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Non-coding Class Switch Recombination-related transcription in human normal and pathological immune responses

Helena Kuri-Magaña, Leonardo Collado-Torres, View ORCID ProfileAndrew E. Jaffe, Humberto Valdovinos-Torres, Marbella Ovilla-Muñoz, Juan M Téllez-Sosa, Laura C Bonifaz Alfonzo, View ORCID ProfileJesùs Martinez-Barnetche
doi: https://doi.org/10.1101/384172
Helena Kuri-Magaña
1Centro de Investigación Sobre Enfermedades Infecciosas. Instituto Nacional de Salud Pública. Cuernavaca, Morelos. México
2Programa de Doctorado en Ciencias Biomédicas. Universidad Nacional Autónoma de México
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Leonardo Collado-Torres
3Lieber Institute for Brain Development. Baltimore, Maryland. USA
4Center for Computational Biology, Johns Hopkins University, Baltimore, Maryland, USA
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Andrew E. Jaffe
3Lieber Institute for Brain Development. Baltimore, Maryland. USA
4Center for Computational Biology, Johns Hopkins University, Baltimore, Maryland, USA
5Department of Mental Health, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA
6Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA
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Humberto Valdovinos-Torres
1Centro de Investigación Sobre Enfermedades Infecciosas. Instituto Nacional de Salud Pública. Cuernavaca, Morelos. México
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Marbella Ovilla-Muñoz
1Centro de Investigación Sobre Enfermedades Infecciosas. Instituto Nacional de Salud Pública. Cuernavaca, Morelos. México
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Juan M Téllez-Sosa
1Centro de Investigación Sobre Enfermedades Infecciosas. Instituto Nacional de Salud Pública. Cuernavaca, Morelos. México
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Laura C Bonifaz Alfonzo
7Unidad de Investigacion Médica en Inmunoquimica. Hospital de Especialidades. Centro Médico Nacional Siglo XXI. IMSS. México City. México
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Jesùs Martinez-Barnetche
1Centro de Investigación Sobre Enfermedades Infecciosas. Instituto Nacional de Salud Pública. Cuernavaca, Morelos. México
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  • ORCID record for Jesùs Martinez-Barnetche
  • For correspondence: jmbarnet@insp.mx
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Abstract

Background Antibody class switch recombination (CSR) to IgG, IgA or IgE is a hallmark of adaptive immunity, allowing antibody function diversification beyond IgM. CSR involves a deletion of the IgM/IgD constant region genes placing a new acceptor Constant (CH) gene, downstream of the VDJH exon. CSR depends on non-coding (CSRnc) transcription of donor Iμ and acceptor IH exons, located 5’ upstream of each CH coding gene. Although our knowledge of the role of CSRnc transcription has advanced greatly, its extension and importance in healthy and diseased humans is scarce.

Methods We analyzed CSRnc transcription in 70,603 publicly available RNA-seq samples, including GTEx, TCGA and the Sequence Read Archive (SRA) using recount2, an online resource consisting of normalized RNA-seq gene and exon counts, as well as coverage BigWig files that can be programmatically accessed through R. CSRnc transcription was validated with a qRT-PCR assay for Iμ, Iγ3 and Iγ1 in humans in response to vaccination.

Results We mapped IH transcription for the human IgH locus, including the less understood IGHD gene. CSRnc transcription was restricted to B cells and is widely distributed in normal adult tissues, but predominant in blood, spleen, MALT-containing tissues, visceral adipose tissue and some so-called “immune privileged” tissues. However, significant Iγ4 expression was found even in non-lymphoid fetal tissues. CSRnc expression in cancer tissues mimicked the expression of their normal counterparts, with notable pattern changes in some common cancer subsets. CSRnc transcription in tumors appears to result from tumor infiltration by B cells, since CSRnc transcription was not detected in corresponding tumor-derived immortal cell lines. Additionally, significantly increased I5 transcription in ileal mucosa in Crohn’s disease with ulceration was found.

Conclusions CSRnc transcription occurs in multiple anatomical locations beyond classical secondary lymphoid organs, representing a potentially useful marker of effector B cell responses in normal and pathological immune responses. The pattern of IH exon expression may reveal clues of the local immune response (i.e. cytokine milieu) in health and disease. This is a great example of how the public recount2 data can be used to further our understanding of transcription, including regions outside the known transcriptome.

  • Abbreviations
    AID
    Activated-Induced Cytidine Deaminase
    CD
    Crohn’s disease
    CSRnc
    Class Switch Recombination non-coding
    CSR
    Class Switch Recombination
    CG
    Germinal Center
    CH
    Heavy chain Constant
    ELS
    Ectopic Lymphoid Structures
    EBV
    Epstein Barr Virus
    GTEx
    Genotype-Tissue Expression Project
    IH
    I exon
    MALT
    Mucosal Associated lymphoid Tissue
    PAMP
    Pathogen-Associated Molecular Pattern
    PB
    Peripheral blood
    SRA
    Sequence Read Archive
    RPKM
    Reads Per Kilobase (transcript) Per Million (reads)
    TCGA
    The Cancer Genome Atlas.
  • Copyright 
    The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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    Posted August 03, 2018.
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    Non-coding Class Switch Recombination-related transcription in human normal and pathological immune responses
    Helena Kuri-Magaña, Leonardo Collado-Torres, Andrew E. Jaffe, Humberto Valdovinos-Torres, Marbella Ovilla-Muñoz, Juan M Téllez-Sosa, Laura C Bonifaz Alfonzo, Jesùs Martinez-Barnetche
    bioRxiv 384172; doi: https://doi.org/10.1101/384172
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    Non-coding Class Switch Recombination-related transcription in human normal and pathological immune responses
    Helena Kuri-Magaña, Leonardo Collado-Torres, Andrew E. Jaffe, Humberto Valdovinos-Torres, Marbella Ovilla-Muñoz, Juan M Téllez-Sosa, Laura C Bonifaz Alfonzo, Jesùs Martinez-Barnetche
    bioRxiv 384172; doi: https://doi.org/10.1101/384172

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