Antony W Oliver

Antony W Oliver

University of Sussex

H-index: 36

Europe-United Kingdom

About Antony W Oliver

Antony W Oliver, With an exceptional h-index of 36 and a recent h-index of 25 (since 2020), a distinguished researcher at University of Sussex, specializes in the field of Structural Biology, DNA Repair.

His recent articles reflect a diverse array of research interests and contributions to the field:

TopBP1 utilises a bipartite GINS binding mode to support genome replication

Design and synthesis of quinazolin-4-one derivatives as potential anticancer agents and investigation of their interaction with RecQ helicases

Schizosaccharomyces pombe Rtf2 is important for replication fork barrier activity of RTS1 via splicing of Rtf1

Binding of the TRF2 iDDR motif to RAD50 highlights a convergent evolutionary strategy to inactivate MRN at telomeres

CC-seq: Nucleotide-resolution mapping of Spo11 DNA double-strand breaks in S. cerevisiae cells

TopBP1 utilises a bipartite GINS binding mode to activate the replicative helicase

Structural basis for the inactivation of cytosolic DNA sensing by the vaccinia virus

Pathogenic variants in SLF2 and SMC5 cause segmented chromosomes and mosaic variegated hyperploidy

Antony W Oliver Information

University

Position

Senior Research Fellow

Citations(all)

3936

Citations(since 2020)

1946

Cited By

2765

hIndex(all)

36

hIndex(since 2020)

25

i10Index(all)

58

i10Index(since 2020)

49

Email

University Profile Page

University of Sussex

Google Scholar

View Google Scholar Profile

Antony W Oliver Skills & Research Interests

Structural Biology

DNA Repair

Top articles of Antony W Oliver

Title

Journal

Author(s)

Publication Date

TopBP1 utilises a bipartite GINS binding mode to support genome replication

Nature Communications

Matthew Day

Bilal Tetik

Milena Parlak

Yasser Almeida-Hernández

Markus Räschle

...

2024/2/27

Design and synthesis of quinazolin-4-one derivatives as potential anticancer agents and investigation of their interaction with RecQ helicases

Bioorganic Chemistry

Hanan S Haggag

Shaimaa M Aboukhatwa

Mohamed S Nafie

Anju Paul

Nabaweya Sharafeldin

...

2024/3/1

Schizosaccharomyces pombe Rtf2 is important for replication fork barrier activity of RTS1 via splicing of Rtf1

Elife

Alice M Budden

Murat Eravci

Adam T Watson

Eduard Campillo-Funollet

Antony W Oliver

...

2023/8/24

Binding of the TRF2 iDDR motif to RAD50 highlights a convergent evolutionary strategy to inactivate MRN at telomeres

bioRxiv

Freddy Khayat

Majedh Alshmery

Mohinder Pal

Antony W Oliver

Alessandro Bianchi

2023/3/25

CC-seq: Nucleotide-resolution mapping of Spo11 DNA double-strand breaks in S. cerevisiae cells

bioRxiv

George GB Brown

William H Gittens

Rachal M Allison

Antony W Oliver

Matthew J Neale

2023

TopBP1 utilises a bipartite GINS binding mode to activate the replicative helicase

bioRxiv

Matthew Day

Bilal Tetik

Milena Parlak

Yasser Almeida-Hernández

Markus Räschle

...

2023/1/1

Structural basis for the inactivation of cytosolic DNA sensing by the vaccinia virus

Nature communications

Angel Rivera-Calzada

Raquel Arribas-Bosacoma

Alba Ruiz-Ramos

Paloma Escudero-Bravo

Jasminka Boskovic

...

2022/11/18

Pathogenic variants in SLF2 and SMC5 cause segmented chromosomes and mosaic variegated hyperploidy

Nature communications

Laura J Grange

John J Reynolds

Farid Ullah

Bertrand Isidor

Robert F Shearer

...

2022/11/4

Cryo-EM structure of the Smc5/6 holo-complex

Nucleic Acids Research

Stephen T Hallett

Isabella Campbell Harry

Pascale Schellenberger

Lihong Zhou

Nora B Cronin

...

2022/9/9

Structure of the human RAD17–RFC clamp loader and 9–1–1 checkpoint clamp bound to a dsDNA–ssDNA junction

Nucleic Acids Research

Matthew Day

Antony W Oliver

Laurence H Pearl

2022/8/12

Inhibition of MRN activity by a telomere protein motif

Nature Communications

Freddy Khayat

Elda Cannavo

Majedh Alshmery

William R Foster

Charly Chahwan

...

2021/6/22

Structural basis for recruitment of the CHK1 DNA damage kinase by the CLASPIN scaffold protein

Structure

Matthew Day

Sarah Parry-Morris

Jack Houghton-Gisby

Antony W Oliver

Laurence H Pearl

2021/6/3

Nse5/6 is a negative regulator of the ATPase activity of the Smc5/6 complex

Nucleic Acids Research

Stephen T Hallett

Pascale Schellenberger

Lihong Zhou

Fabienne Beuron

Ed Morris

...

2021/5/7

Live-cell single-molecule tracking highlights requirements for stable Smc5/6 chromatin association in vivo

Elife

Thomas J Etheridge

Desiree Villahermosa

Eduard Campillo-Funollet

Alex David Herbert

Anja Irmisch

...

2021/4/16

Phosphorylation-dependent assembly of DNA damage response systems and the central roles of TOPBP1

Matthew Day

Antony W Oliver

Laurence H Pearl

2021/12/1

Uncovering an allosteric mode of action for a selective inhibitor of human Bloom syndrome protein

Elife

Xiangrong Chen

Yusuf I Ali

Charlotte EL Fisher

Raquel Arribas-Bosacoma

Mohan B Rajasekaran

...

2021/3/1

CK2 phosphorylation of human papillomavirus 16 E2 on serine 23 promotes interaction with TopBP1 and is critical for E2 interaction with mitotic chromatin and the viral life cycle

MBio

Apurva T Prabhakar

Claire D James

Dipon Das

Raymonde Otoa

Matthew Day

...

2021/10/26

A role of the Nse4 kleisin and Nse1/Nse3 KITE subunits in the ATPase cycle of SMC5/6

Scientific Reports

Lucie Vondrova

Peter Kolesar

Marek Adamus

Matej Nociar

Antony W Oliver

...

2020/6/16

See List of Professors in Antony W Oliver University(University of Sussex)

Co-Authors

H-index: 110
Stefan Knapp

Stefan Knapp

Goethe-Universität Frankfurt am Main

H-index: 96
Laurence Pearl

Laurence Pearl

University of Sussex

H-index: 53
Andreas Ladurner

Andreas Ladurner

Ludwig-Maximilians-Universität München

H-index: 40
Ashley Pike

Ashley Pike

University of Oxford

H-index: 36
Geoff Kneale

Geoff Kneale

University of Portsmouth

H-index: 29
Simon E Ward

Simon E Ward

Cardiff University

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