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1.
Commun Biol ; 3(1): 701, 2020 11 20.
Article de Anglais | MEDLINE | ID: mdl-33219324

RÉSUMÉ

Mitosis has been validated by numerous anti-cancer drugs as being a druggable process, and selective inhibition of parasite proliferation provides an obvious opportunity for therapeutic intervention against malaria. Mitosis is controlled through the interplay between several protein kinases and phosphatases. We show here that inhibitors of human mitotic kinases belonging to the Aurora family inhibit P. falciparum proliferation in vitro with various potencies, and that a genetic selection for mutant parasites resistant to one of the drugs, Hesperadin, identifies a resistance mechanism mediated by a member of a different kinase family, PfNek1 (PF3D7_1228300). Intriguingly, loss of PfNek1 catalytic activity provides protection against drug action. This points to an undescribed functional interaction between Ark and Nek kinases and shows that existing inhibitors can be used to validate additional essential and druggable kinase functions in the parasite.


Sujet(s)
Aurora kinases , Épistasie , Indoles/pharmacologie , Kinase-1 apparentée à NIMA , Plasmodium falciparum , Sulfonamides/pharmacologie , Aurora kinases/antagonistes et inhibiteurs , Aurora kinases/composition chimique , Aurora kinases/métabolisme , Épistasie/effets des médicaments et des substances chimiques , Épistasie/génétique , Humains , Kinase-1 apparentée à NIMA/composition chimique , Kinase-1 apparentée à NIMA/génétique , Kinase-1 apparentée à NIMA/métabolisme , Plasmodium falciparum/effets des médicaments et des substances chimiques , Plasmodium falciparum/croissance et développement , Plasmodium falciparum/métabolisme , Protéines de protozoaire/antagonistes et inhibiteurs , Protéines de protozoaire/composition chimique , Protéines de protozoaire/métabolisme
2.
Sci Rep ; 7(1): 5445, 2017 07 14.
Article de Anglais | MEDLINE | ID: mdl-28710492

RÉSUMÉ

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.


Sujet(s)
Antinéoplasiques/pharmacologie , Cisplatine/pharmacologie , Réparation de l'ADN , Kinase-1 apparentée à NIMA/composition chimique , Inhibiteurs de protéines kinases/composition chimique , Antinéoplasiques/composition chimique , Sites de fixation , Cisplatine/composition chimique , Clonage moléculaire , Cristallographie aux rayons X , Altération de l'ADN , Escherichia coli/génétique , Escherichia coli/métabolisme , Expression des gènes , Vecteurs génétiques/composition chimique , Vecteurs génétiques/métabolisme , Cellules HEK293 , Humains , Cinétique , Modèles moléculaires , Kinase-1 apparentée à NIMA/antagonistes et inhibiteurs , Kinase-1 apparentée à NIMA/génétique , Kinase-1 apparentée à NIMA/métabolisme , Phosphorylation/effets des médicaments et des substances chimiques , Liaison aux protéines , Structure en hélice alpha , Structure en brin bêta , Motifs et domaines d'intéraction protéique , Cartographie d'interactions entre protéines , Inhibiteurs de protéines kinases/métabolisme , Inhibiteurs de protéines kinases/pharmacologie , Protéines recombinantes/composition chimique , Protéines recombinantes/génétique , Protéines recombinantes/métabolisme , Spécificité du substrat
3.
J Biomol Screen ; 19(6): 936-46, 2014 Jul.
Article de Anglais | MEDLINE | ID: mdl-24464431

RÉSUMÉ

During viral infection of human cells, host kinases mediate signaling activities that are used by all viruses for replication; therefore, targeting of host kinases is of broad therapeutic interest. Here, host kinases were globally screened during human influenza virus (H1N1) infection to determine the time-dependent effects of virus infection and replication on kinase function. Desthiobiotin-labeled analogs of adenosine triphosphate and adenosine diphosphate were used to probe and covalently label host kinases in infected cell lysates, and probe affinity was determined. Using infected human A549 cells, we screened for time-dependent signal changes and identified host kinases whose probe affinities differed significantly when compared to uninfected cells. Our screen identified 10 novel host kinases that have not been previously shown to be involved with influenza virus replication, and we validated the functional importance of these novel kinases during infection using targeted small interfering RNAs (siRNAs). The effects of kinase-targeted siRNA knockdowns on replicating virus levels were measured by quantitative reverse-transcription PCR and cytoprotection assays. We identified several novel host kinases that, when knocked down, enhanced or reduced the viral load in cell culture. This preliminary work represents the first screen of the changing host kinome in influenza virus-infected human cells.


Sujet(s)
Sous-type H1N1 du virus de la grippe A/physiologie , Grippe humaine/enzymologie , Protein-Serine-Threonine Kinases/composition chimique , Petit ARN interférent/génétique , Réplication virale , Cellules A549 , ADP/composition chimique , Adénosine triphosphate/composition chimique , Apoptose , Biotine/analogues et dérivés , Biotine/composition chimique , Survie cellulaire , Chromatographie en phase liquide , Découverte de médicament , Humains , Spectrométrie de masse , Kinase-1 apparentée à NIMA/composition chimique , Peptides/composition chimique , RT-PCR , Serine-threonine kinase-3 , Charge virale
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