首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Disrupted cardiac development but normal hematopoiesis in mice deficient in the second CXCL12/SDF-1 receptor, CXCR7
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Disrupted cardiac development but normal hematopoiesis in mice deficient in the second CXCL12/SDF-1 receptor, CXCR7

机译:缺乏第二个CXCL12 / SDF-1受体CXCR7的小鼠心脏发育中断但造血功能正常

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Chemotactic cytokines (chemokines) attract immune cells, although their original evolutionary role may relate more closely with embryonic development. We noted differential expression of the chemokine receptor CXCR7 (RDC-1) on marginal zone B cells, a cell type associated with autoimmune diseases. We generated Cxcr7~(-/-) mice but found that CXCR7 deficiency had little effect on B cell composition. However, most Cxcr7~(-/-) mice died at birth with ventricular septal defects and semilunar heart valve malformation. Conditional deletion of Cxcr7 in endothelium, using Tie2-Cre trans-genic mice, recapitulated this phenotype. Gene profiling of Qxcr7~(-/-) heart valve leaflets revealed a defect in the expression of factors essential for valve formation, vessel protection, or endo-thelial cell growth and survival. We confirmed that the principal chemokine ligand for CXCR7 was CXCL12/SDF-1, which also binds CXCR4. CXCL12 did not induce signaling through CXCR7; however, CXCR7 formed functional heterodimers with CXCR4 and enhanced CXCL12-induced signaling. Our results reveal a specialized role for CXCR7 in endothelial biology and valve development and highlight the distinct developmental role of evolutionary conserved chemokine receptors such as CXCR7 and CXCR4.
机译:趋化性细胞因子(趋化因子)吸引免疫细胞,尽管它们最初的进化作用可能与胚胎发育更紧密相关。我们注意到趋化因子受体CXCR7(RDC-1)在边缘区B细胞(一种与自身免疫性疾病相关的细胞类型)上的差异表达。我们产生了Cxcr7〜(-/-)小鼠,但发现CXCR7缺乏对B细胞组成影响很小。但是,大多数Cxcr7〜(-/-)小鼠在出生时就死于室间隔缺损和半月形心脏瓣膜畸形。使用Tie2-Cre转基因小鼠,内皮细胞中Cxcr7的条件缺失重现了该表型。 Qxcr7〜(-/-)心脏瓣膜小叶的基因谱分析揭示了瓣膜形成,血管保护或内皮细胞生长和存活所必需因子表达的缺陷。我们确认,CXCR7的主要趋化因子配体是CXCL12 / SDF-1,它也结合CXCR4。 CXCL12不会通过CXCR7诱导信号传导。但是,CXCR7与CXCR4形成功能性异源二聚体,并增强了CXCL12诱导的信号传导。我们的结果揭示了CXCR7在内皮生物学和瓣膜发育中的特殊作用,并强调了进化保守的趋化因子受体(例如CXCR7和CXCR4)的独特发展作用。

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