Related Experiment Video
Updated: Feb 24, 2026

T and B Cell Receptor Immune Repertoire Analysis using Next-generation Sequencing
Published on: January 12, 2021
Mapping the human T cell repertoire to recurrent driver mutations in MYD88 and EZH2 in lymphoma
Julie S Nielsen1, Andrew R Chang1, Darin A Wick1
1Trev and Joyce Deeley Research Centre, British Columbia Cancer Agency, Victoria, British Columbia, Canada.
Abstract:
Oncogenic "driver" mutations are theoretically attractive targets for the immunotherapy of lymphoid cancers, yet the proportion that can be recognized by T cells remains poorly defined. To address this issue without any confounding effects of the patient's immune system, we assessed T cells from 19 healthy donors for recognition of three common driver mutations in lymphoma: MYD88 , and EZH2 . Donors collectively expressed the 10 most prevalent HLA class I alleles, including HLA-A*02:01. Peripheral blood T cells were primed with peptide-loaded dendritic cells (DC), and reactive T cells were assessed for recognition of naturally processed mutant versus wild type full-length proteins. After screening three driver mutations across 17-26 HLA class I alleles and 3 × 106-3 × 107 T cells per donor, we identified CD4+ T cells against EFISENCGEII from EZH2Y641N (presented by HLA-DRB1*13:02) and CD8+ T cells against RPIPIKYKA from MYD88L265P (presented by HLA-B*07:02). We failed to detect RPIPIKYKA-specific T cells in seven other HLA-B*07:02-positive donors, including two lymphoma patients. Thus, healthy donors harbor T cells specific for common driver mutations in lymphoma. However, such responses appear to be rare due to the combined limitations of antigen processing, HLA restriction, and T cell repertoire size, highlighting the need for highly individualized approaches for selecting targets.
Insights
Healthy donors possess T cells recognizing lymphoma driver mutations like MYD88 and EZH2. However, these specific T cell responses are rare, suggesting a need for personalized immunotherapy targets in lymphoid cancers.
Area of Science:
- Immunology
- Oncology
- Cancer Immunotherapy
Background:
- Oncogenic driver mutations in lymphoid cancers are potential immunotherapy targets.
- The T cell recognition potential of these mutations is not well understood.
- Assessing T cell reactivity requires excluding confounding patient immune system effects.
Purpose of the Study:
- To determine if T cells from healthy donors recognize common lymphoma driver mutations.
- To identify specific mutations and HLA alleles associated with T cell recognition.
- To evaluate the frequency and limitations of such T cell responses.
Main Methods:
- Peripheral blood T cells from 19 healthy donors were analyzed.
- T cells were primed using peptide-loaded dendritic cells (DCs).
- Recognition of naturally processed mutant vs. wild-type proteins was assessed across multiple HLA class I alleles.
Main Results:
- CD4+ T cells recognizing EZH2Y641N (EFISENCGEII) presented by HLA-DRB1*13:02 were identified.
- CD8+ T cells recognizing MYD88L265P (RPIPIKYKA) presented by HLA-B*07:02 were identified.
- Specific T cells for MYD88L265P were not detected in other HLA-B*07:02 positive donors.
Conclusions:
- Healthy individuals harbor T cells specific for common lymphoma driver mutations.
- The rarity of these responses is attributed to antigen processing, HLA restriction, and T cell repertoire limitations.
- Highly individualized strategies are necessary for selecting immunotherapy targets.
More Related Videos
15:07VDJ-Seq: Deep Sequencing Analysis of Rearranged Immunoglobulin Heavy Chain Gene to Reveal Clonal Evolution Patterns of B Cell Lymphoma
Published on: December 28, 2015
10:26In Vitro Differentiation Model of Human Normal Memory B Cells to Long-lived Plasma Cells
Published on: January 20, 2019