Fate mapping of hematopoietic stem cells reveals two pathways of native thrombopoiesis

Author:

Morcos Mina N. F.ORCID,Li Congxin,Munz Clara M.,Greco AlessandroORCID,Dressel Nicole,Reinhardt SusanneORCID,Sameith KatrinORCID,Dahl AndreasORCID,Becker Nils B.,Roers AxelORCID,Höfer ThomasORCID,Gerbaulet AlexanderORCID

Abstract

AbstractHematopoietic stem cells (HSCs) produce highly diverse cell lineages. Here, we chart native lineage pathways emanating from HSCs and define their physiological regulation by computationally integrating experimental approaches for fate mapping, mitotic tracking, and single-cell RNA sequencing. We find that lineages begin to split when cells leave the tip HSC population, marked by high Sca-1 and CD201 expression. Downstream, HSCs either retain high Sca-1 expression and the ability to generate lymphocytes, or irreversibly reduce Sca-1 level and enter into erythro-myelopoiesis or thrombopoiesis. Thrombopoiesis is the sum of two pathways that make comparable contributions in steady state, a long route via multipotent progenitors and CD48hi megakaryocyte progenitors (MkPs), and a short route from HSCs to developmentally distinct CD48−/lo MkPs. Enhanced thrombopoietin signaling differentially accelerates the short pathway, enabling a rapid response to increasing demand. In sum, we provide a blueprint for mapping physiological differentiation fluxes from HSCs and decipher two functionally distinct pathways of native thrombopoiesis.

Funder

Deutsche Forschungsgemeinschaft

EC | Horizon 2020 Framework Programme

Fritz Thyssen Stiftung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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