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HoxA10通过增加Triad1的表达来终止应急粒细胞生成。

HoxA10 Terminates Emergency Granulopoiesis by Increasing Expression of Triad1.

作者信息

Wang Hao, Bei Ling, Shah Chirag A, Hu Liping, Eklund Elizabeth A

机构信息

Feinberg School of Medicine and Robert H. Lurie Comprehensive Cancer Center of Northwestern University, Chicago, IL 60611; and.

Feinberg School of Medicine and Robert H. Lurie Comprehensive Cancer Center of Northwestern University, Chicago, IL 60611; and Jesse Brown Veteran's Administration Medical Center, Chicago, IL 60612.

出版信息

J Immunol. 2015 Jun 1;194(11):5375-87. doi: 10.4049/jimmunol.1401909. Epub 2015 Apr 20.

Abstract

Expression of the E3 ubiquitin ligase Triad1 is greater in mature granulocytes than in myeloid progenitor cells. HoxA10 actives transcription of the gene encoding Triad1 (ARIH2) during myeloid differentiation, but the contribution of increased Triad1 expression to granulocyte production or function is unknown. Mice with bone marrow-specific disruption of the ARIH2 gene exhibit constitutive inflammation with tissue infiltration by granulocytes and B cells. In contrast, disruption of the HOXA10 gene in mice neither constitutively activates the innate immune response nor significantly alters steady-state granulopoiesis. This study explores the impact of HoxA10-induced Triad1 expression on emergency (stress) granulopoiesis. We found that mice with HOXA10 gene disruption exhibited an overwhelming and fatal emergency granulopoiesis response that was characterized by tissue infiltration with granulocytes, but reversed by re-expression of Triad1 in the bone marrow. We determined that HoxA9 repressed ARIH2 transcription in myeloid progenitor cells, antagonizing the effect of HoxA10 on Triad1 expression. Also, we found that differentiation-stage-specific ARIH2 transcription was regulated by the tyrosine phosphorylation states of HoxA9 and HoxA10. Our studies demonstrate a previously undescribed role for HoxA10 in terminating emergency granulopoiesis, suggesting an important contribution by Hox proteins to the innate immune response.

摘要

E3泛素连接酶Triad1在成熟粒细胞中的表达高于髓系祖细胞。HoxA10在髓系分化过程中激活编码Triad1(ARIH2)的基因转录,但Triad1表达增加对粒细胞生成或功能的作用尚不清楚。骨髓特异性ARIH2基因缺失的小鼠表现出持续性炎症,伴有粒细胞和B细胞的组织浸润。相比之下,小鼠中HOXA10基因的缺失既不会持续激活先天免疫反应,也不会显著改变稳态粒细胞生成。本研究探讨了HoxA10诱导的Triad1表达对紧急(应激)粒细胞生成的影响。我们发现,HOXA10基因缺失的小鼠表现出压倒性的致命紧急粒细胞生成反应,其特征是粒细胞组织浸润,但通过骨髓中Triad1的重新表达得以逆转。我们确定HoxA9抑制髓系祖细胞中的ARIH2转录,拮抗HoxA10对Triad1表达的影响。此外,我们发现分化阶段特异性的ARIH2转录受HoxA9和HoxA10酪氨酸磷酸化状态的调节。我们的研究证明了HoxA10在终止紧急粒细胞生成中以前未被描述的作用,表明Hox蛋白对先天免疫反应有重要贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de48/4433877/c47fdf6289b5/nihms-674655-f0001.jpg

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