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Structural basis and sequence rules for substrate recognition by tankyrase explain the basis for cherubism disease

机译:Tankyrase识别底物的结构基础和序列规则解释了红斑病的基础

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The poly(ADP-ribose)polymerases Tankyrase 1/2 (TNKS/TNKS2) catalyze the covalent linkage of ADP-ribose polymer chains onto target proteins, regulating their ubiquitylation, stability, and function. Dysregulation of substrate recognition by Tankyrases underlies the human disease cherubism. Tankyrases recruit specific motifs (often called RxxPDG "hexapeptides") in their substrates via an N-terminal region of ankyrin repeats. These ankyrin repeats form five domains termed ankyrin repeat clusters (ARCs), each predicted to bind substrate. Here we report crystal structures of a representative ARC of TNKS2 bound to targeting peptides from six substrates. Using a solution-based peptide library screen, we derive a rule-based consensus for Tankyrase substrates common to four functionally conserved ARCs. This 8-residue consensus allows us to rationalize all known Tankyrase substrates and explains the basis for cherubism-causing mutations in the Tankyrase substrate 3BP2. Structural and sequence information allows us to also predict and validate other Tankyrase targets, including Disc1, Striatin, Fat4, RAD54, BCR, and MERIT40.
机译:聚(ADP-核糖)聚合酶Tankyrase 1/2(TNKS / TNKS2)催化ADP-核糖聚合物链与目标蛋白的共价键合,调节其泛素化,稳定性和功能。 Tankyrases对底物识别的调节失调是人类疾病中毒的基础。端锚聚合酶通过锚蛋白重复序列​​的N端区域在其底物中募集特定的基序(通常称为RxxPDG“六肽”)。这些锚蛋白重复序列​​形成五个称为锚蛋白重复簇(ARC)的域,每个域都预计会结合底物。在这里,我们报告绑定到来自六个基板的靶向肽的TNKS2代表性ARC的晶体结构。使用基于解决方案的肽库筛选,我们针对四个功能保守的ARC共有的Tankyrase底物得出基于规则的共识。这种8个残基的共有序列使我们能够合理化所有已知的坦科聚合酶底物,并解释了坦科聚合酶底物3BP2中导致基因病突变的基础。结构和序列信息使我们还可以预测和验证其他Tankyrase靶标,包括Disc1,Striatin,Fat4,RAD54,BCR和MERIT40。

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