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Citations to this article

Long noncoding RNA HIKER regulates erythropoiesis in Monge’s disease via CSNK2B
Priti Azad, … , Tariq M. Rana, Gabriel G. Haddad
Priti Azad, … , Tariq M. Rana, Gabriel G. Haddad
Published April 6, 2023
Citation Information: J Clin Invest. 2023;133(11):e165831. https://doi.org/10.1172/JCI165831.
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Research Article Genetics Hematology Article has an altmetric score of 6

Long noncoding RNA HIKER regulates erythropoiesis in Monge’s disease via CSNK2B

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Abstract

Excessive erythrocytosis (EE) is a major hallmark of patients suffering from chronic mountain sickness (CMS, also known as Monge’s disease) and is responsible for major morbidity and even mortality in early adulthood. We took advantage of unique populations, one living at high altitude (Peru) showing EE, with another population, at the same altitude and region, showing no evidence of EE (non-CMS). Through RNA-Seq, we identified and validated the function of a group of long noncoding RNAs (lncRNAs) that regulate erythropoiesis in Monge’s disease, but not in the non-CMS population. Among these lncRNAs is hypoxia induced kinase-mediated erythropoietic regulator (HIKER)/LINC02228, which we showed plays a critical role in erythropoiesis in CMS cells. Under hypoxia, HIKER modulated CSNK2B (the regulatory subunit of casein kinase 2). A downregulation of HIKER downregulated CSNK2B, remarkably reducing erythropoiesis; furthermore, an upregulation of CSNK2B on the background of HIKER downregulation rescued erythropoiesis defects. Pharmacologic inhibition of CSNK2B drastically reduced erythroid colonies, and knockdown of CSNK2B in zebrafish led to a defect in hemoglobinization. We conclude that HIKER regulates erythropoiesis in Monge’s disease and acts through at least one specific target, CSNK2B, a casein kinase.

Authors

Priti Azad, Dan Zhou, Hung-Chi Tu, Francisco C. Villafuerte, David Traver, Tariq M. Rana, Gabriel G. Haddad

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Total citations by year

Year: 2025 2024 2023 Total
Citations: 1 4 1 6
Citation information
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Citations to this article (6)

Title and authors Publication Year
Life destiny of erythrocyte in high altitude erythrocytosis: mechanisms underlying the progression from physiological (moderate) to pathological (excessive) high-altitude erythrocytosis
Zhou X, Bao Q, Cui Y, Li X, Yang C, Yang Y, Gao Y, Chen D, Huang J
Frontiers in Genetics 2025
RACK1 Promotes Meningioma Progression by Activation of NF-κB Pathway via Preventing CSNK2B from Ubiquitination Degradation.
Maalim AA, Wang Z, Huang Y, Lei T
Cancers 2024
High altitude polycythemia and its maladaptive mechanisms: an updated review.
Tang S, Zhou W, Chen L, Yan H, Chen L, Luo F
Frontiers in medicine 2024
Altitude illnesses.
Gatterer H, Villafuerte FC, Ulrich S, Bhandari SS, Keyes LE, Burtscher M
Nature reviews. Disease primers 2024
高原红细胞增多症多组学研究进展
Chinese Journal of Hematology 2024
Phosphate sensing via PTC glycolysis.
Allison SJ
Nature reviews. Nephrology 2023

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