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MLK3 mediates impact of PKG1α on cardiac function and controls blood pressure through separate mechanisms.
Calamaras, Timothy D; Pande, Suchita; Baumgartner, Robert Au; Kim, Seung Kyum; McCarthy, Joseph C; Martin, Gregory L; Tam, Kelly; McLaughlin, Angela L; Wang, Guang-Rong; Aronovitz, Mark J; Lin, Weiyu; Aguirre, Jonathan I; Baca, Paulina; Liu, Peiwen; Richards, Daniel A; Davis, Roger J; Karas, Richard H; Jaffe, Iris Z; Blanton, Robert M.
Afiliación
  • Calamaras TD; Molecular Cardiology Research Institute and.
  • Pande S; Molecular Cardiology Research Institute and.
  • Baumgartner RA; Molecular Cardiology Research Institute and.
  • Kim SK; Molecular Cardiology Research Institute and.
  • McCarthy JC; Molecular Cardiology Research Institute and.
  • Martin GL; Molecular Cardiology Research Institute and.
  • Tam K; Molecular Cardiology Research Institute and.
  • McLaughlin AL; Molecular Cardiology Research Institute and.
  • Wang GR; Molecular Cardiology Research Institute and.
  • Aronovitz MJ; Molecular Cardiology Research Institute and.
  • Lin W; Molecular Cardiology Research Institute and.
  • Aguirre JI; Graduate School of Biomedical Sciences, Tufts University, Boston, Massachusetts, USA.
  • Baca P; Molecular Cardiology Research Institute and.
  • Liu P; Molecular Cardiology Research Institute and.
  • Richards DA; Graduate School of Biomedical Sciences, Tufts University, Boston, Massachusetts, USA.
  • Davis RJ; Molecular Cardiology Research Institute and.
  • Karas RH; Graduate School of Biomedical Sciences, Tufts University, Boston, Massachusetts, USA.
  • Jaffe IZ; Molecular Cardiology Research Institute and.
  • Blanton RM; University of Massachusetts School of Medicine, Worchester, Massachusetts, USA.
JCI Insight ; 6(18)2021 09 22.
Article en En | MEDLINE | ID: mdl-34324442
ABSTRACT
cGMP-dependent protein kinase 1α (PKG1α) promotes left ventricle (LV) compensation after pressure overload. PKG1-activating drugs improve heart failure (HF) outcomes but are limited by vasodilation-induced hypotension. Signaling molecules that mediate PKG1α cardiac therapeutic effects but do not promote PKG1α-induced hypotension could therefore represent improved therapeutic targets. We investigated roles of mixed lineage kinase 3 (MLK3) in mediating PKG1α effects on LV function after pressure overload and in regulating BP. In a transaortic constriction HF model, PKG activation with sildenafil preserved LV function in MLK3+/+ but not MLK3-/- littermates. MLK3 coimmunoprecipitated with PKG1α. MLK3-PKG1α cointeraction decreased in failing LVs. PKG1α phosphorylated MLK3 on Thr277/Ser281 sites required for kinase activation. MLK3-/- mice displayed hypertension and increased arterial stiffness, though PKG stimulation with sildenafil or the soluble guanylate cyclase (sGC) stimulator BAY41-2272 still reduced BP in MLK3-/- mice. MLK3 kinase inhibition with URMC-099 did not affect BP but induced LV dysfunction in mice. These data reveal MLK3 as a PKG1α substrate mediating PKG1α preservation of LV function but not acute PKG1α BP effects. Mechanistically, MLK3 kinase-dependent effects preserved LV function, whereas MLK3 kinase-independent signaling regulated BP. These findings suggest augmenting MLK3 kinase activity could preserve LV function in HF but avoid hypotension from PKG1α activation.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Disfunción Ventricular Izquierda / Quinasas Quinasa Quinasa PAM / Proteína Quinasa Dependiente de GMP Cíclico Tipo I / Insuficiencia Cardíaca Tipo de estudio: Etiology_studies / Prognostic_studies Límite: Animals / Humans / Male Idioma: En Año: 2021 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Disfunción Ventricular Izquierda / Quinasas Quinasa Quinasa PAM / Proteína Quinasa Dependiente de GMP Cíclico Tipo I / Insuficiencia Cardíaca Tipo de estudio: Etiology_studies / Prognostic_studies Límite: Animals / Humans / Male Idioma: En Año: 2021 Tipo del documento: Article