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Posible participación de la GTPasa Npa3 en la síntesis de proteínas en la levadura Saccharomyces cerevisiae

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dc.contributor MONICA RAQUEL CALERA MEDINA;248194 es_MX
dc.contributor ROBERTO SANCHEZ OLEA;248190 es_MX
dc.contributor.advisor Calera Medina, Mónica Raquel es_MX
dc.contributor.advisor Sánchez Olea, Roberto es_MX
dc.contributor.advisor Layseca Espinosa, Esther es_MX
dc.contributor.advisor Galicia Cruz, Othir Gidalti es_MX
dc.contributor.advisor Riego Ruiz, Lina Raquel es_MX
dc.contributor.author Félix Pérez, Tania Alejandra es_MX
dc.coverage.spatial México. San Luis Potosí. San Luis Potosí es_MX
dc.creator Tania Félix-Pérez;0009-0006-9632-4828 es_MX
dc.date.accessioned 2024-05-17T19:00:13Z
dc.date.available 2025-04-30
dc.date.available 2024-05-17T19:00:13Z
dc.date.issued 2024-04
dc.identifier.uri https://repositorioinstitucional.uaslp.mx/xmlui/handle/i/8689
dc.description.abstract The essential yeast protein GPN-loop GTPase 1 (Npa3) plays a critical role in RNA polymerase II (RNAPII) assembly and subsequent nuclear import. We previously identified a synthetic lethal interaction between mutants lacking the carboxy-terminal 106-amino acid tail of Npa3 (npa3∆C) and mutants lacking Bud site selection protein 27 (bud27∆). As the prefoldin-like Bud27 protein participates in ribosome biogenesis and translation, we hypothesized that Npa3 may also regulate these biological processes. We investigated this proposal by using Saccharomyces cerevisiae strains episomally expressing either wild-type Npa3 or hypomorphic mutants (Npa3C, Npa3K16R, and Npa3G70A). The Npa3C mutant fully supports RNAPII nuclear localization and activity. However, the Npa3K16R and Npa3G70A mutants only partially support RNAPII nuclear targeting and exhibit a slower growth rate due to a higher reduction in Npa3 function. Cell proliferation in these strains displayed an increased sensitivity to protein synthesis inhibitors hygromycin B and geneticin/G418 (npa3G70A>npa3K16R>npa3∆C>NPA3 cells) but not to transcriptional elongation inhibitors 6-azauracil, mycophenolic acid or 1,10-phenanthroline. In all three mutant strains the increase in sensitivity to both aminoglycoside antibiotics was totally rescued by expressing NPA3. Protein synthesis, visualized by quantifying puromycin incorporation into nascent polypeptide chains, was markedly more sensitive to hygromycin B inhibition in npa3∆C, npa3K16R, and npa3G70A than NPA3 cells. Notably, high-copy expression of the TIF11 gene, that encodes the eukaryotic translation initiation factor 1A (eIF1A) protein, completely suppressed both phenotypes (of reduced basal cell growth and increased sensitivity to hygromycin B) in npa3∆C cells but not npa3K16R or npa3G70A cells. We conclude that Npa3 plays a critical RNAPII-independent and8 previously unrecognized role in translation initiation. This finding provides a rationale for the transcriptional co-regulation of NPA3 and genes involved directly in translation or in ribosome biogenesis es_MX
dc.description.statementofresponsibility Investigadores es_MX
dc.description.statementofresponsibility Estudiantes es_MX
dc.language Inglés es_MX
dc.publisher Facultad de Medicina es_MX
dc.rights Acceso Embargado es_MX
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0 es_MX
dc.subject GTP Fosfohidrolasas (bvs) es_MX
dc.subject Proteínas de Levadura (bvs) es_MX
dc.subject Tesis académica (bvs) es_MX
dc.subject.other MEDICINA Y CIENCIAS DE LA SALUD es_MX
dc.title Posible participación de la GTPasa Npa3 en la síntesis de proteínas en la levadura Saccharomyces cerevisiae es_MX
dc.title.alternative Possible participation of the GTPase Npa3 in protein synthesis in the yeast Saccharomyces cerevisiae es_MX
dc.type Tesis de doctorado es_MX
dc.degree.name Doctorado en Ciencias Biomédicas Básicas es_MX
dc.degree.department Facultad de Medicina es_MX


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