Biomechanical forces promote blood development through prostaglandin E2 and the cAMP-PKA signaling axis

  • Diaz, Miguel F.
  • Li, Nan
  • Lee, Hyun Jung
  • Adamo, Luigi
  • Evans, Siobahn M.
  • 외 11명
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초록

Blood flow promotes emergence of definitive hematopoietic stem cells (HSCs) in the developing embryo, yet the signals generated by hemodynamic forces that influence hematopoietic potential remain poorly defined. Here we show that fluid shear stress endows long-term multilineage engraftment potential upon early hematopoietic tissues at embryonic day 9.5, an embryonic stage not previously described to harbor HSCs. Effects on hematopoiesis are mediated in part by a cascade downstream of wall shear stress that involves calcium efflux and stimulation of the prostaglandin E2 (PGE2)-cyclic adenosine monophosphate (cAMP)-protein kinase A (PKA) signaling axis. Blockade of the PGE2- cAMP-PKA pathway in the aorta-gonad-mesonephros (AGM) abolished enhancement in hematopoietic activity. Furthermore, Ncx1 heartbeat mutants, as well as static cultures of AGM, exhibit lower levels of expression of prostaglandin synthases and reduced phosphorylation of the cAMP response element-binding protein (CREB). Similar to flow-exposed cultures, transient treatment of AGM with the synthetic analogue 16,16-dimethyl-PGE2 stimulates more robust engraftment of adult recipients and greater lymphoid reconstitution. These data provide one mechanism by which biomechanical forces induced by blood flow modulate hematopoietic potential. © 2015 Diaz et al.

키워드

cyclic AMPcyclic AMP dependent protein kinasecyclic AMP responsive element binding proteinimmunoglobulin enhancer binding proteinNotch receptorphosphatidylinositol 3 kinasephospholipase Cprostaglandin E2prostaglandin synthasetranscription factor NFATtransforming growth factor betavascular endothelial cadherinvasculotropin receptorWnt proteinCreb1 protein, mousecyclic AMPcyclic AMP dependent protein kinasecyclic AMP responsive element binding proteinprostaglandin E2adaptive immunityadultanimal cellanimal experimentanimal tissueArticleB lymphocytebiomechanicsblood flowbone marrow cellcalcium cell levelcalcium transportcell proliferationcontrolled studyembryoengraftmenterythrocytefemalegene expressiongene expression profilinghemangioblasthematopoiesishematopoietic cellhematopoietic stem cellhematopoietic tissuemesonephrosmousenonhumanosteoblastpriority journalprostaglandin synthesisprotein expressionprotein phosphorylationshear stresssignal transductionupregulationanimalanimal embryoblood flow velocitycytologyembryologygeneticsknockout mousemetabolismphysiological stressphysiologyvascularizationAnimalsBlood Flow VelocityCyclic AMPCyclic AMP Response Element-Binding ProteinCyclic AMP-Dependent Protein KinasesDinoprostoneEmbryo, MammalianMesonephrosMiceMice, KnockoutSignal TransductionStress, Physiological
제목
Biomechanical forces promote blood development through prostaglandin E2 and the cAMP-PKA signaling axis
저자
Diaz, Miguel F.Li, NanLee, Hyun JungAdamo, LuigiEvans, Siobahn M.Willey, Hannah E.Arora, NatashaTorisawa, Yu-SukeVickers, Dwayne A.Morris, Samantha A.Naveiras, OlaiaMurthy, Shashi K.Ingber, Donald E.Daley, George Q.García-Cardeña, GuillermoWenzel, Pamela L.
DOI
10.1084/jem.20142235
발행일
2015-05
유형
Article
저널명
Journal of Experimental Medicine
212
5
페이지
665 ~ 680