Struhl G, Adachi A
Department of Genetics and Development, Howard Hughes Medical Institute, Columbia University, College of Physicians and Surgeons, New York, New York 10032, USA.
Mol Cell. 2000 Sep;6(3):625-36. doi: 10.1016/s1097-2765(00)00061-7.
Ligand binding to receptors of the LIN-12/Notch family causes at least two proteolytic cleavages: one between the extracellular and transmembrane domains, and the other within the transmembrane domain. The transmembrane cleavage depends on Presenilin, a protein also required for transmembrane cleavage of beta-APP. Here, we have assayed the substrate requirements for Presenilin-dependent processing of Notch and other type I transmembrane proteins in vivo. We find that the Presenilin-dependent cleavage does not depend critically on the recognition of particular sequences in these proteins but rather on the size of the extracellular domain: the smaller the size, the greater the efficiency of cleavage. Hence, Notch, beta-APP, and perhaps other proteins may be targeted for Presenilin-mediated transmembrane cleavage by upstream processing events that sever the extracellular domain from the rest of the protein.
配体与LIN-12/Notch家族的受体结合会引发至少两次蛋白水解切割:一次在细胞外结构域和跨膜结构域之间,另一次在跨膜结构域内。跨膜切割依赖于早老素,它也是β-淀粉样前体蛋白(β-APP)跨膜切割所必需的一种蛋白质。在此,我们检测了体内早老素依赖的Notch及其他I型跨膜蛋白加工的底物需求。我们发现,早老素依赖的切割并不关键地取决于对这些蛋白质中特定序列的识别,而是取决于细胞外结构域的大小:其尺寸越小,切割效率越高。因此,Notch、β-APP以及或许其他蛋白质可能会通过将细胞外结构域从蛋白质其余部分切断的上游加工事件,成为早老素介导的跨膜切割的靶点。