Tsuchida K, Arai K Y, Kuramoto Y, Yamakawa N, Hasegawa Y, Sugino H
Institute for Enzyme Research, University of Tokushima, 3-18-15 Kuramoto, Tokushima 770-8503, Japan.
J Biol Chem. 2000 Dec 29;275(52):40788-96. doi: 10.1074/jbc.M006114200.
Follistatin is an activin-binding protein that prevents activin from binding to its receptors and neutralizes its activity. Follistatin also binds bone morphogenetic proteins (BMPs). In this study, we report the identification of a novel follistatin-like protein from mouse. The mouse cDNA encodes a 256-residue precursor and most likely a mouse homologue of human FLRG, which was found at the breakpoint of the chromosomal rearrangement in a B-cell line. Whereas follistatin has three follistatin domains, which are presumed to be growth factor binding motifs, FLRG possesses only two follistatin domains. Northern blotting revealed that mRNAs for FLRG were abundantly expressed in heart, lung, kidney, and testis in mouse. The recombinant mouse FLRG proteins were found to have binding activity for both activin and bone morphogenetic protein-2. Like follistatin, FLRG has higher affinity for activin than for BMP-2. The FLRG protein inhibited activin-induced and BMP-2-induced transcriptional responses in a dose-dependent manner. Glutathione S-transferase fusion proteins encoding various regions of FLRG were produced and studied. Ligand blotting using (125)I-activin revealed that the COOH-terminal region containing the second follistatin domain was able to bind activin. Our finding implies that cellular signaling by activin and BMPs is tightly regulated by multiple members of the follistatin family.
卵泡抑素是一种激活素结合蛋白,可阻止激活素与其受体结合并中和其活性。卵泡抑素还能结合骨形态发生蛋白(BMPs)。在本研究中,我们报告了从小鼠中鉴定出一种新型卵泡抑素样蛋白。小鼠cDNA编码一个含256个氨基酸残基的前体,很可能是人类FLRG的小鼠同源物,后者在一个B细胞系的染色体重排断点处被发现。卵泡抑素具有三个卵泡抑素结构域,推测为生长因子结合基序,而FLRG仅拥有两个卵泡抑素结构域。Northern印迹分析显示,FLRG的mRNA在小鼠的心脏、肺、肾脏和睾丸中大量表达。发现重组小鼠FLRG蛋白对激活素和骨形态发生蛋白-2均具有结合活性。与卵泡抑素一样,FLRG对激活素的亲和力高于对BMP-2的亲和力。FLRG蛋白以剂量依赖的方式抑制激活素诱导和BMP-2诱导的转录反应。制备并研究了编码FLRG不同区域的谷胱甘肽S-转移酶融合蛋白。使用(125)I-激活素进行的配体印迹分析表明,包含第二个卵泡抑素结构域的COOH末端区域能够结合激活素。我们的发现表明,激活素和BMPs的细胞信号传导受到卵泡抑素家族多个成员的严格调控。