外囊肿
细胞生物学
转铁蛋白受体
胞吐
红细胞生成
转铁蛋白
内吞作用
生物
内体
拉布
受体
化学
GTP酶
生物化学
内科学
细胞内
贫血
分泌物
医学
作者
Mengying Chen,Yuhan Zhang,Kailun Jiang,Weixi Wang,Feng He,Ru Zhen,Chingyee Moo,Zhuonan Zhang,Jiahai Shi,Caiyong Chen
出处
期刊:Blood
[American Society of Hematology]
日期:2022-09-08
卷期号:140 (10): 1145-1155
被引量:5
标识
DOI:10.1182/blood.2021015189
摘要
Developing erythroblasts acquire massive amounts of iron through the transferrin (Tf) cycle, which involves endocytosis, sorting, and recycling of the Tf-Tf receptor (Tfrc) complex. Previous studies on the hemoglobin-deficit (hbd) mouse have shown that the exocyst complex is indispensable for the Tfrc recycling; however, the precise mechanism underlying the efficient exocytosis and recycling of Tfrc in erythroblasts remains unclear. Here, we identify the guanine nucleotide exchange factor Grab as a critical regulator of the Tf cycle and iron metabolism during erythropoiesis. Grab is highly expressed in differentiating erythroblasts. Loss of Grab diminishes the Tfrc recycling and iron uptake, leading to hemoglobinization defects in mouse primary erythroblasts, mammalian erythroleukemia cells, and zebrafish embryos. These defects can be alleviated by supplementing iron together with hinokitiol, a small-molecule natural compound that can mediate iron transport independent of the Tf cycle. Mechanistically, Grab regulates the exocytosis of Tfrc-associated vesicles by activating the GTPase Rab8, which subsequently promotes the recruitment of the exocyst complex and vesicle exocytosis. Our results reveal a critical role for Grab in regulating the Tf cycle and provide new insights into iron homeostasis and erythropoiesis.
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