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Identification of compounds with anti-human cytomegalovirus activity that inhibit production of IE2 proteins.


ABSTRACT: Using a high throughput screening methodology we surveyed a collection of largely uncharacterized validated or suspected kinase inhibitors for anti-human cytomegalovirus (HCMV) activity. From this screen we identified three structurally related 5-aminopyrazine compounds (XMD7-1, -2 and -27) that inhibited HCMV replication in virus yield reduction assays at low micromolar concentrations. Kinase selectivity assays indicated that each compound was a kinase inhibitor capable of inhibiting a range of cellular protein kinases. Western blotting and RNA sequencing demonstrated that treatment of infected cells with XMD7 compounds resulted in a defect in the production of the major HCMV transcriptional transactivator IE2 proteins (IE2-86, IE2-60 and IE2-40) and an overall reduction in transcription from the viral genome. However, production of certain viral proteins was not compromised by treatment with XMD7 compounds. Thus, these novel anti-HCMV compounds likely inhibited transcription from the viral genome and suppressed production of a subset of viral proteins by inhibiting IE2 protein production.

SUBMITTER: Beelontally R 

PROVIDER: S-EPMC5244968 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Identification of compounds with anti-human cytomegalovirus activity that inhibit production of IE2 proteins.

Beelontally Rooksarr R   Wilkie Gavin S GS   Lau Betty B   Goodmaker Charles J CJ   Ho Catherine M K CMK   Swanson Chad M CM   Deng Xianming X   Wang Jinhua J   Gray Nathanael S NS   Davison Andrew J AJ   Strang Blair L BL  

Antiviral research 20161209


Using a high throughput screening methodology we surveyed a collection of largely uncharacterized validated or suspected kinase inhibitors for anti-human cytomegalovirus (HCMV) activity. From this screen we identified three structurally related 5-aminopyrazine compounds (XMD7-1, -2 and -27) that inhibited HCMV replication in virus yield reduction assays at low micromolar concentrations. Kinase selectivity assays indicated that each compound was a kinase inhibitor capable of inhibiting a range of  ...[more]

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