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(前)肾素受体在雷帕霉素诱导K562红白血病细胞红系分化过程中的表达及其对红系分化可能的双重作用

Expression of (Pro)renin Receptor During Rapamycin-Induced Erythropoiesis in K562 Erythroleukemia Cells and Its Possible Dual Actions on Erythropoiesis.

作者信息

Kaneko Kiriko, Ohba Koji, Hirose Takuo, Totsune Kazuhito, Furuyama Kazumichi, Takahashi Kazuhiro

机构信息

Department of Endocrinology and Applied Medical Science, Tohoku University Graduate School of Medicine.

出版信息

Tohoku J Exp Med. 2017 Jan;241(1):35-43. doi: 10.1620/tjem.241.35.

Abstract

(Pro)renin receptor ((P)RR), a specific receptor for renin and prorenin, is expressed in erythroblastic cells. (P)RR has multiple biological actions: prorenin activation, stimulation of the intracellular signaling including extracellular signal-regulated kinases, and functional complex formation with vacuolar H-ATPase (v-ATPase). However, the functional implication of (P)RR in erythroblast cells has not been clarified. The aim of the present study was to clarify changes of (P)RR expression during erythropoiesis and a role of (P)RR in the heme synthesis. (P)RR expression was studied during rapamycin-induced erythropoiesis in a human erythroleukemia cell line, K562. Treatment with rapamycin (100 nM) for 48 hours significantly increased %number of hemoglobin-producing cells, γ-globin mRNA levels, erythroid specific 5-aminolevulinate synthase (ALAS2) mRNA levels, and heme content in K562 cells. Both (P)RR protein and mRNA levels increased about 1.4-fold during rapamycin-induced erythropoiesis. Suppression of (P)RR expression by (P)RR-specific small interference RNA increased ALAS2 mRNA levels about 1.6-fold in K562 cells, compared to control using scramble RNA, suggesting that (P)RR may down-regulate ALAS2 expression. By contrast, treatment with bafilomycin A1, an inhibitor of v-ATPase, decreased greatly % number of hemoglobin-producing cells and heme content in K562 cells, indicating that the v-ATPase function is essential for hemoglobinization and erythropoiesis. Treatment with bafilomycin A1 increased (P)RR protein and mRNA levels. In conclusion, we propose that (P)RR has dual actions on erythropoiesis: the promotion of erythropoiesis via v-ATPase function and the down-regulation of ALAS2 mRNA expression. Thus, (P)RR may contribute to the homeostatic control of erythropoiesis.

摘要

(前)肾素受体((P)RR)是肾素和前肾素的特异性受体,在成红细胞中表达。(P)RR具有多种生物学作用:激活前肾素、刺激包括细胞外信号调节激酶在内的细胞内信号传导以及与液泡H⁺-ATP酶(v-ATPase)形成功能复合物。然而,(P)RR在成红细胞中的功能意义尚未阐明。本研究的目的是阐明(P)RR在红细胞生成过程中的表达变化以及(P)RR在血红素合成中的作用。在人红白血病细胞系K562中,研究了雷帕霉素诱导红细胞生成过程中(P)RR的表达。用雷帕霉素(100 nM)处理48小时可显著增加K562细胞中产生血红蛋白的细胞百分比、γ-珠蛋白mRNA水平、红细胞特异性5-氨基酮戊酸合酶(ALAS2)mRNA水平以及血红素含量。在雷帕霉素诱导的红细胞生成过程中,(P)RR蛋白和mRNA水平均增加了约1.4倍。与使用乱序RNA作为对照相比,用(P)RR特异性小干扰RNA抑制(P)RR表达可使K562细胞中ALAS2 mRNA水平增加约1.6倍,这表明(P)RR可能下调ALAS2表达。相比之下,用v-ATPase抑制剂巴弗洛霉素A1处理可显著降低K562细胞中产生血红蛋白的细胞百分比和血红素含量,表明v-ATPase功能对于血红蛋白化和红细胞生成至关重要。用巴弗洛霉素A1处理可增加(P)RR蛋白和mRNA水平。总之,我们提出(P)RR对红细胞生成具有双重作用:通过v-ATPase功能促进红细胞生成以及下调ALAS2 mRNA表达。因此,(P)RR可能有助于红细胞生成的稳态控制。

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