College of Veterinary Medicine, Western University of Health Sciences, Pomona, CA 91766, USA.
College of Pharmacy, Western University of Health Sciences, Pomona, CA 91766, USA.
Int J Mol Sci. 2020 Sep 5;21(18):6498. doi: 10.3390/ijms21186498.
Activins transduce the TGF-β pathway through a heteromeric signaling complex consisting of type I and type II receptors, and activins also inhibit bone morphogenetic protein (BMP) signaling mediated by type I receptor ALK2. Recent studies indicated that activin A cross-activates the BMP pathway through ALK2, a mutation associated with Fibrodysplasia Ossificans Progressiva (FOP). How activin A inhibits ALK2WT-mediated BMP signaling but activates ALK2-mediated BMP signaling is not well understood, and here we offer some insights into its molecular mechanism. We first demonstrated that among four BMP type I receptors, ALK2 is the only subtype able to mediate the activin A-induced BMP signaling upon the dissociation of FKBP12. We further showed that BMP4 does not cross-signal TGF-β pathway upon FKBP12 inhibition. In addition, although the roles of type II receptors in the ligand-independent BMP signaling activated by FOP-associated mutant ALK2 have been reported, their roles in activin A-induced BMP signaling remains unclear. We demonstrated in this study that the known type II BMP receptors contribute to activin A-induced BMP signaling through their kinase activity. Together, the current study provided important mechanistic insights at the molecular level into further understanding physiological and pathophysiological BMP signaling.
激活素通过由 I 型和 II 型受体组成的异源信号复合物转导 TGF-β 途径,激活素还抑制 I 型受体 ALK2 介导的骨形态发生蛋白 (BMP) 信号。最近的研究表明,激活素 A 通过与纤维发育不良性骨化进展症 (FOP) 相关的突变体 ALK2 交叉激活 BMP 途径。激活素 A 如何抑制 ALK2WT 介导的 BMP 信号但激活 ALK2 介导的 BMP 信号尚不清楚,我们在这里提供了其分子机制的一些见解。我们首先证明,在四个 BMP I 型受体中,ALK2 是唯一能够在 FKBP12 解离时介导激活素 A 诱导的 BMP 信号的亚型。我们进一步表明,BMP4 在 FKBP12 抑制时不会交叉信号转导 TGF-β 途径。此外,尽管已经报道了 II 型受体在 FOP 相关突变体 ALK2 激活的配体非依赖性 BMP 信号中的作用,但它们在激活素 A 诱导的 BMP 信号中的作用仍不清楚。我们在这项研究中证明,已知的 II 型 BMP 受体通过其激酶活性有助于激活素 A 诱导的 BMP 信号。总之,本研究为进一步理解生理和病理生理 BMP 信号提供了分子水平上的重要机制见解。