首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Vps27/Hrs/STAM (VHS) Domain of the Signal-transducing Adaptor Molecule (STAM) Directs Associated Molecule with the SH3 Domain of STAM (AMSH) Specificity to Longer Ubiquitin Chains and Dictates the Position of Cleavage
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The Vps27/Hrs/STAM (VHS) Domain of the Signal-transducing Adaptor Molecule (STAM) Directs Associated Molecule with the SH3 Domain of STAM (AMSH) Specificity to Longer Ubiquitin Chains and Dictates the Position of Cleavage

机译:信号传导衔接分子(STAM)的Vps27 / Hrs / STAM(VHS)域将分子与STAM(AMSH)的SH3域相关联的分子定向到更长的泛素链上并决定了切割的位置

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摘要

The deubiquitinating enzyme associated molecule with the SH3 domain of STAM (AMSH) is crucial for the removal of ubiquitin molecules during receptor-mediated endocytosis and lysosomal receptor sorting. AMSH interacts with signal transducing adapter molecule (STAM) 1 or 2, which enhances the activity of AMSH through an unknown mechanism. This stimulation is dependent on the ubiquitin-interacting motif of STAM. Here we investigate the specific mechanism of AMSH stimulation by STAM proteins and the role of the STAM Vps27/Hrs/STAM domain. We show that, in the presence of STAM, the length of the ubiquitin chains affects the apparent cleavage rate. Through measurement of the chain cleavage kinetics, we found that, although the kcat of Lys63-linked ubiquitin chain cleavage was comparable for di- and tri-ubiquitin, the Km value was lower for tri-ubiquitin. This increased affinity for longer chains was dependent on the Vps27/Hrs/STAM domain of STAM and required that the substrate ubiquitin chain contain homogenous Lys63-linkages. In addition, STAM directed AMSH cleavage toward the distal isopeptide bond in tri-ubiquitin chains. Finally, we generated a structural model of AMSH-STAM to show how the complex binds Lys63-linked ubiquitin chains and cleaves at the distal end. These data show how a deubiquitinating enzyme-interacting protein dictates the efficiency and specificity of substrate cleavage.
机译:具有STAM SH3结构域的去泛素化酶相关分子(AMSH)对于受体介导的内吞作用和溶酶体受体分选过程中泛素分子的去除至关重要。 AMSH与信号转导衔接子分子(STAM)1或2相互作用,从而通过未知机制增强AMSH的活性。这种刺激取决于STAM的泛素相互作用基序。在这里,我们研究了STAM蛋白对AMSH刺激的具体机制以及STAM Vps27 / Hrs / STAM结构域的作用。我们表明,在存在STAM的情况下,泛素链的长度会影响表观切割速率。通过测量链断裂动力学,我们发现,尽管Lys 63 连接的泛素链断裂的kcat与二泛素和三泛素相当,但三泛素的Km值较低。这种对更长链的亲和力增加取决于STAM的Vps27 / Hrs / STAM结构域,并要求底物遍在蛋白链包含均一的Lys 63 键。此外,STAM将AMSH切割指向三泛素链中的远端异肽键。最后,我们建立了AMSH-STAM的结构模型,以显示该复合物如何结合Lys 63 连接的泛素链并在远端切割。这些数据表明去泛素化酶相互作用蛋白如何决定底物切割的效率和特异性。

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