首页> 外文OA文献 >Different binding motifs in metabotropic glutamate receptor type 7b for filamin A, protein phosphatase 1C, protein interacting with protein kinase C (PICK) 1 and syntenin allow the formation of multimeric protein complexes.
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Different binding motifs in metabotropic glutamate receptor type 7b for filamin A, protein phosphatase 1C, protein interacting with protein kinase C (PICK) 1 and syntenin allow the formation of multimeric protein complexes.

机译:纤维蛋白A,蛋白磷酸酶1C,蛋白与蛋白激酶C(PICK)1和syntenin相互作用的代谢型谷氨酸受体7b中的不同结合基序允许形成多聚体蛋白复合物。

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摘要

Metabotropic glutamate receptor (mGluR) type 7-mediated neurotransmission depends critically on its regulation by associated molecules, such as kinases, phosphatases and structural proteins. The splice variants mGluR7a and mGluR7b are defined by different intracellular C-termini, and simultaneous or exclusive binding of interacting proteins to these domains modulates mGluR7-mediated signalling. However, molecular determinants defining binding regions for associated proteins within mGluR7 C-termini are mostly unknown. In the present study, we have mapped the binding domains of four proteins [filamin A, protein phosphatase (PP) 1C, protein interacting with protein kinase C (PICK) 1 and syntenin] interacting with the mGluR7b variant, and show that the alternatively spliced distal part of the mGluR7b C-terminus was sufficient for the interactions. By individual substitution of all mGluR7b isoform-specific amino acids with alanine and construction of a series of deletion constructs, residues important for the interactions were identified and binding regions could be defined. Interestingly, mGluR7b contains an unusual PP1C-binding motif, located at the N-terminus of the binding domains for PICK1 and syntenin. Consistently, binding of PP1C and PICK1 or PP1C and syntenin to mGluR7b was not competitive. Furthermore, PICK1, but not PP1C, interacted physically with syntenin. Our results represent a molecular description of the binding mechanisms of four mGluR7-associated proteins, and indicate the formation of ternary protein complexes composed of mGluR7b, PP1C, PICK1 and syntenin.
机译:7型代谢型谷氨酸受体(mGluR)介导的神经传递关键取决于其对相关分子(如激酶,磷酸酶和结构蛋白)的调节。剪接变体mGluR7a和mGluR7b由不同的细胞内C末端定义,相互作用蛋白与这些结构域的同时或排他性结合可调节mGluR7介导的信号传导。但是,定义mGluR7 C末端内相关蛋白结合区的分子决定簇几乎是未知的。在本研究中,我们已绘制了与mGluR7b变体相互作用的四种蛋白质的结合结构域[filamin A,蛋白磷酸酶(PP)1C,与蛋白激酶C(PICK)1和syntenin相互作用的蛋白],并显示了该蛋白的可变剪接mGluR7b C末端的远端足以进行相互作用。通过用丙氨酸单独取代所有mGluR7b异构体特异性氨基酸,并构建一系列缺失构建体,鉴定了对于相互作用重要的残基,并可以定义结合区。有趣的是,mGluR7b包含一个不寻常的PP1C结合基序,位于PICK1和syntenin结合域的N端。一致地,PP1C和PICK1或PP1C和syntenin与mGluR7b的结合没有竞争性。此外,PICK1(而非PP1C)与syntenin发生物理相互作用。我们的结果代表了四种与mGluR7相关的蛋白质的结合机制的分子描述,并表明了由mGluR7b,PP1C,PICK1和syntenin组成的三元蛋白质复合物的形成。

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    Enz, Ralf; Croci, Cristina;

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  • 年度 2003
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  • 正文语种 en
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