Division of Nephrology, Department of Medicine, Washington University in St. Louis School of Medicine , St. Louis, Missouri.
Cancer and Blood Diseases Institute, Cincinnati Children's Hospital Medical Center, and the Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, Ohio.
Am J Physiol Renal Physiol. 2018 Aug 1;315(2):F275-F290. doi: 10.1152/ajprenal.00030.2018. Epub 2018 Mar 28.
The homeobox transcription factor Meis1 is required for mammalian development, and its overexpression plays a role in tumorigenesis, especially leukemia. Meis1 is known to be expressed in kidney stroma, but its function in kidney is undefined. We hypothesized that Meis1 may regulate stromal cell proliferation in kidney development and disease and tested the hypothesis using cell lineage tracing and cell-specific Meis1 deletion in development, aging, and fibrotic disease. We observed strong expression of Meis1 in platelet-derived growth factor receptor-β-positive pericytes and perivascular fibroblasts, both in adult mouse kidney and to a lesser degree in human kidney. Either bilateral ischemia-reperfusion injury or aging itself led to strong upregulation of Meis1 protein and mRNA in kidney myofibroblasts, and genetic lineage analysis confirmed that Meis1-positive cells proliferate as they differentiate into myofibroblasts after injury. Conditional deletion of Meis1 in all kidney stroma with two separate tamoxifen-inducible Cre recombinase drivers had no phenotype with the exception of consistent induction of the tubular injury marker kidney injury molecule-1 (Kim-1) only in Meis1 mutants. Further examination of Kim-1 expression revealed linkage disequilibrium of Kim-1 and Meis1, such that Meis1 mutants carried the longer BALB/c Kim-1 allele. Unexpectedly, we report that this Kim-1 allele is expressed at baseline in wild-type BALB/c mice, without any associated abnormalities, including long-term fibrosis, as predicted from the literature. We conclude that Meis1 is specifically expressed in stroma and myofibroblasts of mouse and human kidney, that it is not required for kidney development, disease, or aging, and that BALB/c mice unexpectedly express Kim-1 protein at baseline without other kidney abnormality.
同源盒转录因子 Meis1 是哺乳动物发育所必需的,其过表达在肿瘤发生中起作用,特别是在白血病中。已知 Meis1 在肾脏基质中表达,但在肾脏中的功能尚未确定。我们假设 Meis1 可能调节肾脏发育和疾病中的基质细胞增殖,并在发育、衰老和纤维化疾病中使用细胞谱系追踪和细胞特异性 Meis1 缺失来检验该假说。我们观察到 Meis1 在血小板衍生生长因子受体-β阳性周细胞和血管周围成纤维细胞中强烈表达,无论是在成年小鼠肾脏中还是在人类肾脏中,表达程度都较低。双侧缺血再灌注损伤或衰老本身导致肾脏肌成纤维细胞中 Meis1 蛋白和 mRNA 的强烈上调,遗传谱系分析证实 Meis1 阳性细胞在损伤后分化为肌成纤维细胞时增殖。用两种独立的他莫昔芬诱导型 Cre 重组酶驱动剂对所有肾脏基质中的 Meis1 进行条件性缺失除了在 Meis1 突变体中始终诱导肾小管损伤标志物肾损伤分子-1 (Kim-1) 外,没有表型。对 Kim-1 表达的进一步检查显示 Kim-1 和 Meis1 之间存在连锁不平衡,以至于 Meis1 突变体携带更长的 BALB/c Kim-1 等位基因。出乎意料的是,我们报告说这种 Kim-1 等位基因在野生型 BALB/c 小鼠中基线表达,没有任何相关异常,包括文献预测的长期纤维化。我们得出的结论是,Meis1 特异性地在小鼠和人类肾脏的基质和肌成纤维细胞中表达,它不是肾脏发育、疾病或衰老所必需的,并且 BALB/c 小鼠出乎意料地在没有其他肾脏异常的情况下基线表达 Kim-1 蛋白。