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Notch诱导的Delta配体的蛋白水解和核定位。

Notch-induced proteolysis and nuclear localization of the Delta ligand.

作者信息

Bland Christin E, Kimberly Priscilla, Rand Matthew D

机构信息

Department of Anatomy and Neurobiology, College of Medicine, University of Vermont, Burlington 05405, USA.

出版信息

J Biol Chem. 2003 Apr 18;278(16):13607-10. doi: 10.1074/jbc.C300016200. Epub 2003 Feb 18.

Abstract

The Delta protein is a single-pass transmembrane ligand for the Notch family of receptors. Delta binding to Notch invokes regulated intramembrane proteolysis and nuclear translocation of the Notch intracellular domain. Delta is proteolytically processed at two sites, Ala(581) and Ala(593) in the juxtamembrane and transmembrane domains, respectively (Mishra-Gorur, K., Rand, M. D., Perez-Villamil, B., and Artavanis-Tsakonas, S. (2002) J. Cell Biol. 159, 313-324). Controversy over the role of Delta processing in propagating Notch signals has stemmed from conflicting reports on the activity or inactivity of soluble extracellular domain products of Delta. We have examined Delta proteolysis in greater detail and report that Delta undergoes three proteolytic cleavages in the region of the juxtamembrane and transmembrane domains. Only one of these cleavages, analogous to cleavage at Ala(581), is dependent on the Kuzbanian ADAM metalloprotease. The two additional cleavages correspond to the previously described cleavage at Ala(593) and a novel unidentified site within or close to the transmembrane domain. Delta processing is up-regulated in co-cultures with Notch-expressing cells and is similarly induced by p-aminophenylmercuric acetate, a well documented activator of metalloproteases. Furthermore, expression of a truncated intracellular isoform of Delta shows prominent nuclear localization. Altogether, these data demonstrate a role for Notch in inducing Delta proteolysis and implicate a nuclear function for Delta, consistent with a model of bi-directional signaling through Notch-Delta interactions.

摘要

Delta蛋白是Notch受体家族的单次跨膜配体。Delta与Notch结合会引发Notch胞内结构域的调节性膜内蛋白水解和核转位。Delta在两个位点进行蛋白水解加工,分别是近膜结构域和跨膜结构域中的Ala(581)和Ala(593)(Mishra-Gorur, K., Rand, M. D., Perez-Villamil, B., and Artavanis-Tsakonas, S. (2002) J. Cell Biol. 159, 313 - 324)。关于Delta加工在Notch信号传导中的作用存在争议,这源于关于Delta可溶性细胞外结构域产物活性或无活性的相互矛盾的报道。我们更详细地研究了Delta的蛋白水解过程,并报告Delta在近膜结构域和跨膜结构域区域经历了三次蛋白水解切割。这些切割中只有一次,类似于在Ala(581)处的切割,依赖于Kuzbanian ADAM金属蛋白酶。另外两次切割分别对应于先前描述的在Ala(593)处的切割以及跨膜结构域内或其附近一个新的未确定位点的切割。Delta加工在与表达Notch的细胞共培养时上调,并且同样被对氨基苯基汞乙酸盐(一种有充分记录的金属蛋白酶激活剂)诱导。此外,Delta截短的细胞内异构体的表达显示出明显的核定位。总之,这些数据证明了Notch在诱导Delta蛋白水解中的作用,并暗示了Delta的核功能,这与通过Notch-Delta相互作用进行双向信号传导的模型一致。

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