Harada Koichiro, Ogai Akiko, Takahashi Tomosaburo, Kitakaze Masafumi, Matsubara Hiroaki, Oh Hidemasa
Department of Experimental Therapeutics, Translational Research Center, Kyoto University Hospital, Kyoto 606-8507, Japan.
J Biol Chem. 2008 Sep 26;283(39):26705-13. doi: 10.1074/jbc.M801485200. Epub 2008 Jul 28.
Increasing evidence indicates that bone morphogenetic proteins (BMPs) are crucial for cardiac induction, specification, and development. Although signaling of BMPs is tightly regulated through soluble BMP-binding proteins, how they regulate BMP signaling during cardiac differentiation remains unknown. To identify molecules responsible for BMP signaling during early cardiomyocyte differentiation of P19 cells, cDNA subtraction was performed. We found a bimodal expression of the BMP-binding protein Crossveinless-2 (Cv2) during cardiomyocyte differentiation; Cv2 is temporally expressed earlier than cardiac transcription factors such as Nkx2.5 and Tbx5 and acts as a suppressor for BMP signaling in P19 cells. We established a P19 clonal cell line harboring a cardiac alpha-myosin heavy chain promoter-driven enhanced green fluorescent protein gene to monitor cardiac differentiation by flow cytometry. Treatment with BMP2 during the first 2 days of differentiation suppressed cardiomyocyte differentiation through activation of down-stream targets Smad1/5/8 protein and Id1 gene, whereas treatment with Cv2 conversely inhibited Smad1/5/8 activation and Id1 expression, leading to increased generation of cardiac cells. RNA interference-mediated knockdown (KD) of endogenous Cv2 showed increased Smad1/5/8 activation and impaired cardiomyocyte differentiation. Expression of cardiac mesoderm markers was reduced, whereas expression of Id1 and endoderm markers such as Sox7, Hnf4, and E-cadherin was induced in Cv2-kinase dead cells. These phenotypes were rescued by the addition of Cv2 protein to the culture media during the first 2 days of differentiation or co-culture with parental cells. These data suggest that Cv2 may specify cardiac mesodermal lineage through inhibition of BMP signaling at early stage of cardiogenesis.
越来越多的证据表明,骨形态发生蛋白(BMPs)对心脏诱导、特化和发育至关重要。尽管BMPs的信号传导通过可溶性BMP结合蛋白受到严格调控,但它们在心脏分化过程中如何调节BMP信号传导仍不清楚。为了鉴定在P19细胞早期心肌细胞分化过程中负责BMP信号传导的分子,我们进行了cDNA消减。我们发现BMP结合蛋白Crossveinless-2(Cv2)在心肌细胞分化过程中呈双峰表达;Cv2在时间上比心脏转录因子如Nkx2.5和Tbx5表达更早,并在P19细胞中作为BMP信号传导的抑制因子发挥作用。我们建立了一个携带心脏α-肌球蛋白重链启动子驱动的增强型绿色荧光蛋白基因的P19克隆细胞系,通过流式细胞术监测心脏分化。在分化的前两天用BMP2处理通过激活下游靶点Smad1/5/8蛋白和Id1基因抑制心肌细胞分化,而用Cv2处理则相反地抑制Smad1/5/8激活和Id1表达,导致心脏细胞生成增加。RNA干扰介导的内源性Cv2敲低显示Smad1/5/8激活增加且心肌细胞分化受损。在Cv2激酶失活的细胞中,心脏中胚层标志物的表达降低,而Id1以及内胚层标志物如Sox7、Hnf4和E-钙黏蛋白的表达被诱导。在分化的前两天向培养基中添加Cv2蛋白或与亲本细胞共培养可挽救这些表型。这些数据表明,Cv2可能在心脏发生的早期阶段通过抑制BMP信号传导来确定心脏中胚层谱系。