首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Structure of the Notch1-negative regulatory region: implications for normal activation and pathogenic signaling in T-ALL.
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Structure of the Notch1-negative regulatory region: implications for normal activation and pathogenic signaling in T-ALL.

机译:Notch1阴性调控区的结构:对T-ALL中正常激活和致病信号的影响。

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摘要

Proteolytic resistance of Notch prior to ligand binding depends on the structural integrity of a negative regulatory region (NRR) of the receptor that immediately precedes the transmembrane segment. The NRR includes the 3 Lin12/Notch repeats and the juxtamembrane heterodimerization domain, the region of Notch1 most frequently mutated in T-cell acute lymphoblastic leukemia lymphoma (T-ALL). Here, we report the x-ray structure of the Notch1 NRR in its autoinhibited conformation. A key feature of the Notch1 structure that maintains its closed conformation is a conserved hydrophobic plug that sterically occludes the metalloprotease cleavage site. Crystal packing interactions involving a highly conserved, exposed face on the third Lin12/Notch repeat suggest that this site may normally be engaged in intermolecular or intramolecular protein-protein interactions. The majority of known T-ALL-associated point mutations map to residues in the hydrophobic interior of the Notch1 NRR. A novel mutation (H1545P), which alters a residue at the crystal-packing interface, leads to ligand-independent increases in signaling in reporter gene assays despite only mild destabilization of the NRR, suggesting that it releases the autoinhibitory clamp on the heterodimerization domain imposed by the Lin12/Notch repeats. The Notch1 NRR structure should facilitate a search for antibodies or compounds that stabilize the autoinhibited conformation.
机译:在配体结合之前,Notch的蛋白水解抗性取决于受体的负调节区(NRR)的结构完整性,该结构位于跨膜区段之前。 NRR包括3个Lin12 / Notch重复序列和近膜异二聚结构域,这是Notch1在T细胞急性淋巴细胞白血病淋巴瘤(T-ALL)中最常突变的区域。在这里,我们报告了Notch1 NRR在其自动抑制构象中的X射线结构。 Notch1结构保持其封闭构象的关键特征是一个保守的疏水性塞子,该塞子在空间上封闭了金属蛋白酶的切割位点。涉及第三个Lin12 / Notch重复序列上高度保守的裸露面的晶体堆积相互作用表明,该位点通常可参与分子间或分子内蛋白质-蛋白质相互作用。大多数已知的T-ALL相关点突变都映射到Notch1 NRR疏水内部的残基。一个新的突变(H1545P)改变了晶体堆积界面上的残基,尽管仅轻微破坏了NRR的稳定性,但在报告基因测定中导致信号传导中配体非依赖性的增加,这表明它释放了对异二聚域施加的自动抑制钳由Lin12 / Notch重复。 Notch1 NRR结构应有助于寻找可稳定自抑制构象的抗体或化合物。

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