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Dive into the research topics where Mauro Aldo Montanaro is active.

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Featured researches published by Mauro Aldo Montanaro.


Biochemical Journal | 2015

Methylation of the Gpat2 promoter regulates transient expression during mouse spermatogenesis

Maria Belen Garcia-Fabiani; Mauro Aldo Montanaro; Ezequiel Lacunza; Elizabeth Renee Cattaneo; Rosalind A. Coleman; Magali Pellon-Maison; Maria R. Gonzalez-Baro

We studied the expression pattern and the mechanisms governing the transcription of GPAT2, an enzyme that is highly expressed in testis. GPAT2 is regulated epigenetically and its expression correlates with the initiation of meiosis.


Oncotarget | 2018

Small non-coding RNA landscape is modified by GPAT2 silencing in MDA-MB-231 cells

Ezequiel Lacunza; Mauro Aldo Montanaro; Annamaria Salvati; Domenico Memoli; Francesca Rizzo; María Florencia Henning; Ivana Yoseli Quiroga; Hervé Guillou; Martin C. Abba; Maria R. Gonzalez-Baro; Alessandro Weisz; Magali Pellon-Maison

Glycerol-3-phosphate acyltransferase-2 is a member of “cancer-testis gene” family. Initially linked to lipid metabolism, this gene has been recently found involved also in PIWI-interacting RNAs biogenesis in germline stem cells. To investigate its role in piRNA metabolism in cancer, the gene was silenced in MDA-MB-231 breast cancer cells and small RNA sequencing was applied. PIWI-interacting RNAs and tRNA-derived fragments expression profiles showed changes following GPAT2 silencing. Interestingly, a marked shift in length distribution for both small RNAs was detected in GPAT2-silenced cells. Most downregulated PIWI-interacting RNAs are single copy in the genome, intragenic, hosted in snoRNAs and previously found to be upregulated in cancer cells. Putative targets of these PIWI-interacting RNAs are linked to lipid metabolism. Downregulated tRNA derived fragments derived from, so-called ‘differentiation tRNAs’, whereas upregulated ones derived from proliferation-linked tRNAs. miRNA amounts decrease after Glycerol-3-phosphate acyltransferase-2 silencing and functional enrichment analysis of deregulated miRNA putative targets point to mitochondrial biogenesis, IGF1R signaling and oxidative metabolism of lipids and lipoproteins. In addition, miRNAs known to be overexpressed in breast cancer tumors with poor prognosis where found downregulated in GPAT2-silenced cells. In conclusion, GPAT2 silencing quantitatively and qualitatively affects the population of PIWI-interacting RNAs, tRNA derived fragments and miRNAs which, in combination, result in a more differentiated cancer cell phenotype.


PLOS ONE | 2017

Glycerol-3-phosphate acyltransferase 2 expression modulates cell roughness and membrane permeability: An atomic force microscopy study

Elizabeth Renee Cattaneo; Eduardo Daniel Prieto; Maria Belen Garcia-Fabiani; Mauro Aldo Montanaro; Hervé Guillou; Maria R. Gonzalez-Baro

In mammalian cells, de novo glycerolipid synthesis begins with the acylation of glycerol-3-phosphate, catalyzed by glycerol-3-phosphate acyltransferases (GPAT). GPAT2 is a mitochondrial isoform primarily expressed in testis under physiological conditions, and overexpressed in several types of cancers and cancer-derived human cell lines where its expression contributes to the tumor phenotype. Using gene silencing and atomic force microscopy, we studied the correlation between GPAT2 expression and cell surface topography, roughness and membrane permeability in MDA-MB-231 cells. In addition, we analyzed the glycerolipid composition by gas-liquid chromatography. GPAT2 expression altered the arachidonic acid content in glycerolipids, and the lack of GPAT2 seems to be partially compensated by the overexpression of another arachidonic-acid-metabolizing enzyme, AGPAT11. GPAT2 expressing cells exhibited a rougher topography and less membrane damage than GPAT2 silenced cells. Pore-like structures were present only in GPAT2 subexpressing cells, correlating with higher membrane damage evidenced by lactate dehydrogenase release. These GPAT2-induced changes are consistent with its proposed function as a tumor-promoting gene, and might be used as a phenotypic differentiation marker. AFM provides the basis for the identification and quantification of those changes, and demonstrates the utility of this technique in the study of cancer cell biology.


American Journal of Physiology-endocrinology and Metabolism | 2010

Nuclear receptors and hepatic lipidogenic enzyme response to a dyslipidemic sucrose-rich diet and its reversal by fish oil n-3 polyunsaturated fatty acids

Gustavo J. Hein; Ana M. Bernasconi; Mauro Aldo Montanaro; Magali Pellon-Maison; Gabriela Sandra Finarelli; Adriana Chicco; Yolanda B. Lombardo; Rodolfo R. Brenner


Biochimica et Biophysica Acta | 2007

Mitochondrial glycerol-3-P acyltransferase 1 is most active in outer mitochondrial membrane but not in mitochondrial associated vesicles (MAV)

Magali Pellon-Maison; Mauro Aldo Montanaro; Rosalind A. Coleman; Maria R. Gonzalez-Baro


Tercera Época | 2016

La enzima glicerol-3-fosfato aciltransferasa 2 (GPAT2) es necesaria para la espermatogénesis en el ratón

María Belén García Fabiani; Pablo Stringa; Elizabeth Renee Cattaneo; Magalí Pellón Maisón; María Florencia Henning; Mauro Aldo Montanaro; María del Rosario González Baró


Tercera Época | 2016

El silenciamiento in vivo de GPAT2 activa la apoptosis

María Belén García Fabiani; Pablo Stringa; Elizabeth Renee Cattaneo; Magalí Pellón Maisón; María Florencia Henning; Mauro Aldo Montanaro; María del Rosario González Baró


Tercera Época | 2014

El silenciamiento de GPAT2 en células MDA-MB-231 afecta el remodelado del ácido araquidónico

Elizabeth Renee Cattaneo; C. Guijas; Mauro Aldo Montanaro; Ivana Yoseli Quiroga; J. Balsinde


Tercera Época | 2012

Regulación transcripcional de GPAT2 murina

María Belén García Fabiani; Magalí Pellón Maisón; Elizabeth Renee Cattaneo; Mauro Aldo Montanaro; María del Rosario González Baró


Tercera Época | 2011

Propiedades de la membrana y viabilidad celular: Importancia de la fluidez

M. Jaureguiberry; Alejandra Tricerri; Mauro Aldo Montanaro; Gabriela Sandra Finarelli; Susana A. Sanchez; Omar J. Rimoldi

Collaboration


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Elizabeth Renee Cattaneo

National University of La Plata

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Magali Pellon-Maison

National University of La Plata

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Maria R. Gonzalez-Baro

National University of La Plata

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Ezequiel Lacunza

National University of La Plata

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Ivana Yoseli Quiroga

National University of La Plata

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Martin C. Abba

National University of La Plata

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Pablo Stringa

National University of La Plata

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Rosalind A. Coleman

University of North Carolina at Chapel Hill

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