Yamada Sachiko, Nakamura Jin, Asada Misako, Takase Masayuki, Matsusaka Taiji, Iguchi Taku, Yamada Ryo, Tanaka Mari, Higashi Atsuko Y, Okuda Tomohiko, Asada Nariaki, Fukatsu Atsushi, Kawachi Hiroshi, Graf Daniel, Muso Eri, Kita Toru, Kimura Takeshi, Pastan Ira, Economides Aris N, Yanagita Motoko
Department of Nephrology, Graduate School of Medicine, Kyoto University, Kyoto, Kyoto, Japan.
Department of Internal Medicine, Tokai University School of Medicine, Isehara, Kanagawa, Japan.
PLoS One. 2014 Feb 25;9(2):e89135. doi: 10.1371/journal.pone.0089135. eCollection 2014.
Podocyte injury is the first step in the progression of glomerulosclerosis. Previous studies have demonstrated the beneficial effect of bone morphogenetic protein 7 (Bmp7) in podocyte injury and the existence of native Bmp signaling in podocytes. Local activity of Bmp7 is controlled by cell-type specific Bmp antagonists, which inhibit the binding of Bmp7 to its receptors. Here we show that the product of Twisted gastrulation (Twsg1), a Bmp antagonist, is the central negative regulator of Bmp function in podocytes and that Twsg1 null mice are resistant to podocyte injury. Twsg1 was the most abundant Bmp antagonist in murine cultured podocytes. The administration of Bmp induced podocyte differentiation through Smad signaling, whereas the simultaneous administration of Twsg1 antagonized the effect. The administration of Bmp also inhibited podocyte proliferation, whereas simultaneous administration of Twsg1 antagonized the effect. Twsg1 was expressed in the glomerular parietal cells (PECs) and distal nephron of the healthy kidney, and additionally in damaged glomerular cells in a murine model of podocyte injury. Twsg1 null mice exhibited milder hypoalbuminemia and hyperlipidemia, and milder histological changes while maintaining the expression of podocyte markers during podocyte injury model. Taken together, our results show that Twsg1 plays a critical role in the modulation of protective action of Bmp7 on podocytes, and that inhibition of Twsg1 is a promising means of development of novel treatment for podocyte injury.
足细胞损伤是肾小球硬化进展的第一步。先前的研究已证明骨形态发生蛋白7(Bmp7)在足细胞损伤中的有益作用以及足细胞中存在天然Bmp信号传导。Bmp7的局部活性受细胞类型特异性Bmp拮抗剂控制,这些拮抗剂抑制Bmp7与其受体的结合。在此我们表明,Bmp拮抗剂扭结原肠胚形成蛋白(Twsg1)的产物是足细胞中Bmp功能的核心负调节因子,且Twsg1基因敲除小鼠对足细胞损伤具有抗性。Twsg1是小鼠培养足细胞中最丰富的Bmp拮抗剂。给予Bmp通过Smad信号传导诱导足细胞分化,而同时给予Twsg1则拮抗该效应。给予Bmp还抑制足细胞增殖,而同时给予Twsg1则拮抗该效应。Twsg1在健康肾脏的肾小球壁层细胞(PEC)和远端肾单位中表达,在足细胞损伤小鼠模型的受损肾小球细胞中也有表达。在足细胞损伤模型中,Twsg1基因敲除小鼠表现出较轻的低白蛋白血症和高脂血症,以及较轻的组织学变化,同时维持足细胞标志物的表达。综上所述,我们的结果表明Twsg1在调节Bmp7对足细胞的保护作用中起关键作用,并且抑制Twsg1是开发足细胞损伤新疗法的一种有前景的手段。