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R. Godbole, Gaur, A., Nayar, P., Kiruthiga, K., D'Costa, P., Manchanda, R., Khilari, A., Shanmugam, D., Muglikar, K. D., and Kundu, K., Case report: a fatal case of babesiosis in a splenectomized male patient from Western India, American Journal of Tropical Medicine and Hygiene, vol. 106, no. 5, pp. 1421-1425, 2022.
Y. H. Woo, Ansari, H., Otto, T. D., Klinger, C. M., Kolisko, M., Michalek, J., Saxena, A., Shanmugam, D., Tayyrov, A., Veluchamy, A., Ali, S., Bernal, A., del Campo, J., Cihlar, J., Flegontov, P., Gornik, S. G., Hajduskova, E., Horak, A., Janouskovec, J., Katris, N. J., Mast, F. D., Miranda-Saavedra, D., Mourier, T., Naeem, R., Nair, M., Panigrahi, A. K., Rawlings, N. D., Padron-Regalado, E., Ramaprasad, A., Samad, N., Tomcala, A., Wilkes, J., Neafsey, D. E., Doerig, C., Bowler, C., Keeling, P. J., Roos, D. S., Dacks, J. B., Templeton, T. J., Waller, R. F., Lukes, J., Obornik, M., and Pain, A., Chromerid genomes reveal the evolutionary path from photosynthetic algae to obligate intracellular parasites, Elife, vol. 4, p. Article Number: e06974, 2015.
M. K. Singh, Jayarajan, R., Varshney, S., Upadrasta, S., Singh, A., Yadav, R., Scaria, V., Sengupta, S., Shanmugam, D., Shalimar,, Sivasubbu, S., Gandotra, S., and Sachidanandan, C., Chronic systemic exposure to IL6 leads to deregulation of glycolysis and fat accumulation in the zebrafish liver, Biochimica ET Biophysica Acta-Molecular and Cell Biology of Lipids, vol. 1866, no. 5, p. 158905, 2021.
A. James Reid, Vermont, S. J., Cotton, J. A., Harris, D., Hill-Cawthorne, G. A., Koenen-Waisman, S., Latham, S. M., Mourier, T., Norton, R., Quail, M. A., Sanders, M., Shanmugam, D., Sohal, A., Wasmuth, J. D., Brunk, B., Grigg, M. E., Howard, J. C., Parkinson, J., Roos, D. S., Trees, A. J., Berriman, M., Pain, A., and Wastling, J. M., Comparative genomics of the apicomplexan parasites toxoplasma gondii and neospora caninum: coccidia differing in host range and transmission strategy, Plos Pathogens, vol. 8, no. 3, 2012.
R. S. Coyne, Hannick, L., Shanmugam, D., Hostetler, J. B., Brami, D., Joardar, V. S., Johnson, J., Radune, D., Singh, I., Badger, J. H., Kumar, U., Saier, M., Wang, Y., Cai, H., Gu, J., Mather, M. W., Vaidya, A. B., Wilkes, D. E., Rajagopalan, V., Asai, D. J., Pearson, C. G., Findly, R. C., Dickerson, H. W., Wu, M., Martens, C., Van de Peer, Y., Roos, D. S., Cassidy-Hanley, D. M., and Clark, T. G., Comparative genomics of the pathogenic ciliate Ichthyophthirius multifiliis, its free-living relatives and a host species provide insights into adoption of a parasitic lifestyle and prospects for disease control, Genome Biology, vol. 12, no. 10, p. Article Number: R100, 2011.
J. Behari, Borkar, P., Vindu, A., Dandewad, V., Upadrasta, S., Shanmugam, D., and Seshadri, V., Conserved RNA binding activity of phosphatidyl inositol 5-phosphate 4-kinase (PIP4K2A), Frontiers in Molecular Biosciences, vol. 8, p. 631281, 2021.
J. D. Lykins, Filippova, E. V., Halavaty, A. S., Minasov, G., Zhou, Y., Dubrovska, I., Flores, K. J., Shuvalova, L. A., Ruan, J., Bissati, K. El, Dovgin, S., Roberts, C. W., Woods, S., Moulton, J. D., Moulton, H., Mcphillie, M. J., Muench, S. P., Fishwick, C. W. G., Sabini, E., Shanmugam, D., Roos, D. S., Mcleod, R., Anderson, W. F., and Ngo, H. M., CSGID solves structures and identifies phenotypes for five enzymes in toxoplasma gondii, Frontiers in Cellular and Infection Microbiology, vol. 8, 2018.
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D. Niveditha, Khan, S., Khilari, A., Nadkarni, S., Bhalerao, U., Kadam, P., Yadav, R., Kanekar, J. B., Shah, N., Likhitkar, B., Sawant, R., Thakur, S., Tupekar, M., Nagar, D., Rao, A. G., Jagtap, R., Jogi, S., Belekar, M., Pathak, M., Shah, P., Ranade, S., Phadke, N., Das, R., Joshi, S., Karyakarte, R., Ghose, A., Kadoo, N., Shashidhara, L. S., Monteiro, J. Merwin, Shanmugam, D., Raghunathan, A., and Karmodiya, K., Tale of two waves: Delineating diverse genomic and transmission landscapes driving the COVID-19 pandemic in Pune, India, Journal of Infection and Public Health, vol. 16, no. 8, pp. 1290-1300, 2023.
G. Subramanian, Targeted phenotypic screening in plasmodium falciparum and toxoplasma gondii reveals novel modes of action of medicines for malaria venture malaria box molecules, mSphere, vol. 3, no. 1, pp. e00534-17, 2018.
G. Subramanian, Belekar, M. A., Shukla, A., Tong, J. Xin, Sinha, A., Chu, T. T. T., Kulkarni, A. S., Preiser, P. R., D. Reddy, S., Tan, K. S. W., Shanmugam, D., and Chandramohanadas, R., Targeted phenotypic screening in plasmodium falciparum and toxoplasma gondii reveals novel modes of action of medicines for malaria venture malaria box molecules (vol 3, e00534-17, 2018), MSphere, vol. 4, no. 2, pp. e00159-19, 2019.
L. Uran Landaburu, Berenstein, A. J., Videla, S., Maru, P., Shanmugam, D., Chernomoretz, A., and Aguero, F., TDR Targets 6: driving drug discovery for human pathogens through intensive chemogenomic data integration, Nucleic Acids Research, vol. 48, no. D1, pp. D992-D1005, 2020.
M. P. Magarinos, Carmona, S. J., Crowther, G. J., Ralph, S. A., Roos, D. S., Shanmugam, D., and Van Voorhis, W. C., TDR Targets: a chemogenomics resource for neglected diseases, Nucleic Acids Research, vol. 40, no. D1, pp. D1118-D1127, 2012.