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Xenotropic and polytropic retrovirus receptor 1 regulates procoagulant platelet polyphosphate

Permanent link
https://hdl.handle.net/10037/24577
DOI
https://doi.org/10.1182/blood.2019004617
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Accepted manuscript version (PDF)
Date
2020-09-15
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Mailer, Reiner K.; Allende, Mikel; Heestermans, Marco; Schweizer, Michaela; Deppermann, Carsten; Frye, Maike; Pula, Giordano; Odeberg, Jacob Olof; Gelderblom, Mathias; Rose-John, Stefan; Sickmann, Albert; Blankenberg, Stefan; Huber, Tobias B.; Kubisch, Christian; Maas, Coen; Gambaryan, Stepan; Firsov, Dmitri; Stavrou, Evi X.; Butler, Lynn; Renné, Thomas
Abstract
Polyphosphate is a procoagulant inorganic polymer of linear-linked orthophosphate residues. Multiple investigations have established the importance of platelet polyphosphate in blood coagulation; however, the mechanistic details of polyphosphate homeostasis in mammalian species remain largely undefined. In this study, xenotropic and polytropic retrovirus receptor 1 (XPR1) regulated polyphosphate in platelets and was implicated in thrombosis in vivo. We used bioinformatic analyses of omics data to identify XPR1 as a major phosphate transporter in platelets. XPR1 messenger RNA and protein expression inversely correlated with intracellular polyphosphate content and release. Pharmacological interference with XPR1 activity increased polyphosphate stores, led to enhanced platelet-driven coagulation, and amplified thrombus formation under flow via the polyphosphate/factor XII pathway. Conditional gene deletion of Xpr1 in platelets resulted in polyphosphate accumulation, accelerated arterial thrombosis, and augmented activated platelet-driven pulmonary embolism without increasing bleeding in mice. These data identify platelet XPR1 as an integral regulator of platelet polyphosphate metabolism and reveal a fundamental role for phosphate homeostasis in thrombosis.
Description
This research was originally published in Blood. Mailer, Allende, Heestermans, Schweizer, Deppermann, Frye, Pula, Odeberg, Gelderblom, Rose-John, Sickmann, Blankenberg, Huber, Kubisch, Maas, Gambaryan, Firsov, Stavrou, Butler, Renné. Xenotropic and polytropic retrovirus receptor 1 regulates procoagulant platelet polyphosphate. Blood. 2021;137(10):1392-1405. © the American Society of Hematology.
Publisher
American Society of Hematology
Citation
Mailer, Allende, Heestermans, Schweizer, Deppermann, Frye, Pula, Odeberg, Gelderblom, Rose-John, Sickmann, Blankenberg, Huber, Kubisch, Maas, Gambaryan, Firsov, Stavrou, Butler, Renné. Xenotropic and polytropic retrovirus receptor 1 regulates procoagulant platelet polyphosphate. Blood. 2021;137(10):1392-1405
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Copyright ©2021 by American Society of Hematology

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