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1.
Biochem J ; 466(1): 105-14, 2015 Feb 15.
Artigo em Inglês | MEDLINE | ID: mdl-25423617

RESUMO

Ribosome biogenesis is an essential cellular process regulated by the metabolic state of a cell. We examined whether inositol pyrophosphates, energy-rich derivatives of inositol that act as metabolic messengers, play a role in ribosome synthesis in the budding yeast, Saccharomyces cerevisiae. Yeast strains lacking the inositol hexakisphosphate (IP6) kinase Kcs1, which is required for the synthesis of inositol pyrophosphates, display increased sensitivity to translation inhibitors and decreased protein synthesis. These phenotypes are reversed on expression of enzymatically active Kcs1, but not on expression of the inactive form. The kcs1Δ yeast cells exhibit reduced levels of ribosome subunits, suggesting that they are defective in ribosome biogenesis. The rate of rRNA synthesis, the first step of ribosome biogenesis, is decreased in kcs1Δ yeast strains, suggesting that RNA polymerase I (Pol I) activity may be reduced in these cells. We determined that the Pol I subunits, A190, A43 and A34.5, can accept a ß-phosphate moiety from inositol pyrophosphates to undergo serine pyrophosphorylation. Although there is impaired rRNA synthesis in kcs1Δ yeast cells, we did not find any defect in recruitment of Pol I on rDNA, but observed that the rate of transcription elongation was compromised. Taken together, our findings highlight inositol pyrophosphates as novel regulators of rRNA transcription.


Assuntos
Regulação Fúngica da Expressão Gênica , Fosfatos de Inositol/metabolismo , Fosfotransferases (Aceptor do Grupo Fosfato)/genética , Subunidades Proteicas/genética , RNA Polimerase I/genética , Proteínas de Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/genética , Teste de Complementação Genética , Higromicina B/farmacologia , Fosfatos de Inositol/farmacologia , Paromomicina/farmacologia , Fosfotransferases (Aceptor do Grupo Fosfato)/metabolismo , Biossíntese de Proteínas/efeitos dos fármacos , Subunidades Proteicas/metabolismo , Inibidores da Síntese de Proteínas/farmacologia , RNA Polimerase I/metabolismo , RNA Ribossômico/genética , RNA Ribossômico/metabolismo , Ribossomos/genética , Ribossomos/metabolismo , Saccharomyces cerevisiae/efeitos dos fármacos , Saccharomyces cerevisiae/metabolismo , Proteínas de Saccharomyces cerevisiae/metabolismo , Transdução de Sinais , Transcrição Gênica/efeitos dos fármacos
2.
J Biosci ; 40(3): 593-605, 2015 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-26333405

RESUMO

Inositol pyrophosphates are water soluble derivatives of inositol that contain pyrophosphate or diphosphate moieties in addition to monophosphates. The best characterised inositol pyrophosphates, are IP7 (diphosphoinositol pentakisphosphate or PP-IP5), and IP8 (bisdiphosphoinositol tetrakisphosphate or (PP)2-IP4). These energy-rich small molecules are present in all eukaryotic cells, from yeast to mammals, and are involved in a wide range of cellular functions including apoptosis, vesicle trafficking, DNA repair, osmoregulation, phosphate homeostasis, insulin sensitivity, immune signalling, cell cycle regulation, and ribosome synthesis. Identified more than 20 years ago, there is still only a rudimentary understanding of the mechanisms by which inositol pyrophosphates participate in these myriad pathways governing cell physiology and homeostasis. The unique stereochemical and bioenergetic properties these molecules possess as a consequence of the presence of one or two pyrophosphate moieties in the vicinity of densely packed monophosphates are likely to form the molecular basis for their participation in multiple signalling and metabolic pathways. The aim of this review is to provide first time researchers in this area with an introduction to inositol pyrophosphates and a comprehensive overview on their cellular functions.


Assuntos
Células Eucarióticas/metabolismo , Fosfatos de Inositol/química , Fosfatos de Inositol/metabolismo , Animais , Apoptose/fisiologia , Transporte Biológico/fisiologia , Reparo do DNA/fisiologia , Metabolismo Energético/fisiologia , Transdução de Sinais/fisiologia
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