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Dr Andrew McKenzie | Cambridge Immunology Network
https://www.immunology.cam.ac.uk/Networkdirectory/anm%40mrc-lmb.cam.ac.uk23 Feb 2024: and McKenzie, A.N.J. A p53-dependent mechanism underlies macrocytic anemia in a mouse model of human 5q. –. -
Chin
https://www2.mrc-lmb.cam.ac.uk/ccsb/category/publications/feed/3 Apr 2024: Fischle, S.M. Gasserem. /em/p p(53)strongAcetylation of Lysine 120 of p53 endows DNA-binding Specificity at Effective Physiological Salt Concentration./strongbr / a -
https://www.immunology.cam.ac.uk/taxonomy/term/77/feed
https://www.immunology.cam.ac.uk/taxonomy/term/77/feed23 Feb 2024: Tweddle DA.<br /> p53 is a Direct Transcriptional Target of MYCN in Neuroblastoma.<br /> Cancer Res. -
https://www.immunology.cam.ac.uk/taxonomy/term/57/feed
https://www.immunology.cam.ac.uk/taxonomy/term/57/feed23 Feb 2024: Cambridge Immunology Network - Department of Medicine https://www.immunology.cam.ac.uk/departments/medicine en Professor Ravindra Gupta https://www.immunology.cam.ac.uk/staff/professor-ravindra-gupta <div class="field field-name-field-sd-consultancy -
https://www.immunology.cam.ac.uk/taxonomy/term/7/feed
https://www.immunology.cam.ac.uk/taxonomy/term/7/feed23 Feb 2024: Cambridge Immunology Network - Autoimmunity and inflammation https://www.immunology.cam.ac.uk/Networkdirectory/research-themes/autoimmunity-inflammation Investigating the causes of excessive and aberrant immune responses which result in inflammation -
https://www.immunology.cam.ac.uk/taxonomy/term/59/feed
https://www.immunology.cam.ac.uk/taxonomy/term/59/feed23 Feb 2024: Cambridge Immunology Network - MRC Laboratory of Molecular Biology https://www.immunology.cam.ac.uk/departments/mrc-lmb en Conor O'Donovan https://www.immunology.cam.ac.uk/staff/conor-odonovan <div class="field field-name-field-sd-consultancy -
https://www.med.cam.ac.uk/marciniak/wp-json/wp/v2/pages/26
https://www.med.cam.ac.uk/marciniak/wp-json/wp/v2/pages/2623 Feb 2024: Br J Cancer. 2013 Apr 2;108(6):1340-7. doi: 10.1038/bjc.2013.66./pnpa href="http://www.ncbi.nlm.nih.gov/pubmed/23341460"p53 and translation attenuation regulate -
https://www.immunology.cam.ac.uk/taxonomy/term/13/feed
https://www.immunology.cam.ac.uk/taxonomy/term/13/feed23 Feb 2024: Cambridge Immunology Network - Molecular and structural immunology https://www.immunology.cam.ac.uk/Networkdirectory/research-themes/molecular-structural-immunology Molecular and structural techniques are used to address a wide range of -
https://www.immunology.cam.ac.uk/taxonomy/term/44/feed
https://www.immunology.cam.ac.uk/taxonomy/term/44/feed23 Feb 2024: Tweddle DA.<br /> p53 is a Direct Transcriptional Target of MYCN in Neuroblastoma.<br /> Cancer Res. -
https://www.immunology.cam.ac.uk/taxonomy/term/25/feed
https://www.immunology.cam.ac.uk/taxonomy/term/25/feed23 Feb 2024: and McKenzie, A.N.J. A p53-dependent mechanism underlies macrocytic anemia in a mouse model of human 5q<sup>–</sup> syndrome. -
Queens' Library General Collection
https://www.queens.cam.ac.uk/files/downloads/general_collection.html3 Jan 2024: p53 : the gene that cracked the cancer code. -
Cytosponge biomarker panel used to prioritise endoscopic…
https://www.oncology.cam.ac.uk/news/cytosponge-biomarker-panel-used-prioritise-endoscopic-barretts-oesophagus-surveillance23 Feb 2024: Published in The Lancet Oncology, researchers evaluated the role of the Cytosponge atypia, p53 overexpression, and clinical risk factors (age, sex, and segment length) to prioritise patients for endoscopy. -
Jason William Chin Page 1 of 18 MRC Laboratory ...
https://www2.mrc-lmb.cam.ac.uk/ccsb/wp-content/uploads/2024/01/Chin-cv-26012024.pdf29 Jan 2024: Chin, W. Fischle, S.M. Gasser. EMBO J. 2011. 30: 2610-2621. (53) Acetylation of Lysine 120 of p53 endows DNA-binding Specificity at Effective Physiological Salt Concentration. -
Cancer and its microenvironment! From mechanisms to translation…
https://www.ubs.admin.cam.ac.uk/system/files/public/cancer_and_its_microenvironment_from_mechanisms_to_translation_non-technical_summary_redacted.pdf30 Apr 2024: Ras) and tumour suppression proteins (e.g. p53, p16/p19ARF or p21) (for review see Hynds et al., 2022; Wang et al., 2022).
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