Dr Tatiana Novoselova
| Name | Dr Tatiana Novoselova |
|---|---|
| Job title | Hourly Academic |
| Research institute | |
| Primary appointment | Natural Sciences |
| Email address | tatiana6@mdx.ac.uk |
| Contact category | Academic staff (past) |
Research outputs
Multi-omic profiling reveals the ataxia protein sacsin is required for integrin trafficking and synaptic organization
Romano, L., Aw, W., Hixson, K., Novoselova, T., Havener, T., Howell, S., Taylor-Blake, B., Hall, C., Xing, L., Beri, J., Nethisinghe, S., Perna, L., Hatimy, A., Altadonna, G., Graves, L., Herring, L., Hickey, A., Thalassinos, K., Chapple, J. and Wolter, J. 2022. Multi-omic profiling reveals the ataxia protein sacsin is required for integrin trafficking and synaptic organization. Cell Reports. 41 (5). https://doi.org/10.1016/j.celrep.2022.111580ACTH signalling and adrenal development: lessons from mouse models
Novoselova, T., King, P., Guasti, L., Metherell, L., Clark, A. and Chan, L. 2019. ACTH signalling and adrenal development: lessons from mouse models. Endocrine Connections. 8 (7), pp. R122-R130. https://doi.org/10.1530/ec-19-0190Isolated glucocorticoid deficiency: genetic causes and animal models
Maharaj, A., Maudhoo, A., Chan, L., Novoselova, T., Prasad, R., Metherell, L. and Guasti, L. 2019. Isolated glucocorticoid deficiency: genetic causes and animal models. Journal of Steroid Biochemistry and Molecular Biology. 189, pp. 73-80. https://doi.org/10.1016/j.jsbmb.2019.02.012Oncometabolite induced primary cilia loss in pheochromocytoma
O'Toole, S., Watson, D., Novoselova, T., Romano, L., King, P., Bradshaw, T., Thompson, C., Knight, M., Sharp, T., Barnes, M., Srirangalingam, U., Drake, W. and Chapple, J. 2019. Oncometabolite induced primary cilia loss in pheochromocytoma. Endocrine-Related Cancer. 26 (1), pp. 165-180. https://doi.org/10.1530/ERC-18-0134MRAP deficiency impairs adrenal progenitor cell differentiation and gland zonation
Novoselova, T., Hussain, M., King, P., Guasti, L., Metherell, L., Charalambous, M., Clark, A. and Chan, L. 2018. MRAP deficiency impairs adrenal progenitor cell differentiation and gland zonation. The FASEB Journal. 32 (11), pp. 6186-9196. https://doi.org/10.1096/fj.201701274RRPathophysiology of melanocortin receptors and their accessory proteins
Novoselova, T., Chan, L. and Clark, A. 2018. Pathophysiology of melanocortin receptors and their accessory proteins. Best Practice & Research: Clinical Endocrinology & Metabolism. 32 (2), pp. 93-106. https://doi.org/10.1016/j.beem.2018.02.002Central role for melanocortin-4 receptors in offspring hypertension arising from maternal obesity
Samuelsson, A., Mullier, A., Maicas, N., Oosterhuis, N., Eun Bae, S., Novoselova, T., Chan, L., Pombo, J., Taylor, P., Joles, J., Coen, C., Balthasar, N. and Poston, L. 2016. Central role for melanocortin-4 receptors in offspring hypertension arising from maternal obesity. Proceedings of the National Academy of Sciences. 113 (43), pp. 12298-12303. https://doi.org/10.1073/pnas.1607464113Loss of Mrap2 is associated with Sim1 deficiency and increased circulating cholesterol
Novoselova, T., Larder, R., Rimmington, D., Lelliot, C., Wynn, E., Gorrigan, R., Tate, P., Guasti, L., The Sanger Mouse Genetics Project, O'Rahilly, S., Clark, A., Logan, D., Coll, A. and Chan, L. 2016. Loss of Mrap2 is associated with Sim1 deficiency and increased circulating cholesterol. Journal of Endocrinology. 230 (1), pp. 13-26. https://doi.org/10.1530/JOE-16-0057Whole-exome sequencing in the differential diagnosis of primary adrenal insufficiency in children
Chan, L., Campbell, D., Novoselova, T., Clark, A. and Metherell, L. 2015. Whole-exome sequencing in the differential diagnosis of primary adrenal insufficiency in children. Frontiers in Endocrinology. 6 (113). https://doi.org/10.3389/fendo.2015.00113NNT pseudoexon activation as a novel mechanism for disease in two siblings with familial glucocorticoid deficiency
Novoselova, T., Rath, S., Carpenter, K., Pachter, N., Dickinson, J., Price, G., Chan, L., Choong, C. and Metherell, L. 2015. NNT pseudoexon activation as a novel mechanism for disease in two siblings with familial glucocorticoid deficiency. The Journal of Clinical Endocrinology and Metabolism. 100 (2), pp. E350-E354. https://doi.org/10.1210/jc.2014-3641Loss of function of the melanocortin 2 receptor accessory protein 2 is associated with mammalian obesity
Asai, M., Ramachandrappa, S., Joachim, M., Shen, Y., Zhang, R., Nuthalapati, N., Ramanathan, V., Strochlic, D., Ferket, P., Linhart, K., Ho, C., Novoselova, T., Garg, S., Ridderstråle, M., Marcus, C., Hirschhorn, J., Keogh, J., O’Rahilly, S., Chan, L., Clark, A., Farooqi, S. and Majzoub, J. 2013. Loss of function of the melanocortin 2 receptor accessory protein 2 is associated with mammalian obesity. Science. 341 (6143), pp. 275-278. https://doi.org/10.1126/science.1233000Melanocortin receptor accessory proteins in adrenal gland physiology and beyond
Novoselova, T., Jackson, D., Campbell, D., Clark, A. and Chan, L. 2013. Melanocortin receptor accessory proteins in adrenal gland physiology and beyond. Journal of Endocrinology. 217 (1), pp. R1-R11. https://doi.org/10.1530/JOE-12-0501SUMOylation regulates the homologous to E6-AP carboxyl terminus (HECT) ubiquitin ligase Rsp5p
Novoselova, T., Rose, R., Marks, H. and Sullivan, J. 2013. SUMOylation regulates the homologous to E6-AP carboxyl terminus (HECT) ubiquitin ligase Rsp5p. Journal of Biological Chemistry. 288 (15), pp. 10308-10317. https://doi.org/10.1074/jbc.m112.424234Bul proteins, a nonredundant, antagonistic family of ubiquitin ligase regulatory proteins
Novoselova, T., Zahira, K., Rose, R. and Sullivan, J. 2012. Bul proteins, a nonredundant, antagonistic family of ubiquitin ligase regulatory proteins. Eukaryotic Cell. 11 (4), pp. 463-470. https://doi.org/10.1128/EC.00009-12The X-linked retinitis pigmentosa protein RP2 facilitates G protein traffic
Schwarz, N., Novoselova, T., Wait, R., Hardcastle, A. and Cheetham, M. 2012. The X-linked retinitis pigmentosa protein RP2 facilitates G protein traffic. Human Molecular Genetics. 21 (4), pp. 863-873. https://doi.org/10.1093/hmg/ddr520Treatment with extracellular HSP70/HSC70 protein can reduce polyglutamine toxicity and aggregation
Novoselova, T., Margulis, B., Novoselov, S., Sapozhnikov, A., Van Der Spuy, J., Cheetham, M. and Guzhova, I. 2005. Treatment with extracellular HSP70/HSC70 protein can reduce polyglutamine toxicity and aggregation. Journal of Neurochemistry. 94 (3), pp. 597-606. https://doi.org/10.1111/j.1471-4159.2005.03119.xThe balance between Hsp70 and its cochaperones Hdj1 and Bag1 determines its substrate-binding activity
Novoselov, S., Novoselova, T., Verbova, M., Margulis, B. and Guzhova, I. 2005. The balance between Hsp70 and its cochaperones Hdj1 and Bag1 determines its substrate-binding activity. Tsitologiia. 47 (3), pp. 220-229.Dynamics of chaperone complex Hdj1-Hsp70-Bag1 as a response of erythroleukemia K562 cells to heat stress
Novoselov, S., Novoselova, T., Moskaleva, O., Margulis, B. and Guzhova, I. 2004. Dynamics of chaperone complex Hdj1-Hsp70-Bag1 as a response of erythroleukemia K562 cells to heat stress. Tsitologiia. 46 (7), pp. 620-627.721
total views of outputs151
total downloads of outputs3
views of outputs this month0
downloads of outputs this month