Priestley Gregory V, Ulyanova Tatiana, Papayannopoulou Thalia
Division of Hematology, Department of Medicine, Box 357710, Seattle, WA 98195, USA.
Blood. 2007 Jan 1;109(1):109-11. doi: 10.1182/blood-2006-06-026427. Epub 2006 Aug 24.
We have generated Tie2Cre+alpha4(f/f) mice with documented alpha4-integrin ablation in hematopoietic and endothelial cells. A prominent feature in this model is a sustained, significant increase in circulating progenitors at levels higher than the levels seen with Tie2Cre+VCAM-1(f/f) mice. To test whether phenotypic differences are due to contributions by ligands other than VCAM-1 in bone marrow, or to alpha4-deficient endothelial cells or pericytes, we carried out transplantation experiments using these mice as donors or as recipients. Changes in progenitor biodistribution after transplantation were seen only with alpha4-deficient donor cells, suggesting that these cells were necessary and sufficient to reproduce the phenotype with no discernible contribution by alpha4-deficient nonhematopoietic cells. Because several similarities are seen after transplantation between our results and those with CXCR4-/- donor cells, the data suggest that VLA4/VCAM-1 and CXCR4/CXCL12 pathways contribute to a nonredundant, ongoing signaling required for bone marrow retention of progenitor cells during homeostasis.
我们已经培育出Tie2Cre+alpha4(f/f)小鼠,其造血细胞和内皮细胞中的alpha4整合素已被证实缺失。该模型的一个显著特征是循环祖细胞持续显著增加,其水平高于Tie2Cre+VCAM-1(f/f)小鼠。为了测试表型差异是由于骨髓中除VCAM-1以外的配体的作用,还是由于alpha4缺陷的内皮细胞或周细胞,我们使用这些小鼠作为供体或受体进行了移植实验。移植后祖细胞生物分布的变化仅在alpha4缺陷的供体细胞中出现,这表明这些细胞对于重现该表型是必要且充分的,而alpha4缺陷的非造血细胞没有明显贡献。由于移植后我们的结果与CXCR4-/-供体细胞的结果有几个相似之处,数据表明VLA4/VCAM-1和CXCR4/CXCL12通路有助于在稳态期间骨髓保留祖细胞所需的非冗余、持续的信号传导。