Panhematopoietic RNA barcoding enables kinetic measurements of nucleate and anucleate lineages and the activation of myeloid clones following acute platelet depletion

Platelets and erythrocytes constitute over 95% of all hematopoietic stem cell output. However, the clonal dynamics of HSC contribution to these lineages remains largely unexplored. We use lentiviral genetic labeling of mouse hematopoietic stem cells to quantify output from all lineages, nucleate, an...

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Veröffentlicht in:Genome Biology 2023-06, Vol.24 (1), p.152-152, Article 152
Hauptverfasser: Wojtowicz, Edyta E, Mistry, Jayna J, Uzun, Vladimir, Hellmich, Charlotte, Scoones, Anita, Chin, Desmond W, Kettyle, Laura M, Grasso, Francesca, Lord, Allegra M, Wright, David J, Etherington, Graham J, Woll, Petter S, Belderbos, Mirjam E, Bowles, Kristian M, Nerlov, Claus, Haerty, Wilfried, Bystrykh, Leonid V, Jacobsen, Sten Eirik W, Rushworth, Stuart A, Macaulay, Iain C
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Sprache:eng
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Zusammenfassung:Platelets and erythrocytes constitute over 95% of all hematopoietic stem cell output. However, the clonal dynamics of HSC contribution to these lineages remains largely unexplored. We use lentiviral genetic labeling of mouse hematopoietic stem cells to quantify output from all lineages, nucleate, and anucleate, simultaneously linking these with stem and progenitor cell transcriptomic phenotypes using single-cell RNA-sequencing. We observe dynamic shifts of clonal behaviors through time in same-animal peripheral blood and demonstrate that acute platelet depletion shifts the output of multipotent hematopoietic stem cells to the exclusive production of platelets. Additionally, we observe the emergence of new myeloid-biased clones, which support short- and long-term production of blood cells. Our approach enables kinetic studies of multi-lineage output in the peripheral blood and transcriptional heterogeneity of individual hematopoietic stem cells. Our results give a unique insight into hematopoietic stem cell reactivation upon platelet depletion and of clonal dynamics in both steady state and under stress.
ISSN:1474-760X
1474-7596
1474-760X
DOI:10.1186/s13059-023-02976-z