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Th1, Th2 and Th17 cells are the main cells involved in the pathophysiology of asthma <ref name="Effect of ginger extract on expression of GATA3, T-bet and ROR-γt in peripheral blood mononuclear cells of patients with Allergic Asthma">DOI 10.1016/j.aller.2018.12.003</ref>. In asthmatic airways, Th2 cells are activated and release several cytokines <ref name="The role of protein modifications of T-bet in cytokine production and differentiation of T helper cells">DOI 10.1155/2014/589672</ref> that regulate IgE production and inflammatory cell recruitment, such as eosinophils. Th2 cells and GATA-3 play an important role in allergic inflammation and asthma, and induce IgE production, which can be the cause of severe forms of asthma. The asthmatic patients present high levels of total IgE. On the contrary, the T-bet gene expression and Th1 pattern, along with the IFN- γ production, are usually associated with non-allergic asthmatics and healthy subjects <ref name="Asthma: T-bet--a master controller?">DOI 10.1016/s0960-9822(02)00830-8</ref>. Also, some research has shown that airway reactivity is moderated by corticosteroid use in asthma patients and that with this use, the TBX21 variant increases Th1 and decreases Th2 cytokine expression. Thus, TBX21 may be decisive in the therapy of asthma with inhaled corticosteroids <ref name="TBX21: A functional variant predicts improvement in asthma with the use of inhaled corticosteroids">DOI 10.1073/pnas.0408532102</ref>.
Th1, Th2 and Th17 cells are the main cells involved in the pathophysiology of asthma <ref name="Effect of ginger extract on expression of GATA3, T-bet and ROR-γt in peripheral blood mononuclear cells of patients with Allergic Asthma">DOI 10.1016/j.aller.2018.12.003</ref>. In asthmatic airways, Th2 cells are activated and release several cytokines <ref name="The role of protein modifications of T-bet in cytokine production and differentiation of T helper cells">DOI 10.1155/2014/589672</ref> that regulate IgE production and inflammatory cell recruitment, such as eosinophils. Th2 cells and GATA-3 play an important role in allergic inflammation and asthma, and induce IgE production, which can be the cause of severe forms of asthma. The asthmatic patients present high levels of total IgE. On the contrary, the T-bet gene expression and Th1 pattern, along with the IFN- γ production, are usually associated with non-allergic asthmatics and healthy subjects <ref name="Asthma: T-bet--a master controller?">DOI 10.1016/s0960-9822(02)00830-8</ref>. Also, some research has shown that airway reactivity is moderated by corticosteroid use in asthma patients and that with this use, the TBX21 variant increases Th1 and decreases Th2 cytokine expression. Thus, TBX21 may be decisive in the therapy of asthma with inhaled corticosteroids <ref name="TBX21: A functional variant predicts improvement in asthma with the use of inhaled corticosteroids">DOI 10.1073/pnas.0408532102</ref>.


In T-bet structure, ubiquitination takes place at LYS 313. It has an impact on the stability of the protein and leads to the degradation of the protein by the proteosome. Some research found the role of deubiquitinases involved in T-bet stability and function. As a deubiquitinase, USP10 belongs to the ubiquitin-specificprotease family of cysteine proteases. Cysteine 424 site on [https://en.wikipedia.org/wiki/USP10 USP10] is crucial for its hydrolase activity. Results have shown that USP10 could interact with T-bet and stabilize it via interaction between Lysine 313 of T-bet and Cysteine 424 of USP10. Deubiquitination inhibits its degradation by the proteosome and enhance the secretion of IFN- γ.
In T-bet structure, ubiquitination takes place at LYS 313. It has an impact on the stability of the protein and leads to the degradation of the protein by the proteosome. Some research has shown the role of deubiquitinases involved in T-bet stability and function. As a deubiquitinase, USP10 belongs to the ubiquitin-specificprotease family of cysteine proteases. Cysteine 424 site on [https://en.wikipedia.org/wiki/USP10 USP10] is crucial for its hydrolase activity. Results have shown that USP10 could interact with T-bet and stabilize it via interaction between Lysine 313 of T-bet and Cysteine 424 of USP10. Deubiquitination inhibits its degradation by the proteosome and enhance the secretion of IFN- γ.


Researchers believe that the USP10-dependent T-bet deubiquitination and stabilization can regulate antigen induced immune disorder especially in Th1 specific inflammation. Thus, appropriate decreasing USP10 level may contribute to the T-bet degradation and inflammation attenuation <ref name="Deubiquitination and stabilization of T-bet by USP10">DOI 10.1016/j.bbrc.2014.05.037</ref>.
Researchers believe that the USP10-dependent T-bet deubiquitination and stabilization can regulate antigen induced immune disorder especially in Th1 specific inflammation. Thus, appropriate decreasing USP10 level may contribute to the T-bet degradation and inflammation attenuation <ref name="Deubiquitination and stabilization of T-bet by USP10">DOI 10.1016/j.bbrc.2014.05.037</ref>.

Revision as of 16:51, 17 January 2022

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T-Box transcription factor 21 (TBX21)

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