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1.
Am J Respir Cell Mol Biol ; 58(5): 636-647, 2018 05.
Artigo em Inglês | MEDLINE | ID: mdl-29268036

RESUMO

Sickle cell disease (SCD) is associated with intravascular hemolysis and oxidative inhibition of nitric oxide (NO) signaling. BAY 54-6544 is a small-molecule activator of oxidized soluble guanylate cyclase (sGC), which, unlike endogenous NO and the sGC stimulator, BAY 41-8543, preferentially binds and activates heme-free, NO-insensitive sGC to restore enzymatic cGMP production. We tested orally delivered sGC activator, BAY 54-6544 (17 mg/kg/d), sGC stimulator, BAY 41-8543, sildenafil, and placebo for 4-12 weeks in the Berkeley transgenic mouse model of SCD (BERK-SCD) and their hemizygous (Hemi) littermate controls (BERK-Hemi). Right ventricular (RV) maximum systolic pressure (RVmaxSP) was measured using micro right-heart catheterization. RV hypertrophy (RVH) was determined using Fulton's index and RV corrected weight (ratio of RV to tibia). Pulmonary artery vasoreactivity was tested for endothelium-dependent and -independent vessel relaxation. Right-heart catheterization revealed higher RVmaxSP and RVH in BERK-SCD versus BERK-Hemi, which worsened with age. Treatment with the sGC activator more effectively lowered RVmaxSP and RVH, with 90-day treatment delivering superior results, when compared with other treatments and placebo groups. In myography experiments, acetylcholine-induced (endothelium-dependent) and sodium-nitroprusside-induced (endothelium-independent NO donor) relaxation of the pulmonary artery harvested from placebo-treated BERK-SCD was impaired relative to BERK-Hemi but improved after therapy with sGC activator. By contrast, no significant effect for sGC stimulator or sildenafil was observed in BERK-SCD. These findings suggest that sGC is oxidized in the pulmonary arteries of transgenic SCD mice, leading to blunted responses to NO, and that the sGC activator, BAY 54-6544, may represent a novel therapy for SCD-associated pulmonary arterial hypertension and cardiac remodeling.


Assuntos
Anemia Falciforme/complicações , Ativadores de Enzimas/farmacologia , Ventrículos do Coração/efeitos dos fármacos , Hipertensão Pulmonar/tratamento farmacológico , Hipertrofia Ventricular Esquerda/prevenção & controle , Artéria Pulmonar/efeitos dos fármacos , Guanilil Ciclase Solúvel/metabolismo , Disfunção Ventricular Direita/tratamento farmacológico , Função Ventricular Direita/efeitos dos fármacos , Remodelação Ventricular/efeitos dos fármacos , Anemia Falciforme/genética , Animais , Pressão Arterial/efeitos dos fármacos , Modelos Animais de Doenças , Ativação Enzimática , Ativadores de Enzimas/farmacocinética , Ventrículos do Coração/enzimologia , Ventrículos do Coração/fisiopatologia , Hipertensão Pulmonar/enzimologia , Hipertensão Pulmonar/genética , Hipertensão Pulmonar/fisiopatologia , Hipertrofia Ventricular Esquerda/enzimologia , Hipertrofia Ventricular Esquerda/genética , Hipertrofia Ventricular Esquerda/fisiopatologia , Camundongos Transgênicos , Morfolinas/farmacologia , Óxido Nítrico/metabolismo , Artéria Pulmonar/enzimologia , Artéria Pulmonar/fisiopatologia , Pirimidinas/farmacologia , Citrato de Sildenafila/farmacologia , Vasodilatação/efeitos dos fármacos , Disfunção Ventricular Direita/enzimologia , Disfunção Ventricular Direita/genética , Disfunção Ventricular Direita/fisiopatologia , Pressão Ventricular/efeitos dos fármacos
2.
J Investig Med ; 66(1): 1-6, 2018 01.
Artigo em Inglês | MEDLINE | ID: mdl-29101126

RESUMO

Anemia is a very common blood disorder that affects the lives of billions of people worldwide. Anemia is caused by the loss of blood, increased destruction of red blood cells (RBCs), or reduced production of RBCs. Erythropoiesis is the complex process of RBC differentiation and maturation, in which protein degradation plays a crucial role. Protein ubiquitination regulates programmed protein degradation, which can be reversed by deubiquitinating enzymes (DUBs); however, the role of DUBs in erythropoiesis has not been well studied. We examined the expression of DUBs during erythropoiesis using an ex vivo human CD34+ hematopoietic progenitor cell culture system. Here we show that ubiquitin-specific protease 50 (USP50) levels are increased during erythropoiesis. USP50 mRNA levels are significantly increased on day 3 and protein levels are elevated on day 9 of erythroid differentiation. Coimmunoprecipitation and proteomics analyses reveal that Ku70, a DNA-binding protein, is associated with USP50. Overexpression of USP50 has no effect on Ku70 mRNA levels, while it reduces Ku70 protein levels by promoting Ku70 degradation, suggesting that USP50 may indirectly regulate Ku70 protein stability. USP50 protein is also not stable. USP50 protein degradation is independent of the proteasomal and the lysosomal degradation systems. This study suggests that DUBs like USP50 may regulate protein stability during erythropoiesis; however, more investigation is warranted.


Assuntos
Eritropoese , Autoantígeno Ku/metabolismo , Proteases Específicas de Ubiquitina/metabolismo , Animais , Antígenos CD34/metabolismo , Núcleo Celular/metabolismo , Células Cultivadas , Indução Enzimática , Células HEK293 , Células-Tronco Hematopoéticas/metabolismo , Humanos , Camundongos , Estabilidade Proteica , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
3.
J Investig Med ; 63(6): 806-10, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-26107423

RESUMO

Interleukin-33 (IL-33) is a member of the IL-1 cytokine superfamily that potently drives production of a variety of cytokines and contributes to the pathogenesis of inflammatory diseases. The IL-33 is a nuclear protein and is released from apoptotic or necrotic cells. Serum IL-33 levels are increased in various diseases, such as atopic dermatitis, chronic hepatitis C infection, and asthma. Here, we show that red blood cells (RBCs) are one of the major sources of plasma IL-33. The IL-33 levels are significantly increased in supernatants from lysed RBCs. Plasma IL-33 levels are increased in patients during hemolysis, and plasma IL-33 levels show a positive correlation with degree of hemolysis. The IL-33 protein and messenger RNA levels were detected in the late stages of differentiation in ex vivo primary human erythroid progenitor cell cultures, suggesting that IL-33 is expressed during maturation of RBCs. Furthermore, hemoglobin depleted red cell lysates induced IL-8 expression in human epithelial cells. This effect was attenuated in IL-33 decoy receptor expressing cells and was enhanced in IL-33 receptor expressing cells. These results suggest that erythroid progenitor cells produce IL-33 and circulating RBCs represent a major source of IL-33 that is released upon hemolysis.


Assuntos
Eritrócitos/metabolismo , Interleucina-33/metabolismo , Anemia Falciforme/sangue , Extratos Celulares , Células Epiteliais/metabolismo , Células-Tronco Hematopoéticas/metabolismo , Hemoglobinas/metabolismo , Hemólise , Humanos , Interleucina-33/genética , Interleucina-8/genética , Interleucina-8/metabolismo , Pulmão/patologia , Modelos Biológicos , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
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