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DNA Repair|January 24, 2015
DisA and c-di-AMP act at the intersection between DNA-damage response and stress homeostasis in exponentially growing Bacillus subtilis cellsCarolina Gándara, Juan C AlonsoHuman Gene Therapy Methods|December 8, 2017
Manufacture of Third-Generation Lentivirus for Preclinical Use, with Process Development Considerations for Translation to Good Manufacturing PracticeCarolina Gándara, Valerie Affleck, Elizabeth Ann StollDNA Repair|December 31, 2013
DNA double strand break end-processing and RecA induce RecN expression levels in Bacillus subtilisPaula P Cardenas, Carolina Gándara, Juan C AlonsoHuman Gene Therapy Methods|August 18, 2017
A Guide to Approaching Regulatory Considerations for Lentiviral-Mediated Gene TherapiesMichael White, Roger Whittaker, Carolina Gándara, et al.International Journal of Molecular Sciences|November 13, 2021
DisA Restrains the Processing and Cleavage of Reversed Replication Forks by the RuvAB-RecU ResolvasomeCarolina Gándara, Rubén Torres, Begoña Carrasco, et al.Cells|June 2, 2021
DisA Limits RecG Activities at Stalled or Reversed Replication ForksRubén Torres, Carolina Gándara, Begoña Carrasco, et al.Nucleic Acids Research|March 28, 2019
Bacillus subtilis DisA regulates RecA-mediated DNA strand exchangeRubén Torres, Begoña Carrasco, Carolina Gándara, et al.DNA Repair|September 30, 2017
Bacillus subtilis DisA helps to circumvent replicative stress during spore revivalMarina Raguse, Rubén Torres, Elena M Seco, et al.Translational Vision Science & Technology|April 4, 2022
Tropism of AAV Vectors in Photoreceptor-Like Cells of Human iPSC-Derived Retinal OrganoidsMichelle E McClements, Hannah Steward, William Atkin, et al.DNA Repair|May 17, 2017
Activity and in vivo dynamics of Bacillus subtilis DisA are affected by RadA/Sms and by Holliday junction-processing proteinsCarolina Gándara, Daniella K C de Lucena, Rubén Torres, et al.Pageof 1