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T-bet+CD27+CD21– B cells poised for plasma cell differentiation during antibody-mediated rejection of kidney transplants
Kevin Louis, Elodie Bailly, Camila Macedo, Louis Lau, Bala Ramaswami, Alexander Chang, Uma Chandran, Douglas Landsittel, Xinyan Gu, Geetha Chalasani, Adriana Zeevi, Parmjeet Randhawa, Harinder Singh, Carmen Lefaucheur, Diana Metes
Kevin Louis, Elodie Bailly, Camila Macedo, Louis Lau, Bala Ramaswami, Alexander Chang, Uma Chandran, Douglas Landsittel, Xinyan Gu, Geetha Chalasani, Adriana Zeevi, Parmjeet Randhawa, Harinder Singh, Carmen Lefaucheur, Diana Metes
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Research Article Immunology Transplantation

T-bet+CD27+CD21– B cells poised for plasma cell differentiation during antibody-mediated rejection of kidney transplants

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Abstract

Alloimmune responses driven by donor-specific antibodies (DSAs) can lead to antibody-mediated rejection (ABMR) in organ transplantation. Yet, the cellular states underlying alloreactive B cell responses and the molecular components controlling them remain unclear. Using high-dimensional profiling of B cells in a cohort of 96 kidney transplant recipients, we identified expanded numbers of CD27+CD21– activated memory (AM) B cells that expressed the transcription factor T-bet in patients who developed DSAs and progressed to ABMR. Notably, AM cells were less frequent in DSA+ABMR– patients and at baseline levels in DSA– patients. RNA-Seq analysis of AM cells in patients undergoing ABMR revealed these cells to be poised for plasma cell differentiation and to express restricted IGHV sequences reflective of clonal expansion. In addition to T-bet, AM cells manifested elevated expression of interferon regulatory factor 4 and Blimp1, and upon coculture with autologous T follicular helper cells, differentiated into DSA-producing plasma cells in an IL-21–dependent manner. The frequency of AM cells was correlated with the timing and severity of ABMR manifestations. Importantly, T-bet+ AM cells were detected within kidney allografts along with their restricted IGHV sequences. This study delineates a pivotal role for AM cells in promoting humoral responses and ABMR in organ transplantation and highlights them as important therapeutic targets.

Authors

Kevin Louis, Elodie Bailly, Camila Macedo, Louis Lau, Bala Ramaswami, Alexander Chang, Uma Chandran, Douglas Landsittel, Xinyan Gu, Geetha Chalasani, Adriana Zeevi, Parmjeet Randhawa, Harinder Singh, Carmen Lefaucheur, Diana Metes

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Figure 5

Correlation of frequencies of AM subsets with disease manifestations of ABMR.

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Correlation of frequencies of AM subsets with disease manifestations of ...
Spearman’s correlation analysis of percentages of T-bet–IL-21+ AM and T-bet+IL-21+ AM subsets with percentages of blood (A) Ki67+ICOS+ cTFH (CD3+CD4+CD45RO+CXCR5+) cells, (B) plasmablasts (CD19+CD24–CD38hi), and (C) DSA MFI levels measured in serum by Luminex; HC (n = 17), DSA– (n = 48), DSA+ABMR– (n = 28), and DSA+ABMR+ (n = 20). (D) Heatmap showing Spearman’s correlation coefficients of percentages of T-bet–IL-21+ AM and T-bet+IL-21+ AM subsets with MFI levels of class I, class II, sum of class I plus II, C1q-binding, and IgG subclasses of DSAs measured in serum from DSA+ABMR+ patients, by Luminex. Bold squares indicate correlations with P < 0.05. DSA class I and II analyses were performed for n = 20, DSA IgG subclass analysis was performed for n = 18, and DSA C1q-binding analysis was performed for n = 19 patients. (E) DSA+ABMR+ patients were stratified into 2 subgroups based on the median percentage of T-bet+IL-21+AM cells less than 1.79% (low) and more than 1.79% (high) in the DSA+ABMR+ group. Histological Banff scores of kidney allograft lesions were evaluated at the time of ABMR; microvascular inflammation = g + ptc Banff score and intimal arteritis = v Banff score. Mann-Whitney U test. *P < 0.05. Each dot represents 1 subject and horizontal lines of bars are mean values ± SEM.

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