Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets
10.1038/srep17759
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sg-nus-scholar.10635-1803062020-12-23T03:05:29Z Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets Stroehlein, A.J Young, N.D Jex, A.R Sternberg, P.W Tan, P Boag, P.R Hofmann, A Gasser, R.B DUKE-NUS MEDICAL SCHOOL phosphotransferase animal biology biosynthesis drug delivery system drug development drug effects enzymology food and drug administration genetics human parasitology Schistosoma haematobium schistosomiasis haematobia United States Animals Computational Biology Drug Delivery Systems Drug Discovery Humans Phosphotransferases Schistosoma haematobium Schistosomiasis haematobia United States United States Food and Drug Administration 10.1038/srep17759 Scientific Reports 5 17759 2020-10-26T08:27:24Z 2020-10-26T08:27:24Z 2015 Article Stroehlein, A.J, Young, N.D, Jex, A.R, Sternberg, P.W, Tan, P, Boag, P.R, Hofmann, A, Gasser, R.B (2015). Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets. Scientific Reports 5 : 17759. ScholarBank@NUS Repository. https://doi.org/10.1038/srep17759 20452322 https://scholarbank.nus.edu.sg/handle/10635/180306 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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phosphotransferase animal biology biosynthesis drug delivery system drug development drug effects enzymology food and drug administration genetics human parasitology Schistosoma haematobium schistosomiasis haematobia United States Animals Computational Biology Drug Delivery Systems Drug Discovery Humans Phosphotransferases Schistosoma haematobium Schistosomiasis haematobia United States United States Food and Drug Administration |
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phosphotransferase animal biology biosynthesis drug delivery system drug development drug effects enzymology food and drug administration genetics human parasitology Schistosoma haematobium schistosomiasis haematobia United States Animals Computational Biology Drug Delivery Systems Drug Discovery Humans Phosphotransferases Schistosoma haematobium Schistosomiasis haematobia United States United States Food and Drug Administration Stroehlein, A.J Young, N.D Jex, A.R Sternberg, P.W Tan, P Boag, P.R Hofmann, A Gasser, R.B Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
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10.1038/srep17759 |
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DUKE-NUS MEDICAL SCHOOL |
author_facet |
DUKE-NUS MEDICAL SCHOOL Stroehlein, A.J Young, N.D Jex, A.R Sternberg, P.W Tan, P Boag, P.R Hofmann, A Gasser, R.B |
format |
Article |
author |
Stroehlein, A.J Young, N.D Jex, A.R Sternberg, P.W Tan, P Boag, P.R Hofmann, A Gasser, R.B |
author_sort |
Stroehlein, A.J |
title |
Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
title_short |
Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
title_full |
Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
title_fullStr |
Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
title_full_unstemmed |
Defining the Schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
title_sort |
defining the schistosoma haematobium kinome enables the prediction of essential kinases as anti-schistosome drug targets |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/180306 |
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1688754029885128704 |