Saurabh Gautam - Publications

Affiliations: 
Max Planck Institute of Biochemistry 

20 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2023 Saha I, Yuste-Checa P, Da Silva Padilha M, Guo Q, Körner R, Holthusen H, Trinkaus VA, Dudanova I, Fernández-Busnadiego R, Baumeister W, Sanders DW, Gautam S, Diamond MI, Hartl FU, Hipp MS. The AAA+ chaperone VCP disaggregates Tau fibrils and generates aggregate seeds in a cellular system. Nature Communications. 14: 560. PMID 36732333 DOI: 10.1038/s41467-023-36058-2  0.321
2021 Schneider MM, Gautam S, Herling TW, Andrzejewska E, Krainer G, Miller AM, Trinkaus VA, Peter QAE, Ruggeri FS, Vendruscolo M, Bracher A, Dobson CM, Hartl FU, Knowles TPJ. The Hsc70 disaggregation machinery removes monomer units directly from α-synuclein fibril ends. Nature Communications. 12: 5999. PMID 34650037 DOI: 10.1038/s41467-021-25966-w  0.364
2019 Karmakar S, Chakraborty S, Gautam S, Chowdhury PK. Exploring the potency of the naturally occurring polyphenol curcumin as a probe for protein aggregation in crowded environments. International Journal of Biological Macromolecules. PMID 31499117 DOI: 10.1016/J.Ijbiomac.2019.09.049  0.634
2018 Rout AK, Singh H, Patel S, Raghvan V, Gautam S, Minda R, Rao BJ, Chary KVR. Structural characterization of a novel KH-domain containing plant chloroplast endonuclease. Scientific Reports. 8: 13750. PMID 30214061 DOI: 10.1038/S41598-018-31142-W  0.35
2018 Mittal M, Gautam S, Chowdhury PK, Deep S, Sapra S. Role of Tryptophan in Protein–Nanocrystals Interaction: Energy or Charge Transfer Zeitschrift FüR Physikalische Chemie. 233: 41-54. DOI: 10.1515/Zpch-2017-1088  0.511
2017 Gautam S, Karmakar S, Batra R, Sharma P, Pradhan P, Singh J, Kundu B, Chowdhury PK. Polyphenols in combination with β-cyclodextrin can inhibit and disaggregate α-synuclein amyloids under cell mimicking conditions: A promising therapeutic alternative. Biochimica Et Biophysica Acta. PMID 28238838 DOI: 10.1016/J.Bbapap.2017.02.014  0.605
2016 Gautam S, Chowdhury PK. Remedial Synergistic Concoction of β-Cyclodextrin and Naturally Occurring Polyphenols Targeting α-Synuclein Aggregation under Cell Mimicking Conditions Biophysical Journal. 110. DOI: 10.1016/J.Bpj.2015.11.2828  0.631
2015 Kundu J, Kar U, Gautam S, Karmakar S, Chowdhury PK. Unusual effects of crowders on heme retention in myoglobin. Febs Letters. PMID 26606908 DOI: 10.1016/J.Febslet.2015.11.015  0.652
2015 Mukherjee SK, Gautam S, Biswas S, Kundu J, Chowdhury PK. Do Macromolecular Crowding Agents Exert Only Excluded Volume Effect? A Protein Solvation Study. The Journal of Physical Chemistry. B. PMID 26452170 DOI: 10.1021/Acs.Jpcb.5B09446  0.595
2014 Ghosh A, Verma AK, Gautam S, Gupta MN, Goyal A. Structure and functional investigation of ligand binding by a family 35 carbohydrate binding module (CtCBM35) of β-mannanase of family 26 glycoside hydrolase from Clostridium thermocellum. Biochemistry. Biokhimii͡A. 79: 672-86. PMID 25108330 DOI: 10.1134/S0006297914070098  0.314
2014 Gautam S, Karmakar S, Bose A, Chowdhury PK. β-cyclodextrin and curcumin, a potent cocktail for disaggregating and/or inhibiting amyloids: a case study with α-synuclein. Biochemistry. 53: 4081-3. PMID 24933427 DOI: 10.1021/Bi500642F  0.576
2013 Gautam S, Gupta MN. Solid state fluorescence of proteins in high throughput mode and its applications. F1000research. 2: 82. PMID 30997030 DOI: 10.12688/F1000Research.2-82.V1  0.362
2013 Ahmed S, Luis AS, Bras JL, Ghosh A, Gautam S, Gupta MN, Fontes CM, Goyal A. A novel α-L-arabinofuranosidase of family 43 glycoside hydrolase (Ct43Araf) from Clostridium thermocellum. Plos One. 8: e73575. PMID 24039988 DOI: 10.1371/Journal.Pone.0073575  0.351
2013 Gautam S, Gupta MN. WITHDRAWN: Smart polymer-coated microplate wells: Applications in protein purification, protein refolding, and sensing of analytes. Analytical Biochemistry. PMID 23685053 DOI: 10.1016/J.Ab.2013.05.001  0.361
2013 Dubey P, Gautam S, Kumar PPP, Sadanandan S, Haridas V, Gupta MN. Dendrons and dendrimers as pseudochaperonins for refolding of proteins Rsc Advances. 3: 8016. DOI: 10.1039/C3Ra00061C  0.505
2012 Gautam S, Dubey P, Varadarajan R, Gupta MN. Role of smart polymers in protein purification and refolding. Bioengineered. 3: 286-8. PMID 22892577 DOI: 10.4161/Bioe.21372  0.436
2012 Gautam S, Dubey P, Singh P, Varadarajan R, Gupta MN. Simultaneous refolding and purification of recombinant proteins by macro-(affinity ligand) facilitated three-phase partitioning. Analytical Biochemistry. 430: 56-64. PMID 22885237 DOI: 10.1016/J.Ab.2012.07.028  0.439
2012 Gautam S, Dubey P, Singh P, Kesavardhana S, Varadarajan R, Gupta MN. Smart polymer mediated purification and recovery of active proteins from inclusion bodies. Journal of Chromatography. A. 1235: 10-25. PMID 22425208 DOI: 10.1016/J.Chroma.2012.02.048  0.492
2012 Gautam S, Dubey P, Rather GM, Gupta MN. Non-chromatographic strategies for protein refolding. Recent Patents On Biotechnology. 6: 57-68. PMID 22420882 DOI: 10.2174/187220812799789172  0.498
2012 Gautam S, Mukherjee J, Roy I, Gupta MN. Emerging Trends in Designing Short and Efficient Protein Purification Protocols American Journal of Biochemistry and Biotechnology. 8: 230-254. DOI: 10.3844/Ajbbsp.2012.230.254  0.431
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