首页> 外文OA文献 >Mona/Gads SH3C binding to hematopoietic progenitor kinase 1 (HPK1) combines an atypical SH3 binding motif, R/KXXK, with a classical PXXP motif embedded in a polyproline type II (PPII) helix.
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Mona/Gads SH3C binding to hematopoietic progenitor kinase 1 (HPK1) combines an atypical SH3 binding motif, R/KXXK, with a classical PXXP motif embedded in a polyproline type II (PPII) helix.

机译:与造血祖细胞激酶1(HPK1)结合的Mona / Gads SH3C结合了非典型SH3结合基序R / KXXK和嵌入在聚脯氨酸II型(PPII)螺旋中的经典PXXP基序。

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摘要

Hematopoietic progenitor kinase 1 (HPK1) is implicated in signaling downstream of the T cell receptor. Its non-catalytic, C-terminal half contains several prolinerich motifs, which have been shown to interact with different SH3 domain-containing adaptor proteins in vitro. One of these, Mona/Gads, was also shown to bind HPK1 in mouse T cells in vivo. The region of HPK1 that binds to the Mona/Gads C-terminal SH3 domain has been mapped and shows only very limited similarity to a recently identified high affinity binding motif in SLP-76, another T-cell adaptor. Using isothermal titration calorimetry and x-ray crystallography, the binding of the HPK1 motif to Mona/Gads SH3C has now been characterized in molecular detail. The results indicate that although charge interactions through an RXXK motif are essential for complex formation, a PXXP motif in HPK1 strongly complements binding. This unexpected binding mode therefore differs considerably from the previously described interaction of Mona/Gads SH3C with SLP-76. The crystal structure of the complex highlights the great versatility of SH3 domains, which allows interactions with very different proteins. This currently limits our ability to categorize SH3 binding properties by simple rules.
机译:造血祖细胞激酶1(HPK1)与T细胞受体下游的信号传导有关。它的非催化C末端一半包含几个脯氨酸丰富的基序,这些基序已显示在体​​外与不同的含SH3结构域的衔接蛋白相互作用。还显示了其中之一,Mona / Gads,在体内与小鼠T细胞中的HPK1结合。已映射与Mona / Gads C末端SH3结构域结合的HPK1区域,并且与另一个T细胞衔接子SLP-76中最近鉴定出的高亲和力结合基序仅显示出非常有限的相似性。使用等温滴定量热法和X射线晶体学,现在已经详细描述了HPK1基序与Mona / Gads SH3C的结合。结果表明,尽管通过RXXK基序进行电荷相互作用对于形成复合物必不可少,但HPK1中的PXXP基序强烈地补充了结合。因此,这种意外的结合模式与先前描述的Mona / Gads SH3C与SLP-76的相互作用有很大不同。该复合物的晶体结构突出显示了SH3结构域的多功能性,可与非常不同的蛋白质相互作用。当前,这限制了我们通过简单规则对SH3绑定属性进行分类的能力。

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