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Role of dimerization and substrate exclusion in the regulation of bone morphogenetic protein-1 and mammalian tolloid

机译:二聚化和底物排斥在调节骨形态发生蛋白-1和哺乳动物胶体中的作用

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摘要

The bone morphogenetic protein (BMP)-1/tolloid metalloproteinases are evolutionarily conserved enzymes that are fundamental to dorsal–ventral patterning and tissue morphogenesis. The lack of knowledge regarding how these proteinases recognize and cleave their substrates represents a major hurdle to understanding tissue assembly and embryonic patterning. Although BMP-1 and mammalian tolloid (mTLD) are splice variants, it is puzzling why BMP-1, which lacks 3 of the 7 noncatalytic domains present in all other family members, is the most effective proteinase. Using a combination of single-particle electron microscopy, small-angle X-ray scattering, and other biophysical measurements in solution, we show that mTLD, but not BMP-1, forms a calcium-ion-dependent dimer under physiological conditions. Using a domain deletion approach, we provide evidence that EGF2, which is absent in BMP-1, is critical to the formation of the dimer. Based on a combination of structural and functional data, we propose that mTLD activity is regulated by a substrate exclusion mechanism. These results provide a mechanistic insight into how alternative splicing of the Bmp1 gene produces 2 proteinases with differing biological activities and have broad implications for regulation of BMP-1/mTLD and related proteinases during BMP signaling and tissue assembly.
机译:骨形态发生蛋白(BMP)-1 /环状金属蛋白酶是进化保守的酶,对背腹模式和组织形态发生至关重要。缺乏有关这些蛋白酶如何识别和切割其底物的知识,是理解组织装配和胚胎模式的主要障碍。尽管BMP-1和哺乳动物Tolloid(mTLD)是剪接变体,但令人困惑的是为什么缺少所有其他家族成员中存在的7个非催化域中的3个的BMP-1是最有效的蛋白酶。结合使用单粒子电子显微镜,小角度X射线散射和溶液中的其他生物物理测量,我们显示mTLD(而非BMP-1)在生理条件下形成了钙离子依赖性二聚体。使用域删除方法,我们提供证据证明BMP-1中不存在的EGF2对二聚体的形成至关重要。基于结构和功能数据的组合,我们建议mTLD活性受底物排斥机制的调节。这些结果为Bmp1基因的选择性剪接如何产生2种具有不同生物学活性的蛋白酶提供了机械上的见解,并且在BMP信号传导和组织装配过程中对BMP-1 / mTLD和相关蛋白酶的调节具有广泛的意义。

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