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  • Author: Joshi A
  • References

Author: Joshi A


References 20 references


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  • Joshi A, et al. (2025) Proteolytic regulation of mitochondrial magnesium channel by m-AAA protease and prohibitin complex. Genetics 229(2) PMID:39657011
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  • Joshi A and Gohil VM (2023) Cardiolipin deficiency leads to the destabilization of mitochondrial magnesium channel MRS2 in Barth syndrome. Hum Mol Genet 32(24):3353-3360 PMID:37721533
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  • Joshi A, et al. (2023) Mitochondrial phospholipid metabolism in health and disease. J Cell Sci 136(17) PMID:37655851
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  • Mahapatra S, et al. (2023) ATP modulates self-perpetuating conformational conversion generating structurally distinct yeast prion amyloids that limit autocatalytic amplification. J Biol Chem 299(5):104654 PMID:36990219
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  • Ghosh S, et al. (2022) MCU-complex-mediated mitochondrial calcium signaling is impaired in Barth syndrome. Hum Mol Genet 31(3):376-385 PMID:34494107
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  • Joshi A, et al. (2022) Recent advances in metabolic engineering of microorganisms for advancing lignocellulose-derived biofuels. Bioengineered 13(4):8135-8163 PMID:35297313
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  • Iadarola DM, et al. (2021) Choline restores respiration in Psd1-deficient yeast by replenishing mitochondrial phosphatidylethanolamine. J Biol Chem 296:100539 PMID:33722607
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  • Joshi A, et al. (2015) Molecular mechanisms of human IRE1 activation through dimerization and ligand binding. Oncotarget 6(15):13019-35 PMID:25968568
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  • Joshi A, et al. (2012) Post-transcriptional regulatory networks play a key role in noise reduction that is conserved from micro-organisms to mammals. FEBS J 279(18):3501-12 PMID:22436024
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  • Egan DF, et al. (2011) Phosphorylation of ULK1 (hATG1) by AMP-activated protein kinase connects energy sensing to mitophagy. Science 331(6016):456-61 PMID:21205641
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  • Joo JH, et al. (2011) Hsp90-Cdc37 chaperone complex regulates Ulk1- and Atg13-mediated mitophagy. Mol Cell 43(4):572-85 PMID:21855797
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  • Joshi A, et al. (2011) Structural and functional organization of RNA regulons in the post-transcriptional regulatory network of yeast. Nucleic Acids Res 39(21):9108-17 PMID:21840901
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  • Michoel T, et al. (2011) Enrichment and aggregation of topological motifs are independent organizational principles of integrated interaction networks. Mol Biosyst 7(10):2769-78 PMID:21860879
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  • Joshi A, et al. (2010) Characterizing regulatory path motifs in integrated networks using perturbational data. Genome Biol 11(3):R32 PMID:20230615
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  • Joshi A, et al. (2009) Module networks revisited: computational assessment and prioritization of model predictions. Bioinformatics 25(4):490-6 PMID:19136553
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  • Michoel T, et al. (2009) Comparative analysis of module-based versus direct methods for reverse-engineering transcriptional regulatory networks. BMC Syst Biol 3:49 PMID:19422680
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  • Bunkoczi G, et al. (2007) Mechanism and substrate recognition of human holo ACP synthase. Chem Biol 14(11):1243-53 PMID:18022563
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  • Bowers J, et al. (2001) MSH-MLH complexes formed at a DNA mismatch are disrupted by the PCNA sliding clamp. J Mol Biol 306(5):957-68 PMID:11237611
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  • Joshi A, et al. (1999) Evidence for (Mac1p)2.DNA ternary complex formation in Mac1p-dependent transactivation at the CTR1 promoter. J Biol Chem 274(1):218-26 PMID:9867833
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  • Serpe M, et al. (1999) Structure-function analysis of the protein-binding domains of Mac1p, a copper-dependent transcriptional activator of copper uptake in Saccharomyces cerevisiae. J Biol Chem 274(41):29211-9 PMID:10506178
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