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Podocyte-specific expression of tamoxifen-inducible Cre recombinase in mice.

机译:他莫昔芬诱导的Cre重组酶在小鼠中的足细胞特异性表达。

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BACKGROUND: Podocytes play an important role in maintaining normal glomerular function. A podocyte-specific conditional knockout technology has been established by the use of transgenic mice expressing a podocyte-specific Cre recombinase to clarify the role of genes expressed in the podocytes. However, it may be difficult to examine the role of genes in certain pathologic conditions using conventional podocyte-specific knockout mice because they may be embryonically lethal or exhibit congenital renal abnormality. METHODS: To introduce a temporal control in the genetic experiments targeting the podocyte, we constructed tamoxifen-inducible Cre recombinase (CreER(T2)) transgenic mice under the control of podocyte-specific promoter, 2.5-kb fragment of the human podocin (NPHS2) gene. The specificity and efficiency of Cre activity were examined by crossing NPHS2-CreER(T2) with the ROSA26 reporter (R26R) mouse in which a floxed-stop cassette has been placed upstream of the beta-galactosidase gene. Four-week-old double-mutant mice (NPHS2-CreER(T2)/R26R) were intraperitoneally administered with 0.5 mg of 4-hydroxytamoxifen (4-OHT) for three consecutive days. RESULTS: NPHS2-CreER(T2)/R26R treated with 4-OHT expressed beta-galactosidase specifically in 85% of the podocytes in glomeruli. Expression of Cre recombinase mRNA was mostly restricted to the kidney, especially in glomeruli. CONCLUSIONS: In conclusion, we have successfully generated podocyte-specific inducible Cre transgenic mice by tamoxifen administration. These mice allow us to disrupt the genes specifically in the podocytes after birth.
机译:背景:足细胞在维持正常的肾小球功能中起重要作用。已经通过使用表达足细胞特异性Cre重组酶的转基因小鼠来建立足细胞特异性条件敲除技术,以阐明足细胞中表达的基因的作用。但是,使用常规的足细胞特异性基因敲除小鼠可能难以检查基因在某些病理条件下的作用,因为它们可能具有胚胎致死性或表现为先天性肾脏异常。方法:为了在针对足细胞的遗传实验中引入时间控制,我们构建了他莫昔芬诱导的Cre重组酶(CreER(T2))转基因小鼠,该细胞由足细胞特异性启动子控制,人Podocin(NPHS2)的2.5 kb片段基因。通过将NPHS2-CreER(T2)与ROSA26报告基因(R26R)小鼠杂交,检查了Cre活性的特异性和效率,其中ROSK26报告基因(flox-stop box)已放置在β-半乳糖苷酶基因的上游。对四周大的双突变小鼠(NPHS2-CreER(T2)/ R26R)连续三天腹膜内给予0.5 mg 4-羟基他莫昔芬(4-OHT)。结果:用4-OHT处理的NPHS2-CreER(T2)/ R26R在肾小球的足细胞的85%中特异性表达了β-半乳糖苷酶。 Cre重组酶mRNA的表达主要限于肾脏,尤其是肾小球。结论:总之,我们已经通过他莫昔芬给药成功地产生了足细胞特异性可诱导的Cre转基因小鼠。这些小鼠使我们能够在出生后破坏足细胞中的基因。

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