NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin
Abstract NEK family kinases are serine/threonine kinases that have been functionally implicated in the regulation of the disjunction of the centrosome, the assembly of the mitotic spindle, the function of the primary cilium and the DNA damage response. NEK1 shows pleiotropic functions and has been f...
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doaj-80bf2f9526eb4999bda5f11ee8002f152020-12-08T01:22:38ZengNature Publishing GroupScientific Reports2045-23222017-07-017111310.1038/s41598-017-05325-wNEK1 kinase domain structure and its dynamic protein interactome after exposure to CisplatinTalita D. Melo-Hanchuk0Priscila Ferreira Slepicka1Gabriela Vaz Meirelles2Fernanda Luisa Basei3Diogo Ventura Lovato4Daniela Campos Granato5Bianca Alves Pauletti6Romenia Ramos Domingues7Adriana Franco Paes Leme8Alessandra Luiza Pelegrini9Guido Lenz10Stefan Knapp11Jonathan M. Elkins12Jörg Kobarg13Instituto de Biologia, Universidade Estadual de CampinasLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisInstituto de Biologia, Universidade Estadual de CampinasInstituto de Biologia, Universidade Estadual de CampinasLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisLaboratório Nacional de Biociências, Centro Nacional de Pesquisa em Energia e MateriaisCenter of Biotechnology, Universidade Federal do Rio Grande do SulCenter of Biotechnology, Universidade Federal do Rio Grande do SulStructural Genomics Consortium, Nuffield Department of Clinical Medicine, University of OxfordStructural Genomics Consortium, Nuffield Department of Clinical Medicine, University of OxfordInstituto de Biologia, Universidade Estadual de CampinasAbstract NEK family kinases are serine/threonine kinases that have been functionally implicated in the regulation of the disjunction of the centrosome, the assembly of the mitotic spindle, the function of the primary cilium and the DNA damage response. NEK1 shows pleiotropic functions and has been found to be mutated in cancer cells, ciliopathies such as the polycystic kidney disease, as well as in the genetic diseases short-rib thoracic dysplasia, Mohr-syndrome and amyotrophic lateral sclerosis. NEK1 is essential for the ionizing radiation DNA damage response and priming of the ATR kinase and of Rad54 through phosphorylation. Here we report on the structure of the kinase domain of human NEK1 in its apo- and ATP-mimetic inhibitor bound forms. The inhibitor bound structure may allow the design of NEK specific chemo-sensitizing agents to act in conjunction with chemo- or radiation therapy of cancer cells. Furthermore, we characterized the dynamic protein interactome of NEK1 after DNA damage challenge with cisplatin. Our data suggest that NEK1 and its interaction partners trigger the DNA damage pathways responsible for correcting DNA crosslinks.https://doi.org/10.1038/s41598-017-05325-w |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Talita D. Melo-Hanchuk Priscila Ferreira Slepicka Gabriela Vaz Meirelles Fernanda Luisa Basei Diogo Ventura Lovato Daniela Campos Granato Bianca Alves Pauletti Romenia Ramos Domingues Adriana Franco Paes Leme Alessandra Luiza Pelegrini Guido Lenz Stefan Knapp Jonathan M. Elkins Jörg Kobarg |
spellingShingle |
Talita D. Melo-Hanchuk Priscila Ferreira Slepicka Gabriela Vaz Meirelles Fernanda Luisa Basei Diogo Ventura Lovato Daniela Campos Granato Bianca Alves Pauletti Romenia Ramos Domingues Adriana Franco Paes Leme Alessandra Luiza Pelegrini Guido Lenz Stefan Knapp Jonathan M. Elkins Jörg Kobarg NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin Scientific Reports |
author_facet |
Talita D. Melo-Hanchuk Priscila Ferreira Slepicka Gabriela Vaz Meirelles Fernanda Luisa Basei Diogo Ventura Lovato Daniela Campos Granato Bianca Alves Pauletti Romenia Ramos Domingues Adriana Franco Paes Leme Alessandra Luiza Pelegrini Guido Lenz Stefan Knapp Jonathan M. Elkins Jörg Kobarg |
author_sort |
Talita D. Melo-Hanchuk |
title |
NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin |
title_short |
NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin |
title_full |
NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin |
title_fullStr |
NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin |
title_full_unstemmed |
NEK1 kinase domain structure and its dynamic protein interactome after exposure to Cisplatin |
title_sort |
nek1 kinase domain structure and its dynamic protein interactome after exposure to cisplatin |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2017-07-01 |
description |
Abstract NEK family kinases are serine/threonine kinases that have been functionally implicated in the regulation of the disjunction of the centrosome, the assembly of the mitotic spindle, the function of the primary cilium and the DNA damage response. NEK1 shows pleiotropic functions and has been found to be mutated in cancer cells, ciliopathies such as the polycystic kidney disease, as well as in the genetic diseases short-rib thoracic dysplasia, Mohr-syndrome and amyotrophic lateral sclerosis. NEK1 is essential for the ionizing radiation DNA damage response and priming of the ATR kinase and of Rad54 through phosphorylation. Here we report on the structure of the kinase domain of human NEK1 in its apo- and ATP-mimetic inhibitor bound forms. The inhibitor bound structure may allow the design of NEK specific chemo-sensitizing agents to act in conjunction with chemo- or radiation therapy of cancer cells. Furthermore, we characterized the dynamic protein interactome of NEK1 after DNA damage challenge with cisplatin. Our data suggest that NEK1 and its interaction partners trigger the DNA damage pathways responsible for correcting DNA crosslinks. |
url |
https://doi.org/10.1038/s41598-017-05325-w |
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