Stability and Progressive Differentiation of Tfr cells are intrinsically and extrinsically controlled by Tfh programs 2255794
Abstract
Abstract Introduction Follicular regulatory T (Tfr) cells restrain follicular helper T (Tfh) cell-mediated B cell responses in the germinal center (GC) reaction to optimize humoral immunity while limiting autoimmunity. The immune system partially regulates GC responses by controlling the stepwise differentiation of Tfh cells. Whether Tfr cell development requires sequential developmental stages and how the immune system regulates these processes to control humoral immunity is poorly understood. Methods We used longitudinal sampling of lymphoid organs along with fate mapping and matched single-cell RNASeq/TCRseq to assess developmental dynamics of Tfr cells. Results We found that Tfr cells undergo dynamic clonal expansion and Tfr cells also undergo progressive differentiation through progenitor-like, early effector, and late effector stages. Late effector Tfr cells possess inherent instability, with a propensity to lose expression of the transcription factor FoxP3 to become ExTfr cells. ExTfr have unique features and can be redeemed to become suppressive Tfr cells. Acquisition of a Tfh-like transcriptional program in Tfr cells was an intrinsic predictor of progeny instability. Extrinsically, Tfh cells enhanced late effector Tfr cell differentiation by diverting early effector Tfr cells away from a default Blimp1-expressing pathway to a Bcl6-expressing one. Tfr cells are a dynamic and plastic cell subset, the progressive differentiation of which is controlled at later effector stages by intrinsic and extrinsic programs that work together to provide a negative feedback loop to control humoral immunity. Moreover, Tfh induce Tcf7 in Tfr cells which promotes late effector Tfr differentiation Conclusion Tfr cells are a dynamic and plastic cell subset, the progressive differentiation of which is controlled at later effector stages by intrinsic and extrinsic programs that work together to provide a negative feedback loop to control humoral immunity. Funding Source n/a Topic Categories Immune Response Regulation: Cellular Mechanisms (IRC)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (20)
Jeong-Mi Lee
Paulo Raeder
University of Sao Paulo
Ridwan Rashid
Brigham and Women’s Hospital
Hengcheng Zhang
Cody Nelson
Brigham and Women’s Hospital
Sierra Richardson
Kelly Burke
Dana Farber Cancer Institute
Pragya Chandrakar
Manuel Podesta
Fondazione IRCCS Ca’ Granda Ospedale Maggiore Policlinico
Maya Gempler
Cole Batty
Dana Farber Cancer Institute
Dejun Kong
University of Maryland
Samuel Gavzy
University of Maryland
Marina WillsonShirkey
University of Maryland
Cyrus Yang
TaiwanBio Therapuetics
Jonathan Bromberg
University of Maryland
Marcia Haigis
Harvard Medical School
Wayne Marasco
Dana Farber Cancer Institute
Arlene Sharpe
Harvard Medical School
Peter Sage
Brigham and Women’s Hospital