Endoglin modulates Smad-dependent and Smad-independent pathways to regulate proliferation, migration and profibrogenic responses in myofibroblasts
Elena I. Kovalenko, Lidia Tihaa, SK Meurer, Ralf Weiskirchen
Abstract
Elena I. Kovalenko, Lidia Tihaa, SK Meurer, Ralf Weiskirchen
Abstract
Aims: TGF-β1-mediated transdifferentiation of hepatic stellate cells (HSC) to myofibroblast-like cells (MFB) is the key event to initiate the fibrogenic program in the liver. This comprises upregulation of contractile elements, e.g. α-SMA, increased expression of collagen type I and connective tissue growth factor (CTGF) as well as a higher proliferation and migration rate [1]. To determine the factors that govern myoblast conversion upon TGF-β1-treatment in more detail, we analyzed a model system for TGF-β1-signaling, i.e. myoblasts, which display a myofibroblast-like phenotype when cultured in the presence of TGF-β1 [2]. Methods and Results: Endoglin, a co-receptor for TGF-β1, is highly expressed in HSC and MFB [3] and antagonizes TGF-β1 signals [4]. We compared responses of parental myoblasts with that of myoblasts stably overexpressing endoglin [5] and found that endoglin blocks basal and TGF-β1-induced synthesis of collagen type I, fibronectin and CTGF. Myoblasts expressing endoglin show no myogenic differentiation, an effect also observed when parental cells are cultured in the presence of TGF-β1 [2]. In contrast, the TGF-β1-mediated myofibroblastic differentiation is also blocked as shown by the abrogation of α-SMA expression. In addition, we found that endoglin induces the expression of Id2, which was previously shown to reduce fibrosis in an animal model of experimental liver injury [6]. The negative impact of TGF-β1 on proliferation and migration is counteracted by endoglin. Moreover, type I receptor blockers, i.e. SB431542 and Dorsomorphin, have only a minor impact on the observed endoglin effects. Conclusions: The impact of endoglin on myofibroblast differentiation and profibrogenic responses characterizes endoglin as a negative regulator of TGF-β1-signaling. Therefore, the expression of endoglin in transdifferentiating HSC is potentially a mechanism by which the cell tries to counteract the fibrogenic processes that are mostly driven by TGF-β1. Literatur: [1] Gressner OA, Rizk MS, Kovalenko E, Weiskirchen R, Gressner AM. J Gastroenterol Hepatol. (2008) 23, 1024-1035 [2] Scherner O, Meurer SK, Tihaa L, Gressner AM, and Weiskirchen R. J Biol Chem. (2007) 282, 13934-13943 [3] Meurer SK, Tihaa L, Lahme B, Gressner AM, Weiskirchen R. J Biol Chem. (2005) 280, 3078-3087 [4] Lebrin F, Goumans MJ, Jonker L, Carvalho RL, Valdimarsdottir G, Thorikay M, Mummery C, Arthur HM, ten Dijke P. EMBO J. (2004) 23, 4018-4028 [5] Letamendía A, Lastres P, Botella LM, Raab U, Langa C, Velasco B, Attisano L, Bernabeu C. J Biol Chem. (1998) 273, 33011-33019 [6] Kinoshita K, Iimuro Y, Otogawa K, Saika S, Inagaki Y, Nakajima Y, Kawada N, Fujimoto J, Friedman SL, Ikeda K. GUT (2007) 56, 706-714 TGF-beta - antagonism - endoglin - hepatic stellate cells - myoblasts - signaling
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Aims: TGF-β1-mediated transdifferentiation of hepatic stellate cells (HSC) to myofibroblast-like cells (MFB) is the key event to initiate the fibrogenic program in the liver. This comprises upregulation of contractile elements, e.g. α-SMA, increased expression of collagen type I and connective tissue growth factor (CTGF) as well as a higher proliferation and migration rate [1]. To determine the factors that govern myoblast conversion upon TGF-β1-treatment in more detail, we analyzed a model system for TGF-β1-signaling, i.e. myoblasts, which display a myofibroblast-like phenotype when cultured in the presence of TGF-β1 [2]. Methods and Results: Endoglin, a co-receptor for TGF-β1, is highly expressed in HSC and MFB [3] and antagonizes TGF-β1 signals [4]. We compared responses of parental myoblasts with that of myoblasts stably overexpressing endoglin [5] and found that endoglin blocks basal and TGF-β1-induced synthesis of collagen type I, fibronectin and CTGF. Myoblasts expressing endoglin show no myogenic differentiation, an effect also observed when parental cells are cultured in the presence of TGF-β1 [2]. In contrast, the TGF-β1-mediated myofibroblastic differentiation is also blocked as shown by the abrogation of α-SMA expression. In addition, we found that endoglin induces the expression of Id2, which was previously shown to reduce fibrosis in an animal model of experimental liver injury [6]. The negative impact of TGF-β1 on proliferation and migration is counteracted by endoglin. Moreover, type I receptor blockers, i.e. SB431542 and Dorsomorphin, have only a minor impact on the observed endoglin effects. Conclusions: The impact of endoglin on myofibroblast differentiation and profibrogenic responses characterizes endoglin as a negative regulator of TGF-β1-signaling. Therefore, the expression of endoglin in transdifferentiating HSC is potentially a mechanism by which the cell tries to counteract the fibrogenic processes that are mostly driven by TGF-β1. Literatur: [1] Gressner OA, Rizk MS, Kovalenko E, Weiskirchen R, Gressner AM. J Gastroenterol Hepatol. (2008) 23, 1024-1035 [2] Scherner O, Meurer SK, Tihaa L, Gressner AM, and Weiskirchen R. J Biol Chem. (2007) 282, 13934-13943 [3] Meurer SK, Tihaa L, Lahme B, Gressner AM, Weiskirchen R. J Biol Chem. (2005) 280, 3078-3087 [4] Lebrin F, Goumans MJ, Jonker L, Carvalho RL, Valdimarsdottir G, Thorikay M, Mummery C, Arthur HM, ten Dijke P. EMBO J. (2004) 23, 4018-4028 [5] Letamendía A, Lastres P, Botella LM, Raab U, Langa C, Velasco B, Attisano L, Bernabeu C. J Biol Chem. (1998) 273, 33011-33019 [6] Kinoshita K, Iimuro Y, Otogawa K, Saika S, Inagaki Y, Nakajima Y, Kawada N, Fujimoto J, Friedman SL, Ikeda K. GUT (2007) 56, 706-714 TGF-beta - antagonism - endoglin - hepatic stellate cells - myoblasts - signaling
Key concepts: Transdifferentiation, Myofibroblast, CTGF, SMAD, Hepatic stellate cell, Transforming growth factor, Downregulation and upregulation, Cell biology