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All Outputs (3)

Biochemical characterisation of the interaction of the myosin light chain phosphatase with the regulatory subunits of protein kinase A in cells of the circulatory system (2023)
Thesis
Saldanha, P. A. C. B. D. S. Biochemical characterisation of the interaction of the myosin light chain phosphatase with the regulatory subunits of protein kinase A in cells of the circulatory system. (Thesis). Hull York Medical School. https://hull-repository.worktribe.com/output/4790706

Regulation of actomyosin-driven contraction is important for numerous cardiovascular cell functions, including smooth muscle tone, endothelial cell permeability and platelet shape change and spreading. These processes are primarily regulated by the p... Read More about Biochemical characterisation of the interaction of the myosin light chain phosphatase with the regulatory subunits of protein kinase A in cells of the circulatory system.

Biological function and clinical implication of coagulation proteins during malignant transformation of pancreatic cells (2023)
Thesis
Haque, F. (2023). Biological function and clinical implication of coagulation proteins during malignant transformation of pancreatic cells. (Thesis). Hull York Medical School. https://hull-repository.worktribe.com/output/4371279

The premalignant pancreatic cellular genotype can remain stable for years before rapid malignant transformation, often associated with inflammation. Tissue factor (TF) is an inflammatory modulator regulated by factor VIIa (fVIIa) for its levels and a... Read More about Biological function and clinical implication of coagulation proteins during malignant transformation of pancreatic cells.

MEF2 transcription factors are key regulators of sprouting angiogenesis (2016)
Journal Article
Sacilotto, N., Chouliaras, K. M., Nikitenko, L. L., Lu, Y. W., Fritzsche, M., Wallace, M. D., Nornes, S., García-Moreno, F., Payne, S., Bridges, E., Liu, K., Biggs, D., Ratnayaka, I., Herbert, S. P., Molnár, Z., Harris, A. L., Davies, B., Bond, G. L., Bou-Gharios, G., Schwarz, J. J., & De Val, S. (2016). MEF2 transcription factors are key regulators of sprouting angiogenesis. Genes & development, 30(20), 2297-2309. https://doi.org/10.1101/gad.290619.116

© 2016 Sacilotto et al. Angiogenesis, the fundamental process by which new blood vessels form from existing ones, depends on precise spatial and temporal gene expression within specific compartments of the endothelium. However, the molecular links be... Read More about MEF2 transcription factors are key regulators of sprouting angiogenesis.