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    C

    Cancer Research UK Manchester Institute

    EST. 1932
    1,329论文总数
    10.5万引用总数

    Cancer Research UK (CRUK) is the world's largest independent cancer research organization. It is registered as a charity in the United Kingdom and Isle of Man, and was formed on 4 February 2002 by the merger of The Cancer Research Campaign and the Imperial Cancer Research Fund. Cancer Research UK conducts research using both its own staff and grant-funded researchers. It also provides information about cancer and runs campaigns aimed at raising awareness and influencing public policy.The organisation's work is almost entirely funded by the public. It raises money through donations, legacies, community fundraising, events, retail and corporate partnerships. Over 40,000 people are regular volunteers.

    论文量&引用量时间轴

    机构学者

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    Geoff Margison
    Geoff Margison
    The University of Manchester
    论文:74引用:0H-index:0
    Peter L Stern
    Peter L Stern
    The University of Manchester
    论文:54引用:0H-index:0
    Iain Hagan
    Iain Hagan
    Department of Cell Division, Paterson Institute for Cancer Research
    论文:46引用:0H-index:0
    C S Potten
    C S Potten
    Epithelial Biology Department, Paterson Institute for Cancer Research, Christie Hospital NHS Trust, Manchester M20 4BX.
    论文:37引用:0H-index:0
    T.M. Dexter
    T.M. Dexter
    论文:34引用:0H-index:0
    Caroline Dive
    Caroline Dive
    University of Manchester;Cancer Research UK Manchester Institute
    论文:34引用:0H-index:0
    Jh Hendry
    Jh Hendry
    Holt Radium Institute, Paterson Institute for Cancer Research
    论文:31引用:0H-index:0
    N.G. Testa
    N.G. Testa
    Department of Experimental Haematology, Paterson Institute for Cancer Research
    论文:28引用:0H-index:0
    Leslie J. Fairbairn
    Leslie J. Fairbairn
    CRC Sections of Haemopoietic Cell and Gene Therapeutics, Paterson Institute for Cancer Research
    论文:27引用:0H-index:0

    论文(1329)

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    1SOX2 Confers Tumour Permissiveness in a Specific Skin Progenitor Population
    Patricia P Centeno, Christopher Chester, Georgios Kanellos, Catriona A Ford,Patrizia Cammareri, Gareth J Inman,Thomas Jamieson,Rachel A Ridgway,Richard Marais,Andrew D Campbell, Owen J Sansom

    The continuous renewal of the skin relies on stem and progenitor cells, yet their differential susceptibility to oncogenic mutations in cutaneous squamous cell carcinoma (cSCC) remains unclear. Rapid cSCC develops in melanoma patients on BRAF inhibitors due to paradoxical MAPK activation. To model this in mice, we use two complementary approaches: HRASG12V with a BRAF inhibitor to mimic paradoxical MAPK activation, and BRAFV600E, which drives MAPK hyperactivation without further treatment. We target these mutations to the interfollicular stem and differentiation-committed progenitors of the basal epidermis. While stem cells rapidly form tumours, progenitors exhibit long-latency resistance despite retaining mutations and repopulating the basal layer. Ultimately, both populations produce similar tumours, showing a shared transformation process. However, SOX2 is uniquely upregulated in progenitor-derived tumours and is expressed in 20% of human cSCC, indicating it might mark tumours arising from committed progenitors. Here, we show that SOX2 overexpression, along with MAPK activation, in progenitors induces a stem-like state and renders this otherwise resistant population permissive to rapid transformation.

    2026Nature communications(2026)引用:3
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    2Loss of T73T75 Phosphorylation on PP2A-B56Par1 Advances Mitotic Entry and Reduces S. Pombe Cell Size
    Lenka Halova, Iain Michael Hagan,Janni Petersen, Duncan L Smith, Yvonne Connolly

    Mitosis is triggered when the rising activity of CDK1-Cyclin B, amplified by the CDK1/Cdc25/Wee1 feedback loop, overcomes inhibitory signalling from Wee1 and counteracting phosphatases. CDK-opposing phosphatases PP1, PP2A-B55 and PP2A-B56 are regulators of mitosis. A screen for differentially phosphorylated sites in a ΔPP1dis2 genetic background in Schizosaccharomyces pombe identified phosphorylation of T73 or T75 in the regulatory B56Par1 subunit. The B56Par1.T73T75 phosphorylation is directly mediated by CDK1-Cyclin B, and a phospho-mimetic mutation increased PP2A-B56Par1 phosphatase activity. Blocking B56Par1.T73T75 phosphorylation reduced cell length in unperturbed divisions from 14 to 12 μm, with no other detectable phenotypes. Therefore, blocking phosphorylation at T73T75 alone prematurely unlocked amplification of the CDK1/Cdc25/Wee1 feedback loop, advancing cells into mitosis. Signalling from T73T75 reveals for the first time that timely mitotic commitment in unperturbed cycles is mediated by PP2A-B56.

    2026
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    3Whole-genome Pre-Amplification As a Viable Approach for Genomic Screening of FFPE-derived DNA Samples
    C. Guerrero Quiles, T. Lodhi, R. Sellers, S. Sahoo, J. Weightman, W. Breitwieser, D. Sanchez-Martinez, M. Bartak, A. Shamim, S. Lyons, K. J. Reeves, R. Reed,

    Abstract Whole-genome sequencing (WGS) enables comprehensive analysis of tumour genomes, but its use in formalin-fixed paraffin-embedded (FFPE) samples is limited by DNA fragmentation and low yields. Whole-genome amplification (WGA) methods such as multiple displacement amplification (MDA) can boost DNA availability but distort copy-number alteration (CNA) profiles. DNA ligation-mediated MDA (DLMDA) mitigates this bias by reconstituting fragmented templates, yet its performance in FFPE-derived DNA remains uncertain. We compared paired DLMDA pre-amplified (2h, 8h) and non-pre-amplified FFPE prostate tumour samples from 22 archival blocks (5, 15 and 20 years old). DLMDA increased DNA yield by 42- to 86-fold, with global CNA patterns largely preserved. However, DLMDA significantly reduced the number of detected CNA deletions and amplifications. These effects were independent of both block age and reaction time. CNA dropouts were randomly distributed across the genome, indicating that DLMDA does not introduce regional bias. Our results show that DLMDA enables robust DNA yield recovery and avoids false-positive CNA artefacts, but at the cost of reduced CNA sensitivity. While suitable for CNA screening pipelines through WGS, further improvements are required to minimise the false-negative risk and improve the technique’s sensitivity for FFPE-based genomics.

    2026
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    4Abrogation of Oncogenic RAS Signaling by a RAS(ON) Inhibitor Doublet Primes Immune-Refractory KRASG12C-Mutant NSCLC for Immune Checkpoint Blockade
    Xing Wei,Cristina Blaj, M Ali Al-Radhawi, Lick Pui Lai, Benjamin J Maldonato,Yu Chi Yang, Lillian Seu, Harika Gundlapalli, Lingyan Jiang, Mariela A Moreno Ayala, Jessica N Spradlin, Brett Garrick,

    To address RAS pathway hyperactivation and targeted therapy resistance in KRASG12C-mutant non-small cell lung cancer (NSCLC), we evaluated the potential of the RAS(ON) G12C-selective covalent inhibitor elironrasib and the RAS(ON) multi-selective inhibitor daraxonrasib combination to maximize RAS pathway suppression and forestall pathway reactivation in a series of preclinical models. We demonstrate that the RAS(ON) inhibitor doublet induces profound and sustained tumor regressions and overcomes the increased RAS pathway oncogenic flux that underlies resistance to inactive state-selective KRASG12C inhibitors in NSCLC. Additionally, in immune-competent preclinical models, the RAS(ON) inhibitor doublet enhances tumor immune recognition by boosting antigen presentation and remodeling the suppressive tumor microenvironment, thus promoting immune-dependent complete regressions and sensitization of an immunorefractory model to checkpoint blockade. Collectively, these findings provide a preclinical rationale for the evaluation of a targeted RAS(ON) inhibitor doublet therapy regimen in combination with immune checkpoint blockade (ICB) in patients with KRASG12C-mutant NSCLC. SIGNIFICANCE:The combination of a RAS(ON) G12C-selective and RAS(ON) multi-selective inhibitor mitigates clinical resistance mechanisms to KRASG12C(OFF) inhibitors and enhances tumor immune recognition, overcoming ICB resistance. These preclinical findings highlight the potential for a RAS(ON) targeted therapy regimen in combination with anti-PD-(L)1 in patients with KRASG12C-mutant NSCLC. See related commentary by Molina-Arcas and Downward, p. 1044.

    2026Cancer discovery(2026)
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    5Beyond the Primary Tumour: Rethinking Biomarker Strategies in Recurrent Renal Cell Carcinoma.
    Zayd Tippu, Lewis Au,Samra Turajlić
    2026European urology(2026)
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    合作机构(100)

    曼彻斯特大学合作论文 124
    Christie Hospital合作论文 31
    斯洛伐克科学院合作论文 27
    Royal Manchester Children''s Hospital,Manchester University NHS Foundation Trust合作论文 20
    Christie Hospital NHS Foundation Trust合作论文 19
    伦敦大学学院合作论文 18
    Keele University合作论文 18
    剑桥大学合作论文 16
    纽卡斯尔大学 (澳大利亚)合作论文 16
    牛津大学合作论文 15

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