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Human C. difficile toxin–specific memory B cell repertoires encode poorly neutralizing antibodies
Hemangi B. Shah, Kenneth Smith, Edgar J. Scott II, Jason L. Larabee, Judith A. James, Jimmy D. Ballard, Mark L. Lang
Hemangi B. Shah, Kenneth Smith, Edgar J. Scott II, Jason L. Larabee, Judith A. James, Jimmy D. Ballard, Mark L. Lang
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Research Article Immunology Infectious disease

Human C. difficile toxin–specific memory B cell repertoires encode poorly neutralizing antibodies

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Abstract

Clostridioides difficile is a leading cause of nosocomial infection responsible for significant morbidity and mortality with limited options for therapy. Secreted C. difficile toxin B (TcdB) is a major contributor to disease pathology, and select TcdB-specific Abs may protect against disease recurrence. However, the high frequency of recurrence suggests that the memory B cell response, essential for new Ab production following C. difficile reexposure, is insufficient. We therefore isolated TcdB-specific memory B cells from individuals with a history of C. difficile infection and performed single-cell deep sequencing of their Ab genes. Herein, we report that TcdB-specific memory B cell–encoded antibodies showed somatic hypermutation but displayed limited isotype class switch. Memory B cell–encoded mAb generated from the gene sequences revealed low to moderate affinity for TcdB and a limited ability to neutralize TcdB. These findings indicate that memory B cells are an important factor in C. difficile disease recurrence.

Authors

Hemangi B. Shah, Kenneth Smith, Edgar J. Scott II, Jason L. Larabee, Judith A. James, Jimmy D. Ballard, Mark L. Lang

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Figure 5

Somatic hypermutation in CTD+ and CTD– Bmem cells.

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Somatic hypermutation in CTD+ and CTD– Bmem cells.
(A) Depicts the perce...
(A) Depicts the percent nucleotide mutations as compared with germline. Replacement mutations resulting in an amino acid change and silent mutations resulting in no amino acid change in the heavy chain V regions of IgA, IgG, and IgM sequences from CTD+ Bmem cells are presented. (B) Is as in A, but depicts CTD– Bmem cells. A Kruskal-Wallis test with Dunn’s post hoc test correction was used to determine statistical significance in differences between mutation frequencies observed in each Ab isotype (****P < 0.0001).

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