Stage-Specific Non-Coding RNA Expression Patterns during In Vitro Human B Cell Differentiation into Antibody Secreting Plasma Cells

Renee C. Tschumper, Dominique B. Hoelzinger, Denise K. Walters, Jaime I. Davila, Collin A. Osborne, Diane F. Jelinek

Research output: Contribution to journalArticlepeer-review

Abstract

The differentiation of B cells into antibody secreting plasma cells (PCs) is governed by a strict regulatory network that results in expression of specific transcriptomes along the activation continuum. In vitro models yielding significant numbers of PCs phenotypically identical to the in vivo state enable investigation of pathways, metabolomes, and non-coding (ncRNAs) not previ-ously identified. The objective of our study was to characterize ncRNA expression during human B cell activation and differentiation. To achieve this, we used an in vitro system and performed RNA-seq on resting and activated B cells and PCs. Characterization of coding gene transcripts, including immunoglobulin (Ig), validated our system and also demonstrated that memory B cells preferen-tially differentiated into PCs. Importantly, we identified more than 980 ncRNA transcripts that are differentially expressed across the stages of activation and differentiation, some of which are known to target transcription, proliferation, cytoskeletal, autophagy and proteasome pathways. Interest-ingly, ncRNAs located within Ig loci may be targeting both Ig and non-Ig-related transcripts. ncRNAs associated with B cell malignancies were also identified. Taken together, this system provides a platform to study the role of specific ncRNAs in B cell differentiation and altered expression of those ncRNAs involved in B cell malignancies.

Original languageEnglish (US)
Article number15
JournalNon-coding RNA
Volume8
Issue number1
DOIs
StatePublished - Feb 2022

Keywords

  • Human B lymphocytes
  • In vitro B cell differentiation
  • Non-coding RNA
  • Plasma cells
  • RNA-seq

ASJC Scopus subject areas

  • Biochemistry
  • Molecular Biology
  • Genetics

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