Sangadala Sreedhara, Boden Scott D, Viggeswarapu Manjula, Liu Yunshan, Titus Louisa
Atlanta Veterans Affairs Medical Center and the Department of Orthopaedic Surgery, Emory University School of Medicine, Atlanta, Georgia 30329.
Atlanta Veterans Affairs Medical Center and the Department of Orthopaedic Surgery, Emory University School of Medicine, Atlanta, Georgia 30329.
J Biol Chem. 2006 Jun 23;281(25):17212-17219. doi: 10.1074/jbc.M511013200. Epub 2006 Apr 11.
Development and repair of the skeletal system and other organs is highly dependent on precise regulation of bone morphogenetic proteins (BMPs), their receptors, and their intracellular signaling proteins known as Smads. The use of BMPs clinically to induce bone formation has been limited in part by the requirement of much higher doses of recombinant proteins in primates than were needed in cell culture or rodents. Therefore, control of cellular responsiveness to BMPs is now a critical area that is poorly understood. We determined that LMP-1, a LIM domain protein capable of inducing de novo bone formation, interacts with Smurf1 (Smad ubiquitin regulatory factor 1) and prevents ubiquitination of Smads. In the region of LMP responsible for bone formation, there is a motif that directly interacts with the Smurf1 WW2 domain and can effectively compete with Smad1 and Smad5 for binding. We have shown that small peptides containing this motif can mimic the ability to block Smurf1 from binding Smads. This novel interaction of LMP-1 with the WW2 domain of Smurf1 to block Smad binding results in increased cellular responsiveness to exogenous BMP and demonstrates a novel regulatory mechanism for the BMP signaling pathway.
骨骼系统和其他器官的发育与修复高度依赖于骨形态发生蛋白(BMPs)、其受体以及被称为Smads的细胞内信号蛋白的精确调控。临床上使用BMPs诱导骨形成受到一定限制,部分原因是灵长类动物所需的重组蛋白剂量比细胞培养或啮齿动物中所需的剂量高得多。因此,控制细胞对BMPs的反应性目前是一个了解甚少的关键领域。我们确定,LMP-1(一种能够诱导新生骨形成的含LIM结构域蛋白)与Smurf1(Smad泛素调节因子1)相互作用,并阻止Smads的泛素化。在LMP负责骨形成的区域,存在一个基序,它直接与Smurf1的WW2结构域相互作用,并能有效竞争与Smad1和Smad5的结合。我们已经表明,含有该基序的小肽能够模拟阻止Smurf1与Smads结合的能力。LMP-1与Smurf1的WW2结构域之间这种新型的相互作用以阻止Smad结合,导致细胞对外源性BMP的反应性增加,并证明了BMP信号通路的一种新型调控机制。