» Articles » PMID: 26579118

Regulation of B Cell Differentiation by Intracellular Membrane-Associated Proteins and MicroRNAs: Role in the Antibody Response

Overview
Journal Front Immunol
Date 2015 Nov 19
PMID 26579118
Citations 11
Authors
Affiliations
Soon will be listed here.
Abstract

B cells are central to adaptive immunity and their functions in antibody responses are exquisitely regulated. As suggested by recent findings, B cell differentiation is mediated by intracellular membrane structures (including endosomes, lysosomes, and autophagosomes) and protein factors specifically associated with these membranes, including Rab7, Atg5, and Atg7. These factors participate in vesicle formation/trafficking, signal transduction and induction of gene expression to promote antigen presentation, class switch DNA recombination (CSR)/somatic hypermutation (SHM), and generation/maintenance of plasma cells and memory B cells. Their expression is induced in B cells activated to differentiate and further fine-tuned by immune-modulating microRNAs, which coordinates CSR/SHM, plasma cell differentiation, and memory B cell differentiation. These short non-coding RNAs would individually target multiple factors associated with the same intracellular membrane compartments and collaboratively target a single factor in addition to regulating AID and Blimp-1. These, together with regulation of microRNA biogenesis and activities by endosomes and autophagosomes, show that intracellular membranes and microRNAs, two broadly relevant cell constituents, play important roles in balancing gene expression to specify B cell differentiation processes for optimal antibody responses.

Citing Articles

B- and T-Cell Subset Abnormalities in Monogenic Common Variable Immunodeficiency.

Fekrvand S, Khanmohammadi S, Abolhassani H, Yazdani R Front Immunol. 2022; 13:912826.

PMID: 35784324 PMC: 9241517. DOI: 10.3389/fimmu.2022.912826.


MicroRNAs and obesity-induced endothelial dysfunction: key paradigms in molecular therapy.

Ait-Aissa K, Nguyen Q, Gabani M, Kassan A, Kumar S, Choi S Cardiovasc Diabetol. 2020; 19(1):136.

PMID: 32907629 PMC: 7488343. DOI: 10.1186/s12933-020-01107-3.


A comparison of unamplified and massively multiplexed PCR amplification for murine antibody repertoire sequencing.

Rettig T, Pecaut M, Chapes S FASEB Bioadv. 2020; 1(1):6-17.

PMID: 32123808 PMC: 6996338. DOI: 10.1096/fba.1017.


B Cell Endosomal RAB7 Promotes TRAF6 K63 Polyubiquitination and NF-κB Activation for Antibody Class-Switching.

Yan H, Fernandez M, Wang J, Wu S, Wang R, Lou Z J Immunol. 2020; 204(5):1146-1157.

PMID: 31932498 PMC: 7033007. DOI: 10.4049/jimmunol.1901170.


The Role of Tumor-Infiltrating B Cells in Tumor Immunity.

Guo F, Cui J J Oncol. 2019; 2019:2592419.

PMID: 31662750 PMC: 6778893. DOI: 10.1155/2019/2592419.


References
1.
Gibbings D, Mostowy S, Voinnet O . Autophagy selectively regulates miRNA homeostasis. Autophagy. 2013; 9(5):781-3. PMC: 3669187. DOI: 10.4161/auto.23694. View

2.
Yasuda T, Kometani K, Takahashi N, Imai Y, Aiba Y, Kurosaki T . ERKs induce expression of the transcriptional repressor Blimp-1 and subsequent plasma cell differentiation. Sci Signal. 2011; 4(169):ra25. DOI: 10.1126/scisignal.2001592. View

3.
Lee Y, Pressman S, Andress A, Kim K, White J, Cassidy J . Silencing by small RNAs is linked to endosomal trafficking. Nat Cell Biol. 2009; 11(9):1150-6. PMC: 2737091. DOI: 10.1038/ncb1930. View

4.
Chen M, Kodali S, Jang A, Kuai L, Wang J . Requirement for autophagy in the long-term persistence but not initial formation of memory B cells. J Immunol. 2015; 194(6):2607-15. PMC: 4355050. DOI: 10.4049/jimmunol.1403001. View

5.
Sandberg R, Neilson J, Sarma A, Sharp P, Burge C . Proliferating cells express mRNAs with shortened 3' untranslated regions and fewer microRNA target sites. Science. 2008; 320(5883):1643-7. PMC: 2587246. DOI: 10.1126/science.1155390. View