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  • Author: Mishra K
  • References

Author: Mishra K


References 19 references


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  • Ramalingam K and Mishra K (2023) Transcription termination complex, Rtt103-Rai1-Rat1, regulates sub-telomeric transcripts in Saccharomyces cerevisiae. RNA Biol 20(1):95-108 PMID:36974034
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  • Deolal P and Mishra K (2022) An adaptable live-cell imaging protocol to analyze organelle morphology in Saccharomyces cerevisiae. STAR Protoc 3(1):101124 PMID:35243366
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  • Deolal P, et al. (2022) Uip4p modulates nuclear pore complex function in Saccharomyces cerevisiae. Nucleus 13(1):79-93 PMID:35171083
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  • Pondugala VV and Mishra K (2022) RNA-Mediated Regulation of Meiosis in Budding Yeast. Noncoding RNA 8(6) PMID:36412912
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  • Deolal P, et al. (2021) The challenge of staying in shape: nuclear size matters. Curr Genet 67(4):605-612 PMID:33779777
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  • Mishra A, et al. (2021) Thermodynamics of adsorption of alcohol dehydrogenase on the gold nanoparticle surface: a model based analysis versus direct measurement. Phys Chem Chem Phys 23(42):24365-24376 PMID:34676852
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  • Garapati HS, et al. (2020) Predicting subcellular localization of proteins using protein-protein interaction data. Genomics 112(3):2361-2368 PMID:31945465
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  • Male G, et al. (2020) Nucleolar size regulates nuclear envelope shape in Saccharomyces cerevisiae. J Cell Sci 133(20) PMID:32973112
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  • Abraham NM, et al. (2019) Siz2 Prevents Ribosomal DNA Recombination by Modulating Levels of Tof2 in Saccharomyces cerevisiae. mSphere 4(6) PMID:31776241
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  • Abraham NM and Mishra K (2018) Elevated dosage of Ulp1 disrupts telomeric silencing in Saccharomyces cerevisiae. Mol Biol Rep 45(6):2481-2489 PMID:30357586
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  • Garapati HS and Mishra K (2018) Comparative genomics of nuclear envelope proteins. BMC Genomics 19(1):823 PMID:30445911
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  • Gujjula R, et al. (2016) Identification of Components of the SUMOylation Machinery in Candida glabrata: ROLE OF THE DESUMOYLATION PEPTIDASE CgUlp2 IN VIRULENCE. J Biol Chem 291(37):19573-89 PMID:27382059
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  • Hannan A, et al. (2015) Sumoylation of Sir2 differentially regulates transcriptional silencing in yeast. Nucleic Acids Res 43(21):10213-26 PMID:26319015
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  • Sreesankar E, et al. (2015) Drosophila Rif1 is an essential gene and controls late developmental events by direct interaction with PP1-87B. Sci Rep 5:10679 PMID:26022086
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  • Tirupataiah S, et al. (2014) Yeast Nkp2 is required for accurate chromosome segregation and interacts with several components of the central kinetochore. Mol Biol Rep 41(2):787-97 PMID:24385296
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  • Pasupala N, et al. (2012) The SUMO E3 ligase Siz2 exerts a locus-dependent effect on gene silencing in Saccharomyces cerevisiae. Eukaryot Cell 11(4):452-62 PMID:22345352
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  • Sreesankar E, et al. (2012) Functional diversification of yeast telomere associated protein, Rif1, in higher eukaryotes. BMC Genomics 13:255 PMID:22712556
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  • Srividya I, et al. (2012) Yeast transcription termination factor Rtt103 functions in DNA damage response. PLoS One 7(2):e31288 PMID:22355353
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  • Mishra K and Shore D (1999) Yeast Ku protein plays a direct role in telomeric silencing and counteracts inhibition by rif proteins. Curr Biol 9(19):1123-6 PMID:10531008
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