The G allele of SNP rs3922 reduces the binding affinity between IGF2BP3 and CXCR5 correlating with a lower antibody production

Author:

Duan Zhaojun1,Ma Longfei1,Jin Jing2,Ma Lingyu1,Ye Lilin3,Wu Jianguo24,Luo Yunping1

Affiliation:

1. Department of Immunology Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, School of Basic Medicine Peking Union Medical College Beijing P. R. China

2. State Key Laboratory of Virology, College of Life Sciences Wuhan University Wuhan P. R. China

3. Institute of Immunology Third Military Medical University Chongqing P. R.China

4. Institute of Medical Microbiology, Guangdong Provincial Key Laboratory of Virology Jinan University Guangzhou P.R.China

Abstract

AbstractEffective vaccines that function through humoral immunity seek to produce high‐affinity antibodies. Our previous research identified the single‐nucleotide polymorphism rs3922G in the 3ʹUTR of CXCR5 as being associated with nonresponsiveness to the hepatitis B vaccine. The differential expression of CXCR5 between the dark zone (DZ) and light zone (LZ) is critical for organizing the functional structure of the germinal center (GC). In this study, we report that the RNA‐binding protein IGF2BP3 can bind to CXCR5 mRNA containing the rs3922 variant to promote its degradation via the nonsense‐mediated mRNA decay pathway. Deficiency of IGF2BP3 leads to increased CXCR5 expression, which results in the disappearance of CXCR5 differential expression between DZ and LZ, disorganized GCs, aberrant somatic hypermutations, and reduced production of high‐affinity antibodies. Furthermore, the affinity of IGF2BP3 for the rs3922G‐containing sequence is lower than that for the rs3922A counterpart, which may explain the nonresponsiveness to the hepatitis B vaccination. Together, our findings suggest that IGF2BP3 plays a crucial role in the production of high‐affinity antibodies in the GC by binding to the rs3922‐containing sequence to regulate CXCR5 expression.

Publisher

Wiley

Subject

Immunology,Immunology and Allergy

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