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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >CXCR7 heterodimerizes with CXCR4 and regulates CXCL12-mediated G protein signaling.
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CXCR7 heterodimerizes with CXCR4 and regulates CXCL12-mediated G protein signaling.

机译:CXCR7与CXCR4异源二聚体,并调节CXCL12介导的G蛋白信号传导。

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The stromal cell-derived factor-1/CXCL12 chemokine engages the CXCR4 and CXCR7 receptors and regulates homeostatic and pathologic processes, including organogenesis, leukocyte homeostasis, and tumorigenesis. Both receptors are widely expressed in mammalian cells, but how they cooperate to respond to CXCL12 is not well understood. Here, we show that CXCR7 per se does not trigger G(alphai) protein-dependent signaling, although energy transfer assays indicate that it constitutively interacts with G(alphai) proteins and undergoes CXCL12-mediated conformational changes. Moreover, when CXCR4 and CXCR7 are coexpressed, we show that receptor heterodimers form as efficiently as receptor homodimers, thus opening the possibility that CXCR4/CXCR7 heterodimer formation has consequences on CXCL12-mediated signals. Indeed, expression of CXCR7 induces conformational rearrangements within preassembled CXCR4/G(alphai) protein complexes and impairs CXCR4-promoted G(alphai)-protein activation and calcium responses. Varying CXCR7 expression levels and blocking CXCL12/CXCR7 interactions in primary T cells suggest that CXCR4/CXCR7 heterodimers form in primary lymphocytes and regulate CXCL12-promoted chemotaxis. Taken together, these results identify CXCR4/CXCR7 heterodimers as distinct functional units with novel properties, which can contribute to the functional plasticity of CXCL12.
机译:基质细胞衍生因子-1 / CXCL12趋化因子与CXCR4和CXCR7受体结合,并调节体内和体内的稳态过程和病理过程,包括器官发生,白细胞稳态和肿瘤发生。两种受体均在哺乳动物细胞中广泛表达,但是如何协同响应CXCL12尚不十分清楚。在这里,我们显示CXCR7本身不会触发G(alphai)蛋白依赖性信号传导,尽管能量转移测定表明它与G(alphai)蛋白组成性相互作用并经历CXCL12介导的构象变化。此外,当CXCR4和CXCR7共表达时,我们表明受体异二聚体的形成与受体同二聚体一样有效,从而打开了CXCR4 / CXCR7异二聚体形成对CXCL12介导的信号产生影响的可能性。确实,CXCR7的表达诱导了预组装的CXCR4 / G(alphai)蛋白复合物中的构象重排,并削弱了CXCR4促进的G(alphai)蛋白活化和钙反应。初级T细胞中CXCR7表达水平的变化和阻断CXCL12 / CXCR7的相互作用表明,CXCR4 / CXCR7异二聚体在初级淋巴细胞中形成并调节CXCL12促进的趋化性。综上所述,这些结果确定了CXCR4 / CXCR7异二聚体是具有新颖特性的独特功能单元,可以促进CXCL12的功能可塑性。

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