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Publicaciones Soledad Funes
  • Meneses-Plascencia, J., Moreno-Méndez, E., Ascencio, D., Pérez-Aguilar, C., Munguía-Figueroa, M., Abreu-Goodger, C., Funes, S., & DeLuna, A. (2026). Metformin-induced longevity is associated with retrotransposon dynamics in yeast chronological aging. Mechanisms of Ageing and Development, 231, 112162. https://doi.org/10.1016/j.mad.2026.112162
  • Mendoza-Martínez, A., Bravo-Arévalo, E., Pedroza-Dávila, U., & Funes, S. (2026). Optimized Mechanical Isolation of Mitochondria From <em>Saccharomyces cerevisiae</em> Preserving Atg32 for Quantitative Analysis. BIO-PROTOCOL, 16(1391). https://doi.org/10.21769/bioprotoc.5610
  • Ruelas-Ramírez, H., Mendoza-Martínez, A. E., Medina-Flores, P. A., & Funes, S. (2026). Retrograde signaling is required for Slm35-mediated negative regulation of mitophagy in yeast. Biology Open, 15(1). https://doi.org/10.1242/bio.062106
  • Romo?Casanueva, H., Mendoza?Martínez, A. E., Medina?Flores, P. A., Campero?Basaldua, C., DeLuna, A., & Funes, S. (2026). An upstream open reading frame regulates expression of the mitochondrial protein Slm35 and mitophagy flux. FEBS Letters. Portico. https://doi.org/10.1002/1873-3468.70269
  • Cruz-Bonilla, Erika; Campos, Sergio E.; Funes, Soledad; Abreu-Goodger, Cei; DeLuna, Alexander (2025). The core genetic drivers of chronological aging in yeast are universal regulators of longevity Microbial Cell 12 (1) :274-289
  • Castillo-Casaña, Y., Kawasaki, L., Arias, C., Ruelas-Ramírez, H., Funes, S., Sánchez, N. S., Códiz-Huerta, M. G., Ongay-Larios, L., & Coria, R. (2025). Tau Protein Disrupts Mitochondrial Homeostasis in a Yeast Model: Implications for Alzheimer?s Disease. Molecular Neurobiology, 62(12), 16460?16471. https://doi.org/10.1007/s12035-025-05255-z
  • García-Chávez, D., Domínguez-Martín, E., Kawasaki, L., Ongay-Larios, L., Ruelas-Ramírez, H., Mendoza-Martinez, A. E., Pardo, J. P., Funes, S., & Coria, R. (2024). Prohibitins, Phb1 and Phb2, function as Atg8 receptors to support yeast mitophagy and also play a negative regulatory role in Atg32 processing. Autophagy, 1?12. https://doi.org/10.1080/15548627.2024.2371717
  • Avendaño-Monsalve, M. C., Mendoza-Martínez, A. E., Ponce-Rojas, J. C., Poot-Hernández, A. C., Rincón-Heredia, R., & Funes, S. (2022). Positively charged amino acids at the N terminus of select mitochondrial proteins mediate early recognition by import proteins ???-NAC and Sam37. Journal of Biological Chemistry, 298(6), 101984. https://doi.org/10.1016/j.jbc.2022.101984
  • Avendaño-Monsalve, M. C., Ponce-Rojas, J. C., & Funes, S. (2020). From cytosol to mitochondria: the beginning of a protein journey. Biological Chemistry, 401(6-7), 645?661. doi:10.1515/hsz-2020-0110
  • Rubalcava-Gracia, D., Vázquez-Acevedo, M., Funes, S., Pérez-Martínez, X., & González-Halphen, D. (2018). Mitochondrial versus nuclear gene expression and membrane protein assembly: the case of subunit 2 of yeast cytochrome c oxidase. Molecular Biology of the Cell, 29(7), 820?833. doi:10.1091/mbc.e17-09-0560
  • Ponce?Rojas, J. C., Avendaño?Monsalve, M. C., Yañez?Falcón, A. R., Jaimes?Miranda, F., Garay, E., Torres?Quiroz, F., ? Funes, S. (2017). ????NAC cooperates with Sam37 to mediate early stages of mitochondrial protein import. The FEBS Journal, 284(5), 814?830. doi:10.1111/febs.14024


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