A subpopulation of human bone marrow erythroid cells displays a myeloid gene expression signature similar to that of classic monocytes

Author:

Perik-Zavodskii RomanORCID,Perik-Zavodskaia Olga,Shevchenko Julia,Volynets MarinaORCID,Alrhmoun SalehORCID,Nazarov Kirill,Denisova Vera,Sennikov Sergey

Abstract

Erythroid cells, serving as progenitors and precursors to erythrocytes responsible for oxygen transport, were shown to exhibit an immunosuppressive and immunoregulatory phenotype. Previous investigations from our research group have revealed an antimicrobial gene expression profile within murine bone marrow erythroid cells which suggested a role for erythroid cells in innate immunity. In the present study, we focused on elucidating the characteristics of human bone marrow erythroid cells through comprehensive analyses, including NanoString gene expression profiling utilizing the Immune Response V2 panel, a BioPlex examination of chemokine and TGF-beta family proteins secretion, and analysis of publicly available single-cell RNA-seq data. Our findings demonstrate that an erythroid cell subpopulation manifests a myeloid-like gene expression signature comprised of antibacterial immunity and neutrophil chemotaxis genes which suggests an involvement of human erythroid cells in the innate immunity. Furthermore, we found that human erythroid cells secreted CCL22, CCL24, CXCL5, CXCL8, and MIF chemokines. The ability of human erythroid cells to express these chemokines might facilitate the restriction of immune cells in the bone marrow under normal conditions or contribute to the ability of erythroid cells to induce local immunosuppression by recruiting immune cells in their immediate vicinity in case of extramedullary hematopoiesis.

Funder

Ministry of Higher Education and Science, State Assignment

Publisher

Public Library of Science (PLoS)

Reference32 articles.

1. Neglected cells: immunomodulatory roles of CD71+ erythroid cells;S. Elahi;Trends in immunology,2019

2. The immunoregulatory function of peripheral blood CD71+ erythroid cells in systemic-onset juvenile idiopathic arthritis https://doi.org/10.1038%2Fs41598-021-93831-3

3. CD71+ Erythroid Cell Expansion in Adult Sepsis: Potential Causes and Role in Prognosis and Nosocomial Infection Prediction;GJ Zhao;Frontiers in immunology,2022

4. Murine Bone Marrow Erythroid Cells Have Two Branches of Differentiation Defined by the Presence of CD45 and a Different Immune Transcriptome Than Fetal Liver Erythroid Cells;O Perik-Zavodskaia;International Journal of Molecular Sciences,2023

5. Immunoregulatory CD71+ Erythroid Cells (Erythroid cells) Expand in Multiple Myeloma and Impair Control of L. Monocytogenes Infection;TM Grzywa;Blood,2022

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