Functional characterization of the disease-associated CCL2 rs1024611G-rs13900T haplotype: The role of the RNA-binding protein HuR

Author:

Akhtar Feroz1,Ruiz Joselin Hernandez2,Liu Ya-Guang3,Resendez Roy G.1,Feliers Denis4,Morales Liza D.5,Diaz-Badillo Alvaro1,Lehman Donna M.1,Arya Rector1,Lopez-Alvarenga Juan Carlos6ORCID,Blangero John5ORCID,Duggirala Ravindranath1,Mummidi Srinivas1

Affiliation:

1. Department of Health and Behavioral Sciences, Texas A&M University-San Antonio

2. Utah Center for Genetic Discovery, Department of Human Genetics, University of Utah

3. Department of Pathology, School of Medicine, University of Texas Health San Antonio

4. Department of Medicine, School of Medicine, University of Texas Health San Antonio

5. South Texas Diabetes and Obesity Institute, Department of Genetics, School of Medicine, University of Texas Rio Grane Valley

6. Department of Population Health and Biostatistics, School of Medicine, University of Texas Rio Grande Valley

Abstract

CC-chemokine ligand 2 (CCL2) is involved in the pathogenesis of several diseases associated with monocyte/macrophage recruitment, such as HIV-associated neurocognitive disorder (HAND), tuberculosis, and atherosclerosis. The rs1024611 (alleles:A>G; G is the risk allele) polymorphism in the CCL2 cis -regulatory region is associated with increased CCL2 expression in vitro and ex vivo, leukocyte mobilization in vivo, and deleterious disease outcomes. However, the molecular basis for the rs1024611-associated differential CCL2 expression remains poorly characterized. It is conceivable that genetic variant(s) in linkage disequilibrium (LD) with rs1024611 could mediate such effects. Previously, we used rs13900 (alleles: C>T) in the CCL2 3’ untranslated region (3’ UTR) that is in perfect LD with rs1024611 to demonstrate allelic expression imbalance (AEI) of CCL2 in heterozygous individuals. Here we tested the hypothesis that the rs13900 could modulate CCL2 expression by altering mRNA turnover and/or translatability. The rs13900 T allele conferred greater stability to the CCL2 transcript when compared to the rs13900 C allele. The rs13900 T allele also had increased binding to Human Antigen R (HuR), an RNA-binding protein, in vitro and ex vivo. The rs13900 alleles imparted differential activity to reporter vectors and influenced the translatability of the reporter transcript. We further demonstrated a role for HuR in mediating allele-specific effects on CCL2 expression in overexpression and silencing studies. The presence of the rs1024611G-rs13900T conferred a distinct transcriptomic signature related to inflammation and immunity. Our studies suggest that the differential interactions of HuR with rs13900 could modulate CCL2 expression and explain the interindividual differences in CCL2-mediated disease susceptibility.

Publisher

eLife Sciences Publications, Ltd

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