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1.
Yale J Biol Med ; 90(2): 183-193, 2017 06.
Artigo em Inglês | MEDLINE | ID: mdl-28656007

RESUMO

Endothelial abnormalities play a critical role in the pathogenesis of malaria caused by the human pathogen, Plasmodium falciparum. In serious infections and especially in cerebral malaria, red blood cells infected with the parasite are sequestered in small venules in various organs, resulting in endothelial activation and vascular occlusion, which are believed to be largely responsible for the morbidity and mortality caused by this infection, especially in children. We demonstrate that after incubation with infected red blood cells (iRBCs), cultured human umbilical vein endothelial cells (HUVECs) contain parasite protein, genomic DNA, and RNA, as well as intracellular vacuoles with apparent parasite-derived material, but not engulfed or adherent iRBCs. The association of this material with the HUVECs is observed over 96 hours after removal of iRBCs. This phenomenon may occur in endothelial cells in vivo by the process of trogocytosis, in which transfer of material between cells depends on direct cell contact. This process may contribute to the endothelial activation and disruption involved in the pathogenesis of cerebral malaria.


Assuntos
Células Endoteliais/parasitologia , Plasmodium falciparum/fisiologia , Células Cultivadas , Eritrócitos/parasitologia , Humanos , Técnicas In Vitro , Malária Falciparum/parasitologia , Microscopia Eletrônica , Microscopia de Fluorescência , Reação em Cadeia da Polimerase , Veias Umbilicais/citologia , Veias Umbilicais/parasitologia
2.
Eukaryot Cell ; 10(9): 1230-40, 2011 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-21743004

RESUMO

Deadenylation is often the rate-limiting event in regulating the turnover of cellular mRNAs in eukaryotes. Removal of the poly(A) tail initiates mRNA degradation by one of several decay pathways, including deadenylation-dependent decapping, followed by 5' to 3' exonuclease decay or 3' to 5' exosome-mediated decay. In trypanosomatids, mRNA degradation is important in controlling the expression of differentially expressed genes. Genomic annotation studies have revealed several potential deadenylases. Poly(A)-specific RNase (PARN) is a key deadenylase involved in regulating gene expression in mammals, Xenopus oocytes, and higher plants. Trypanosomatids possess three different PARN genes, PARN-1, -2, and -3, each of which is expressed at the mRNA level in two life-cycle stages of the human parasite Trypanosoma brucei. Here we show that T. brucei PARN-1 is an active deadenylase. To determine the role of PARN-1 on mRNA stability in vivo, we overexpressed this protein and analyzed perturbations in mRNA steady-state levels as well as mRNA half-life. Interestingly, a subset of mRNAs was affected, including a family of mRNAs that encode stage-specific coat proteins. These data suggest that PARN-1 functions in stage-specific protein production.


Assuntos
Exorribonucleases/genética , Estabilidade de RNA/genética , RNA Mensageiro/metabolismo , Proteínas Recombinantes de Fusão/isolamento & purificação , Trypanosoma brucei brucei/genética , Exorribonucleases/metabolismo , Meia-Vida , Humanos , Análise em Microsséries , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/metabolismo , Transcrição Gênica , Trypanosoma brucei brucei/metabolismo
3.
J Biol Chem ; 282(45): 32844-55, 2007 Nov 09.
Artigo em Inglês | MEDLINE | ID: mdl-17716967

RESUMO

Transgenic mice, containing a chimeric gene in which the cDNA for phosphoenolpyruvate carboxykinase (GTP) (PEPCK-C) (EC 4.1.1.32) was linked to the alpha-skeletal actin gene promoter, express PEPCK-C in skeletal muscle (1-3 units/g). Breeding two founder lines together produced mice with an activity of PEPCK-C of 9 units/g of muscle (PEPCK-C(mus) mice). These mice were seven times more active in their cages than controls. On a mouse treadmill, PEPCK-C(mus) mice ran up to 6 km at a speed of 20 m/min, whereas controls stopped at 0.2 km. PEPCK-C(mus) mice had an enhanced exercise capacity, with a VO(2max) of 156 +/- 8.0 ml/kg/min, a maximal respiratory exchange ratio of 0.91 +/- 0.03, and a blood lactate concentration of 3.7 +/- 1.0 mm after running for 32 min at a 25 degrees grade; the values for control animals were 112 +/- 21 ml/kg/min, 0.99 +/- 0.08, and 8.1 +/- 5.0 mm respectively. The PEPCK-C(mus) mice ate 60% more than controls but had half the body weight and 10% the body fat as determined by magnetic resonance imaging. In addition, the number of mitochondria and the content of triglyceride in the skeletal muscle of PEPCK-C(mus) mice were greatly increased as compared with controls. PEPCK-C(mus) mice had an extended life span relative to control animals; mice up to an age of 2.5 years ran twice as fast as 6-12-month-old control animals. We conclude that overexpression of PEPCK-C repatterns energy metabolism and leads to greater longevity.


Assuntos
Citosol/enzimologia , Metabolismo Energético , Regulação Enzimológica da Expressão Gênica , Músculo Esquelético/enzimologia , Fosfoenolpiruvato Carboxiquinase (GTP)/metabolismo , Envelhecimento/fisiologia , Animais , Comportamento Animal , Feminino , Masculino , Camundongos , Camundongos Transgênicos , Especificidade de Órgãos , Linhagem , Fosfoenolpiruvato Carboxiquinase (GTP)/genética , Condicionamento Físico Animal , Respiração
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