Exploring the origins of adaptive immunity 2257946

S Sydney Caldwell (Boston Children’s Hospital) G Gaspar Pacheco (Brigham and Women’s Hospital, Harvard Medical School) J Jessica Chen (1The University of Texas MD Anderson Cancer Center, Department of Lymphoma & Myeloma, Houston, United States) S Sachin Kumar S Shahab Saghaei (Brigham and Women’s Hospital) A Avneesh Gautam (Brigham and Women’s Hospital) M Meydan Kronrod (Brigham and Women’s Hospital) D Duane Wesemann (Brigham and Women’s Hospital)

Abstract

Abstract Introduction Jawless vertebrates (Agnathans), such as the sea lamprey, persist today with minimal evolutionary changes compared to their first appearance on Earth nearly 500 million years ago. Unlike jawed vertebrates (Gnathostomes), lampreys evolved a distinct adaptive immune system that uses variable lymphocyte receptors (VLRs) instead of immunoglobulins as their antigen receptors. Their B- and T-like lymphocytes proliferate in response to antigenic stimulation, yet it remains unknown if these cell types coordinate together. Furthermore, lampreys lack canonical lymphoid organs such as spleen, bone marrow, and lymph nodes. Therefore, where do immune niches exist in the sea lamprey, and does coordinated lymphocyte response contribute to adaptive immunity? Methods We have transcriptionally characterized VLRA+ T-like cells and VLRB+ B-like cells in circulation. Furthermore, we have developed methods for flow cytometry and IHC in the blood, gills, liver, and intestine of the sea lamprey. We are assessing the sea lamprey for immune niches and the necessity of T-like cells in the adaptive immune response. Results We have transcriptionally characterized VLRA+ T-like cells and VLRB+ B-like cells in circulation. Furthermore, we have developed methods for flow cytometry and IHC in the blood, gills, liver, and intestine of the sea lamprey. Currently, we are assessing the sea lamprey for immune niches and the necessity of T-like cells in the adaptive immune response. Conclusion This work will provide insights into how a convergently evolved adaptive immune system functions and lay the foundation for future investigation into lymphocytes of the sea lamprey. Funding Source The Hypothesis Fund Topic Categories Veterinary and Comparative Immunology (VET)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (8)

S

Sydney Caldwell

Boston Children’s Hospital

G

Gaspar Pacheco

Brigham and Women’s Hospital, Harvard Medical School

J

Jessica Chen

1The University of Texas MD Anderson Cancer Center, Department of Lymphoma & Myeloma, Houston, United States

S

Sachin Kumar

S

Shahab Saghaei

Brigham and Women’s Hospital

A

Avneesh Gautam

Brigham and Women’s Hospital

M

Meydan Kronrod

Brigham and Women’s Hospital

D

Duane Wesemann

Brigham and Women’s Hospital