Identification of a new adtrp1‐tfpi regulatory axis for the specification of primitive myelopoiesis and definitive hematopoiesis

血管母细胞 骨髓生成 基因敲除 造血 GATA1公司 红细胞生成 生物 细胞生物学 运行x1 斑马鱼 短尾鱼 分子生物学 干细胞 遗传学 内科学 基因 医学 胚胎干细胞 中胚层 贫血
作者
Li Wang,Xiaojing Wang,Long Wang,Muhammad Yousaf,Jia Li,Mengxia Zuo,Zhiyong Yang,Dongzhi Gou,Binghao Bao,Lei Li,Ning Xiang,Haibo Jia,Chengqi Xu,Qiuyun Chen,Qing Kenneth Wang
出处
期刊:The FASEB Journal [Wiley]
卷期号:32 (1): 183-194 被引量:13
标识
DOI:10.1096/fj.201700166rr
摘要

A genomic variant in the human ADTRP [androgen-dependent tissue factor (TF) pathway inhibitor (TFPI) regulating protein] gene increases the risk of coronary artery disease, the leading cause of death worldwide. TFPI is the TF pathway inhibitor that is involved in coagulation. Here, we report that adtrp and tfpi form a regulatory axis that specifies primitive myelopoiesis and definitive hematopoiesis, but not primitive erythropoiesis or vas- culogenesis. In zebrafish, there are 2 paralogues for adtrp (i.e., adtrpl and adtrp2). Knockdown of adtrpl expression inhibits the specification of hemangioblasts, as shown by decreased expression of the hemangioblast markers, etsrp, flila, and scl; blocks primitive hematopoiesis, as shown by decreased expression of pu.1, mpo, and l-plastin; and disrupts the specification of hematopoietic stem cells (definitive hematopoiesis), as shown by decreased expression of runx1 and c-myb. However, adtrp1 knockdown does not affect erythropoiesis during primitive hematopoiesis (no effect on gata1 or h-bae1) or vasculogenesis (no effect on kdrl, ephb2a, notch3, dab2, or flt4). Knockdown of adtrp2 expression does not have apparent effects on all markers tested. Knockdown of adtrp1 reduced the expression of tfpi, and hematopoietic defects in adtrp1 morphants were rescued by tfpi overexpression. These data suggest that the regulation of tfpi expression is one potential mechanism by which adtrp1 regulates primitive myelopoiesis and definitive hematopoiesis.—Wang L., Wang X., Wang L., Yousaf, M., Li, J., Zuo, M., Yang Z., Gou, D., Bao, B., Li, L., Xiang, N., Jia, H., Xu, C., Chen, Q., Wang Q. K. Identificationofanew adtrp1-tfpi regulatory axis for the specification of primitive myelopoiesis and definitive hematopoiesis. FASEB J. 32, 183-194 (2018). www.fasebj.org
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