Zobrazeno 1 - 10
of 60
pro vyhledávání: '"M R Robinson"'
Autor:
M. Rizzi, K. Powell, M. R. Robinson, T. Matsuki, J. Hoke, R. N. Maswood, A. Georgiadis, M. Georgiou, P. R. Jones, C. Ripamonti, F. M. Nadal-Nicolás, M. Michaelides, G. S. Rubin, A. J. Smith, R. R. Ali
Publikováno v:
Nature Communications, Vol 13, Iss 1, Pp 1-10 (2022)
Treatments to rescue vision are currently limited. Here, the authors identify a cone-driven gain control mechanism that reduces visual function beyond the atrophic area in humans. They also show that activating laterally projecting cells results impr
Externí odkaz:
https://doaj.org/article/e63d1cf87c5a40a4bace2190d44234ce
Autor:
Diana Zatreanu, Helen M. R. Robinson, Omar Alkhatib, Marie Boursier, Harry Finch, Lerin Geo, Diego Grande, Vera Grinkevich, Robert A. Heald, Sophie Langdon, Jayesh Majithiya, Claire McWhirter, Niall M. B. Martin, Shaun Moore, Joana Neves, Eeson Rajendra, Marco Ranzani, Theresia Schaedler, Martin Stockley, Kimberley Wiggins, Rachel Brough, Sandhya Sridhar, Aditi Gulati, Nan Shao, Luned M. Badder, Daniela Novo, Eleanor G. Knight, Rebecca Marlow, Syed Haider, Elsa Callen, Graeme Hewitt, Joost Schimmel, Remko Prevo, Christina Alli, Amanda Ferdinand, Cameron Bell, Peter Blencowe, Chris Bot, Mathew Calder, Mark Charles, Jayne Curry, Tennyson Ekwuru, Katherine Ewings, Wojciech Krajewski, Ellen MacDonald, Hollie McCarron, Leon Pang, Chris Pedder, Laurent Rigoreau, Martin Swarbrick, Ed Wheatley, Simon Willis, Ai Ching Wong, Andre Nussenzweig, Marcel Tijsterman, Andrew Tutt, Simon J. Boulton, Geoff S. Higgins, Stephen J. Pettitt, Graeme C. M. Smith, Christopher J. Lord
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
Polθ has been recently identified as a therapeutic target in cancer but specific inhibitors are currently unavailable. Here, the authors identify small molecule inhibitors of Polθ’s polymerase activity which elicit BRCA1/2 synthetic lethality, en
Externí odkaz:
https://doaj.org/article/a5462d8522964b13a5f79a9e1b35250a
Autor:
Martin L. Stockley, Amanda Ferdinand, Giovanni Benedetti, Peter Blencowe, Susan M. Boyd, Mat Calder, Mark D. Charles, Lucy V. Edwardes, Tennyson Ekwuru, Harry Finch, Alessandro Galbiati, Lerin Geo, Diego Grande, Vera Grinkevich, Nicholas D. Holliday, Wojciech W. Krajewski, Ellen MacDonald, Jayesh B. Majithiya, Hollie McCarron, Claire L. McWhirter, Viral Patel, Chris Pedder, Eeson Rajendra, Marco Ranzani, Laurent J. M. Rigoreau, Helen M. R. Robinson, Theresia Schaedler, Julija Sirina, Graeme C. M. Smith, Martin E. Swarbrick, Andrew P. Turnbull, Simon Willis, Robert A. Heald
Publikováno v:
Journal of Medicinal Chemistry. 65:13879-13891
Human DNA polymerase theta (Polθ), which is essential for microhomology-mediated DNA double strand break repair, has been proposed as an attractive target for the treatment of BRCA deficient and other DNA repair pathway defective cancers. As previou
Autor:
Christina Alli, Christopher J. Lord, Marcel Tijsterman, Katherine Ewings, Marco Ranzani, Ai Ching Wong, Claire McWhirter, Martin Swarbrick, Harry Finch, Robert A. Heald, Rachel Brough, Nan Shao, Rebecca Marlow, Shaun Moore, Vera Grinkevich, Ellen Macdonald, Jayne Curry, Helen M. R. Robinson, Graeme Hewitt, Eleanor Knight, Christopher Bot, Syed Haider, Mathew Calder, Theresia A. Schaedler, Hollie McCarron, Luned M. Badder, Aditi Gulati, Martin Stockley, Eeson Rajendra, Sophie Langdon, Stephen J. Pettitt, Simon J. Boulton, Chris Pedder, Elsa Callen, Ed Wheatley, Wojciech Krajewski, André Nussenzweig, Daniela Novo, Peter Blencowe, Jayesh B. Majithiya, Laurent Rigoreau, Lerin Geo, Cameron Bell, Kimberley A. Wiggins, Diana Zatreanu, Geoff S. Higgins, Remko Prevo, Tennyson Ekwuru, Leon Pang, Simon N. Willis, Sandhya Sridhar, Marie Boursier, Diego Grande, Joana F. Neves, Mark Charles, Joost Schimmel, Andrew Tutt, Niall M. B. Martin, Omar Alkhatib, Amanda Ferdinand, Graeme C. M. Smith
Publikováno v:
Nature Communications, 12(1). NATURE RESEARCH
Nature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
Nature Communications
Nature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
Nature Communications
To identify approaches to target DNA repair vulnerabilities in cancer, we discovered nanomolar potent, selective, low molecular weight (MW), allosteric inhibitors of the polymerase function of DNA polymerase Polθ, including ART558. ART558 inhibits t
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e50fa596497393cd588028cd95531690
https://hdl.handle.net/1887/3213877
https://hdl.handle.net/1887/3213877
Autor:
Diana A. Zatreanu, Helen M. R. Robinson, Omar Alkhatib, Marie Boursier, Harry Finch, Lerin Geo, Diego Grande, Vera Grinkevich, Robert Heald, Sophie Langdon, Jayesh Majithiya, Claire McWhirter, Niall M. B. Martin, Shaun Moore, Joana Neves, Eeson Rajendra, Marco Ranzani, Theresia Schaedler, Martin Stockley, Kimberley Wiggins, Rachel Brough, Sandhya Sridhar, Aditi Gulati, Nan Shao, Luned M Badder, Daniela Novo, Eleanor G. Knight, Rebecca Marlow, Syed Haider, Elsa Callen, Graeme Hewitt, Joost Schimmel, Remko Prevo, Christina Alli, Amanda Ferdinand, Cameron Bell, Peter Blencowe, Mathew Calder, Mark Charles, Jayne Curry, Tennyson Ekwuru, Katherine Ewings, Andre Nussenzweig, Marcel Tijsterman, Andrew Tutt, Simon J. Boulton, Geoff S. Higgins, Steve Pettitt, Graeme C. M. Smith, Christopher J. Lord
Publikováno v:
Molecular Cancer Therapeutics. 20:P056-P056
To target DNA repair vulnerabilities in cancer, we discovered nanomolar potent, selective, low molecular weight, allosteric inhibitors of the polymerase function of DNA polymerase Theta (Polθ), including ART558. ART558 inhibits the major Polθ-media
Autor:
D. Burger, S. Thomas, H. Aepli, M. Dreyer, G. Fabre, E. Marti, H. Sieme, M. R. Robinson, C. Wedekind
There was no linkage disequilibrium among the 20 microsatellite markers.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5890f24a9b868b0332b88bc345d61762
Autor:
D. Burger, S. Thomas, H. Aepli, M. Dreyer, G. Fabre, E. Marti, H. Sieme, M. R. Robinson, C. Wedekind
Observed (Hobs) and expected (Hexp) heterozygosity, test for deviation from Hardy-Weinberg equilibrium (2, d.f., p), heterozygosity deficiency coefficient (Fis), and differentiation between Warmblood and Franches-Montagnes horses (Fst).
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::7b0ea5fd930a7d59ea05f557d55337ed
Autor:
D. Burger, S. Thomas, H. Aepli, M. Dreyer, G. Fabre, E. Marti, H. Sieme, M. R. Robinson, C. Wedekind
Likelihood ratio tests comparing GLMMs and GLMs with genetic markers (fixed factors) and/or stallion identity (“ID”, random factor) and reference models (indicated in italics) to test the effects of (A) number of shared MHC antigens (“MHC”, r
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3f6ae04f6988a769488306eaadb0a5a0
Autor:
D. Burger, S. Thomas, H. Aepli, M. Dreyer, G. Fabre, E. Marti, H. Sieme, M. R. Robinson, C. Wedekind
Likelihood ratio tests comparing GLMMs and GLMs with genetic markers (fixed factors) and/or stallion identity (“ID”, random factor) and reference models (indicated in italics) to test the effects of (A) number of shared MHC antigens (“MHC”, r
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::71751a742f06c069e4103801e275f3db
Autor:
D. Burger, S. Thomas, H. Aepli, M. Dreyer, G. Fabre, E. Marti, H. Sieme, M. R. Robinson, C. Wedekind
The name of the markers, their chromosomal location, their primer sequences [38], the annealing temperature, and the fluorophores we used, the number of alleles found in the present sample (N = 148), and the number of alleles previously observed in 3
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::83f1a2b7a716c18835e7b90ad626a5b8