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The Notch ligand Delta1 is sequentially cleaved by an ADAM protease and gamma-secretase

机译:Notch配体Delta1被ADAM蛋白酶和γ-分泌酶顺序切割

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Notch signaling is involved in numerous cell fate decisions in invertebrates and vertebrates. The Notch receptor is a type I transmembrane (TM) protein that undergoes two proteolytic steps after ligand binding, first by an ADAM (a distintegrin and metalloprotease) in the extracellular region, followed by gamma-secretase-mediated cleavage inside the TM domain. We demonstrate here that the murine ligand Delta1 (Dll1) undergoes the same sequence of cleavages, in an apparently signal-independent manner. Identification of the ADAM-mediated shedding site localized 10 aa N-terminal to the TM domain has enabled us to generate a noncleavable mutant. Kuzbanian/ADAM10 is involved in this processing event, but other proteases can probably substitute for it. We then show that Dll1 is part of a high-molecular-weight complex containing presenilin1 and undergoes further cleavage by a gamma-secretase-like activity, therefore releasing the intracellular domain that localizes in part to the nucleus. Using the shedding-resistant mutant, we demonstrate that this gamma-secretase cleavage depends on prior ectodomain shedding. Therefore Dill is a substrate for regulated intramembrane proteolysis, and its intracellular region possibly fulfills a specific function in the nucleus. [References: 39]
机译:Notch信号参与无脊椎动物和脊椎动物的众多细胞命运决策。 Notch受体是一种I型跨膜(TM)蛋白,在配体结合后经历两个蛋白水解步骤,首先是在胞外区域通过ADAM(歧化蛋白和金属蛋白酶),然后是TM结构域内部的γ-分泌酶介导的裂解。我们在这里证明,鼠配体Delta1(Dll1)经历了相同的裂解序列,以明显的信号独立方式进行。 ADAM介导的脱落位点的鉴定位于TM结构域的10个氨基酸N末端使我们能够产生不可切割的突变体。 Kuzbanian / ADAM10参与了此加工过程,但其他蛋白酶可能可以替代它。然后,我们显示Dll1是含有presenilin1的高分子量复合物的一部分,并通过类似γ-分泌酶的活性进行进一步切割,因此释放了部分定位于细胞核的细胞内结构域。使用抗脱落的突变体,我们证明了这种γ-分泌酶的裂解取决于先前的胞外域脱落。因此,Dill是用于调节膜内蛋白水解的底物,其细胞内区域可能在细胞核中履行特定功能。 [参考:39]

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