, MD, United States of America.

National Cancer Institute/NIH, Laboratory of Molecular Immunoregulation, Frederick, MD, United States of America.

出版信息

PLoS One. 2018 May 17;13(5):e0197356. doi: 10.1371/journal.pone.0197356. eCollection 2018.

Abstract

Transplacental viral and parasitic infections have been shown to initiate an innate response in the mammalian embryo by increasing the expression of pro-inflammatory cytokines such as interferon-gamma (Ifng). However, the developmental consequences of an activated innate immunity and, in particular, the effects of induction of Ifng expression independent of infection have been largely overlooked. Here, we demonstrate in vivo that the conditional overexpression of Ifng in metanephric mesenchymal (MM) progenitors results in renal agenesis or hypoplasia. Cell death was observed in and around the MM region of E10.5-11.5 mutants where Ifng was constitutively expressed during early kidney development and resulted in a retardation of branching morphogenesis. Furthermore, isolated mutant or normal Ifng-treated metanephroi replicated this phenotype in culture, demonstrating the inherent nature of the aberrant morphogenesis. The expression of renal progenitor marker Sall1 was significantly decreased in the MM of mutant kidneys, suggesting that a reduction in Sall1 may be the cause of cell death in the MM during early kidney development and that, in turn, retards UB branching in the mutants. Therefore, the aberrant induction of Ifng expression, as part of an innate immune response, may contribute to renal agenesis or hypoplasia during early metanephric development by regulating the MM progenitor population.

摘要

胎盘病毒和寄生虫感染已被证明通过增加促炎细胞因子(如干扰素-γ(Ifng))的表达来启动哺乳动物胚胎的固有反应。然而,激活固有免疫的发育后果,特别是独立于感染诱导 Ifng 表达的影响,在很大程度上被忽视了。在这里,我们在体内证明了 Ifng 在肾原基间质(MM)祖细胞中的条件过表达导致肾发育不全或发育不良。在 E10.5-11.5 突变体的 MM 区域观察到细胞死亡,其中 Ifng 在早期肾脏发育过程中持续表达,并导致分支形态发生的延迟。此外,分离的突变体或正常的 Ifng 处理的肾原基在培养中复制了这种表型,证明了异常形态发生的固有性质。突变体 MM 中肾脏祖细胞标记物 Sall1 的表达显著降低,这表明 Sall1 的减少可能是早期肾脏发育过程中 MM 中细胞死亡的原因,进而导致突变体中 UB 分支的延迟。因此,固有免疫反应中 Ifng 表达的异常诱导可能通过调节 MM 祖细胞群体导致早期肾原基发育过程中的肾发育不全或发育不良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/983f/5957351/1ff80c858cc9/pone.0197356.g001.jpg

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