Literature DB >> 31366617

Sepsis alters the transcriptional and translational landscape of human and murine platelets.

Elizabeth A Middleton1,2, Jesse W Rowley1,2, Robert A Campbell1,3, Colin K Grissom2,4, Samuel M Brown2,4, Sarah J Beesley2,4, Hansjörg Schwertz1,5, Yasuhiro Kosaka1, Bhanu K Manne1, Krystin Krauel1, Neal D Tolley1, Alicia S Eustes1,6, Li Guo1, Robert Paine2,7, Estelle S Harris2, Guy A Zimmerman1,2, Andrew S Weyrich1,2, Matthew T Rondina1,3,6,8.   

Abstract

There is increasing recognition that platelets have a functional role in the pathophysiology of sepsis, though this role has not been precisely defined. Whether sepsis alters the human platelet transcriptome and translational landscape has never been established. We used parallel techniques of RNA sequencing and ribosome footprint profiling to interrogate the platelet transcriptome and translatome in septic patients and healthy donors. We identified 1806 significantly differentially expressed (false discovery rate <0.05) transcripts in platelets from septic patients. Platelet translational events during sepsis were also upregulated. To explore the relevance of a murine model of sepsis, cecal ligation and puncture (CLP), we compared sepsis-induced changes in platelet gene expression between septic patients and mice subjected to CLP. Platelet transcriptional (ρ = 0.42, P = 3.2 × 10-285) and translational (ρ = 0.65, P = 1.09 × 10-56) changes were significantly correlated between septic patients and mice. We focused on ITGA2B, tracking and validating the expression, regulation, and functional impact of changes in ITGA2B during sepsis. Increased ITGA2B was identified in bone marrow megakaryocytes within 24 hours of sepsis onset. Subsequent increases in ITGA2B were seen in circulating platelets, suggesting dynamic trafficking of the messenger RNA. Transcriptional changes in ITGA2B were accompanied by de novo protein synthesis of αIIb and integrin αIIbβ3 activation. Increased αIIb was associated with mortality in humans and mice. These findings provide previously unrecognized evidence that human and murine sepsis similarly alters the platelet transcriptional and translational landscape. Moreover, ITGA2B is upregulated and functional in sepsis due to trafficking from megakaryocytes and de novo synthesis in platelets and is associated with increased mortality.

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Year:  2019        PMID: 31366617      PMCID: PMC6753624          DOI: 10.1182/blood.2019000067

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  44 in total

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Journal:  Blood       Date:  2010-06-10       Impact factor: 22.113

2.  Epidemiology of severe sepsis in the United States: analysis of incidence, outcome, and associated costs of care.

Authors:  D C Angus; W T Linde-Zwirble; J Lidicker; G Clermont; J Carcillo; M R Pinsky
Journal:  Crit Care Med       Date:  2001-07       Impact factor: 7.598

Review 3.  Signal-dependent protein synthesis by activated platelets: new pathways to altered phenotype and function.

Authors:  Guy A Zimmerman; Andrew S Weyrich
Journal:  Arterioscler Thromb Vasc Biol       Date:  2008-03       Impact factor: 8.311

4.  Platelet function in septic multiple organ dysfunction syndrome.

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5.  Beneficial effect of glycoprotein IIb/IIIa inhibitor (AZ-1) on endothelium in Escherichia coli endotoxin-induced shock.

Authors:  Q Pu; E Wiel; D Corseaux; R Bordet; M A Azrin; M D Ezekowitz; N Lund; B Jude; B Vallet
Journal:  Crit Care Med       Date:  2001-06       Impact factor: 7.598

Review 6.  The role of microvascular thrombosis in sepsis.

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7.  Risk for myocardial infarction and stroke after community-acquired bacteremia: a 20-year population-based cohort study.

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Authors:  Matthew T Rondina; McKenzie Carlisle; Tamra Fraughton; Samuel M Brown; Russell R Miller; Estelle S Harris; Andrew S Weyrich; Guy A Zimmerman; Mark A Supiano; Colin K Grissom
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2014-06-10       Impact factor: 6.053

9.  Activated platelets mediate inflammatory signaling by regulated interleukin 1beta synthesis.

Authors:  S Lindemann; N D Tolley; D A Dixon; T M McIntyre; S M Prescott; G A Zimmerman; A S Weyrich
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10.  Signal-dependent splicing of tissue factor pre-mRNA modulates the thrombogenicity of human platelets.

Authors:  Hansjörg Schwertz; Neal D Tolley; Jason M Foulks; Melvin M Denis; Ben W Risenmay; Michael Buerke; Rachel E Tilley; Matthew T Rondina; Estelle M Harris; Larry W Kraiss; Nigel Mackman; Guy A Zimmerman; Andrew S Weyrich
Journal:  J Exp Med       Date:  2006-10-23       Impact factor: 14.307

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  42 in total

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Journal:  Platelets       Date:  2020-01-14       Impact factor: 3.862

2.  Dynamic changes in human single-cell transcriptional signatures during fatal sepsis.

Authors:  Xinru Qiu; Jiang Li; Jeff Bonenfant; Lukasz Jaroszewski; Aarti Mittal; Walter Klein; Adam Godzik; Meera G Nair
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4.  miR-125a-5p regulates megakaryocyte proplatelet formation via the actin-bundling protein L-plastin.

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Journal:  Blood       Date:  2020-10-08       Impact factor: 22.113

Review 5.  Is there a role for the ACE2 receptor in SARS-CoV-2 interactions with platelets?

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6.  FcγRIIA expression accelerates nephritis and increases platelet activation in systemic lupus erythematosus.

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Journal:  Blood       Date:  2020-12-17       Impact factor: 22.113

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8.  Heparanase expression and activity are increased in platelets during clinical sepsis.

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9.  Platelet electrical resistance for measuring platelet activation and adhesion in human health and disease.

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Journal:  Thromb Res       Date:  2020-12-18       Impact factor: 3.944

10.  Assessment of a complete and classified platelet proteome from genome-wide transcripts of human platelets and megakaryocytes covering platelet functions.

Authors:  Frauke Swieringa; Fiorella A Solari; Albert Sickmann; Mattia Frontini; Johan W M Heemskerk; Jingnan Huang; Isabella Provenzale; Luigi Grassi; Ilaria De Simone; Constance C F M J Baaten; Rachel Cavill
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