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JMJD1C Regulates Megakaryopoiesis in In Vitro Models through the Actin Network.

Authors :
Wang, Jialing
Liu, Xiaodan
Wang, Haixia
Qin, Lili
Feng, Anhua
Qi, Daoxin
Wang, Haihua
Zhao, Yao
Kong, Lihua
Wang, Haiying
Wang, Lin
Hu, Zhenbo
Xu, Xin
Source :
Cells (2073-4409); Nov2022, Vol. 11 Issue 22, p3660, 16p
Publication Year :
2022

Abstract

The histone demethylase JMJD1C is associated with human platelet counts. The JMJD1C knockout in zebrafish and mice leads to the ablation of megakaryocyte–erythroid lineage anemia. However, the specific expression, function, and mechanism of JMJD1C in megakaryopoiesis remain unknown. Here, we used cell line models, cord blood cells, and thrombocytopenia samples, to detect the JMJD1C expression. ShRNA of JMJD1C and a specific peptide agonist of JMJD1C, SAH-JZ3, were used to explore the JMJD1C function in the cell line models. The actin ratio in megakaryopoiesis for the JMJDC modulation was also measured. Mass spectrometry was used to identify the JMJD1C-interacting proteins. We first show the JMJD1C expression difference in the PMA-induced cell line models, the thrombopoietin (TPO)-induced megakaryocyte differentiation of the cord blood cells, and also the thrombocytopenia patients, compared to the normal controls. The ShRNA of JMJD1C and SAH-JZ3 showed different effects, which were consistent with the expression of JMJD1C in the cell line models. The effort to find the underlying mechanism of JMJD1C in megakaryopoiesis, led to the discovery that SAH-JZ3 decreases F-actin in K562 cells and increases F-actin in MEG-01 cells. We further performed mass spectrometry to identify the potential JMJD1C-interacting proteins and found that the important Ran GTPase interacts with JMJD1C. To sum up, JMJD1C probably regulates megakaryopoiesis by influencing the actin network. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20734409
Volume :
11
Issue :
22
Database :
Complementary Index
Journal :
Cells (2073-4409)
Publication Type :
Academic Journal
Accession number :
160431592
Full Text :
https://doi.org/10.3390/cells11223660