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首页> 外文期刊>Development >Gamma-secretase activity is dispensable for mesenchyme-to-epithelium transition but required for podocyte and proximal tubule formation in developing mouse kidney.
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Gamma-secretase activity is dispensable for mesenchyme-to-epithelium transition but required for podocyte and proximal tubule formation in developing mouse kidney.

机译:γ-分泌酶活性对于间质到上皮的过渡是必需的,但对于发育中的小鼠肾脏中的足细胞和近端小管形成是必需的。

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Notch signaling is involved in pronephros development in Xenopus and in glomerulogenesis in mice. However, owing to early lethality in mice deficient for some Notch pathway genes and functional redundancy for others, a role for Notch signaling during early stages of metanephric development has not been defined. Using an antibody specific to the N-terminal end of gamma-secretase-cleaved Notch1, we found evidence for Notch1 activation in the comma and S-shaped bodies of the mouse metanephros. We therefore cultured mouse metanephroi in the presence of a gamma-secretase inhibitor, N-S-phenyl-glycine-t-butyl ester (DAPT), to block Notch signaling. We observed slightly reduced ureteric bud branching but normal mesenchymal condensation and expression of markers indicating that mesenchyme induction had occurred. However, fewer renal epithelial structures were observed, with a severe deficiency in proximal tubules and glomerular podocytes, which are derived from cells in which activated Notch1 is normally present. Distal tubules were present but in reduced numbers, and this was accompanied by an increase in intervening, non-epithelial cells. After a transient 3-day exposure to DAPT, proximal tubules expanded, but podocyte differentiation failed to recover after removal of DAPT. These observations suggest that gamma-secretase activity, probably through activation of Notch, is required for maintaining a competent progenitor pool as well as for determining the proximal tubule and podocyte fates.
机译:Notch信号与非洲爪蟾的前肾发育和小鼠的肾小球发生有关。然而,由于缺乏某些Notch途径基因的小鼠的早期致死率和其他功能的冗余,因此尚未确定在后肾发育早期Notch信号传导的作用。使用特异性针对γ-分泌酶切割的Notch1 N末端的抗体,我们发现了小鼠后肾的逗号和S形体中Notch1激活的证据。因此,我们在存在γ-分泌酶抑制剂N-S-苯基-甘氨酸叔丁酯(DAPT)的情况下培养了小鼠肾上腺素,以阻断Notch信号传导。我们观察到输尿管芽分支略有减少,但正常的间充质凝结和标志物的表达表明已经发生了间充质。然而,观察到较少的肾上皮结构,近端肾小管和肾小球足细胞严重缺乏,这些肾小管和肾小球足细胞来源于正常存在活化的Notch1的细胞。存在远端小管,但数量减少,并且伴随着介入的非上皮细胞的增加。在短暂接触DAPT 3天后,近端小管扩张,但去除DAPT后足细胞分化未能恢复。这些观察结果表明,可能需要通过激活Notch来激活γ-分泌酶,以维持足够的祖细胞以及确定近端肾小管和足细胞的命运。

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