Using iPSC variation to define HIV-1 regulatory networks
Using iPSC variation to define HIV-1 regulatory networks
批准号:
MR/S023747/1
负责人:
Michael Malim
金额:
$207.82万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2020
资助国家:
英国
项目状态:
未结题
起止时间:
2020 至 --
中文摘要
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英文摘要
The pathogenic retrovirus human immunodeficiency virus type 1 (HIV-1) has caused the worldwide acquired immunodeficiency syndrome (AIDS) pandemic. It is estimated that ~37 million people currently live with HIV-1, with ~1.8 million new cases of infection and ~1 million AIDS deaths occurring every year (2017 figures, source: http://www.unaids.org/en/ resources/fact-sheet). AIDS is currently considered a treatable disease as a battery of effective anti-viral drugs that target essential viral proteins have been developed. Critically, there is no vaccine to prevent new infections and, once a person is infected, there is no cure (treatment leading to viral eradication). Moreover, with the passage of time, drug-resistant strains are becoming an increasingly significant problem in the clinic. It is therefore necessary to develop new anti-HIV-1 therapeutic approaches. Despite many years of intense investigation, the understanding of the complexity of cell-encoded factors and pathways that regulate HIV-1 replication (both positively and negatively) remains significantly incomplete. The identification and definition of new viral regulatory factors will suggest novel targets for future therapeutic intervention which, in addition to helping control viral growth and HIV-1-associated disease, may also impact research programmes seeking HIV-1 cure and/or vaccination. The feasibility of therapeutically targeting a cellular protein to inhibit HIV-1 is demonstrated by Maraviroc, a small molecule inhibitor that binds the HIV-1 entry receptor CCR5 to block infection. In this programme, we will develop and exploit an innovative inter-disciplinary strategy to discover novel human cell factors and pathways that regulate HIV-1 replication. We will use the deeply characterised HipSci library (www.hipsci.org) of induced pluripotent stem cells (iPSCs), for which detailed genomic, transcriptomic and proteomic information already exists, and correlate variations in HIV-1 infection phenotypes with key molecular signatures that are intrinsic to each iPSC line. To complement this approach, we will also reprogramme blood samples from patients at high risk of HIV-1 infection, and with known disease outcomes (the Multicenter AIDS Cohort Study - MACS; http://aidscohortstudy.org/), into iPSCs. Co-ordinated characterisation of these lines will add a further dimension to our study by also enabling molecular signatures and infection data to be correlated with clinical outcomes. In depth bioinformatic interrogation of these orthogonal datasets will suggest candidate cell-encoded HIV-1 regulatory factors, which will then be tested for function using established laboratory models of HIV-1 infection.In sum, our experimental pipeline comprises: (i) screening iPSC cell lines from two sources to find extreme HIV-1 infection phenotypes, (ii) using bioinformatic tools and whole cell molecular signatures to discover new regulatory factors and (iii) validating our findings in cell culture systems and characterising the mechanisms of action of novel HIV-1 regulators at the molecular level. Our goal is to uncover novel human proteins and pathways controlling HIV-1 replication, and to inform initiatives aiming to devise fresh therapeutic strategies for overcoming HIV-1 infection. Finally, and importantly, we are committed to sharing the iPSC lines that we will derive from HIV-1 exposed individuals: these can serve as a unique resource to study HIV-1 biology since iPSCs are virtually inexhaustible and have the potential to be differentiated into any human cell type, including the natural cellular targets of HIV-1.
期刊论文(10)
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DOI:
10.1038/s41564-021-00974-0
发表时间:
2021-11
期刊:
Nature microbiology
影响因子:
28.3
作者:
[Dupont L, Snell LB, Graham C, Seow J, Merrick B, Lechmere T, Maguire TJA, Hallett SR, Pickering S, Charalampous T, Alcolea-Medina A, Huettner I, Jimenez-Guardeño JM, Acors S, Almeida N, Cox D, Dickenson RE, Galao RP, Kouphou N, Lista MJ, Ortega-Prieto AM, Wilson H, Winstone H, Fairhead C, Su JZ, Nebbia G, Batra R, Neil S, Shankar-Hari M, Edgeworth JD, Malim MH, Doores KJ]
通讯作者:
Doores KJ
DOI:
10.1371/journal.pone.0249791
发表时间:
2021
期刊:
PloS one
影响因子:
3.7
作者:
[Sweeney N, Merrick B, Pedro Galão R, Pickering S, Botgros A, Wilson HD, Signell AW, Betancor G, Tan MKI, Ramble J, Kouphou N, Acors S, Graham C, Seow J, MacMahon E, Neil SJD, Malim MH, Doores K, Douthwaite S, Batra R, Nebbia G, Edgeworth JD]
通讯作者:
Edgeworth JD
DOI:
10.1016/j.jinf.2020.10.011
发表时间:
2020-12
期刊:
The Journal of infection
影响因子:
--
作者:
[Wells PM, Doores KJ, Couvreur S, Nunez RM, Seow J, Graham C, Acors S, Kouphou N, Neil SJD, Tedder RS, Matos PM, Poulton K, Lista MJ, Dickenson RE, Sertkaya H, Maguire TJA, Scourfield EJ, Bowyer RCE, Hart D, O'Byrne A, Steel KJA, Hemmings O, Rosadas C, McClure MO, Capedevilla-Pujol J, Wolf J, Ourselin S, Brown MA, Malim MH, Spector T, Steves CJ]
通讯作者:
Steves CJ
DOI:
10.1038/s41598-023-34598-7
发表时间:
2023-06-27
期刊:
Scientific reports
影响因子:
4.6
作者:
[]
通讯作者:
DOI:
10.1016/j.immuni.2021.03.023
发表时间:
2021-06-08
期刊:
Immunity
影响因子:
32.4
作者:
[Graham C, Seow J, Huettner I, Khan H, Kouphou N, Acors S, Winstone H, Pickering S, Galao RP, Dupont L, Lista MJ, Jimenez-Guardeño JM, Laing AG, Wu Y, Joseph M, Muir L, van Gils MJ, Ng WM, Duyvesteyn HME, Zhao Y, Bowden TA, Shankar-Hari M, Rosa A, Cherepanov P, McCoy LE, Hayday AC, Neil SJD, Malim MH, Doores KJ]
通讯作者:
Doores KJ
共 8 条
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