13 results on '"Martínez‐Batallar, A. G."'
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2. The Salmonella enterica serovar Typhi ltrR-ompR-ompC-ompF genes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation
3. The CRISPR-Cas System Is Involved in OmpR Genetic Regulation for Outer Membrane Protein Synthesis in Salmonella Typhi
4. TheSalmonella entericaSerovar TyphiltrRGene Encodes Two Proteins Whose Transcriptional Expression Is Upregulated by Alkaline pH and Repressed at Their Promoters and Coding Regions by H-NS and Lrp
5. Principal component analysis on LC-MS/MS and 2DE-MALDI-TOF in glioblastoma cell lines reveals that mitochondria act as organelle sensors of the metabolic state in glioblastoma.
6. Development of a novel protein identification approach to define mitochondrial proteomic signatures in glioblastoma oncogenesis: T98G vs U87MG cell lines model
7. Infection with Plasmodium berghei ookinetes alters protein expression in the brain of Anopheles albimanus mosquitoes
8. TheSalmonella entericaserovar TyphiltrR-ompR-ompC-ompFgenes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation
9. The LysR-Type Transcriptional Regulator LeuO Controls Expression of Several Genes in Salmonella enterica Serovar Typhi
10. The S almonella enterica serovar Typhi ltrR- ompR- ompC - ompF genes are involved in resistance to the bile salt sodium deoxycholate and in bacterial transformation.
11. The Salmonella enterica Serovar Typhi ltrR Gene Encodes Two Proteins Whose Transcriptional Expression Is Upregulated by Alkaline pH and Repressed at Their Promoters and Coding Regions by H-NS and Lrp.
12. Proteomic analysis of chloroplast biogenesis (clb) mutants uncovers novel proteins potentially involved in the development of Arabidopsis thaliana chloroplasts.
13. Data for a comparative proteomic analysis of chloroplast biogenesis (clb) mutants.
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