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The gene coding for the human IL1A protein (113-271aa) was co-cloned into a plasmid vector with the N-terminal 6xHis-tag gene and then introduced into yeast cells for protein expression. After that, the cultured yeast cells are lysed to release the expressed IL1A proteins, which are purified through affinity chromatography. The purity of the recombinant human IL1A protein is over 90% as measured by SDS-PAGE.
The human IL1A protein is a proinflammatory cytokine belonging to the interleukin-1 family, along with IL1B and IL1RN. IL1A participates in various biological processes, including immune responses, inflammation, and cell proliferation. It exerts pleiotropic effects on host reactions and regulates cell functions in both positive and negative ways [1]. IL1A can induce the expression of senescence-associated secretory phenotype (SASP) components [2] and is implicated in inflammatory responses in different tissues, such as the ovarian surface epithelial cells [3].
IL1A plays a crucial role in various diseases and conditions. It has been associated with cancer, where its polymorphisms have been linked to breast cancer risk [5] and its expression can impact survival and recurrence in non-small cell lung cancer patients [4]. IL1A gene polymorphisms have been studied for their association with aggressive periodontitis in periodontal diseases [6].
References:
[1] K. Eislmayr, A. Bestehorn, L. Morelli, M. Borroni, L. Walle, M. Lamkanfiet al., Nonredundancy of il-1α and il-1β is defined by distinct regulation of tissues orchestrating resistance versus tolerance to infection, Science Advances, vol. 8, no. 9, 2022. https://doi.org/10.1126/sciadv.abj7293
[2] M. Montes, M. Lubas, F. Arendrup, B. Mentz, N. Rohatgi, S. Tumaset al., The lncrna mir31hg regulates the senescence associated secretory phenotype,, 2020. https://doi.org/10.21203/rs.3.rs-57840/v1
[3] G. Papacleovoulou, H. Critchley, S. Hillier, & J. Mason, Il1α and il4 signalling in human ovarian surface epithelial cells, Journal of Endocrinology, vol. 211, no. 3, p. 273-283, 2011. https://doi.org/10.1530/joe-11-0081
[4] N. Woods, A. Monteiro, Z. Thompson, E. Amankwah, N. Naas, E. Hauraet al., Interleukin polymorphisms associated with overall survival, disease‐free survival, and recurrence in non‐small cell lung cancer patients, Molecular Carcinogenesis, vol. 54, no. S1, 2015. https://doi.org/10.1002/mc.22275
[5] H. Baradaran-Rahimi, M. Radvar, H. Arab, J. Tavakol-Afshari, & A. Ebadian, Association of interleukin‐1 receptor antagonist gene polymorphisms with generalized aggressive periodontitis in an iranian population, Journal of Periodontology, vol. 81, no. 9, p. 1342-1346, 2010. https://doi.org/10.1902/jop.2010.100073
[6] K. Kim, J. Noh, M. Bodogai, J. Martindale, P. Pandey, X. Yanget al., Scamp4 enhances the senescent cell secretome, Genes & Development, vol. 32, no. 13-14, p. 909-914, 2018. https://doi.org/10.1101/gad.313270.118
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