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DESCRIPTION (provided by applicant): Cyclophilin A (CypA/Ppia) is an 18kD, 8-stranded beta-barrel, with a solvent-exposed hydrophobic pocket.The immunosuppressive drug cyclosporine grips the pocket and with CypA creates a composite surface that binds and inhibits calcineurin. The pocket cradles proline-containing peptides, including an exposed proline on HIV-1 Capsid, and catalyzes cis-trans interconversion of the peptidyl-prolyl bond. To identify the native function of CypA we generated mice lacking Ppia. Ppia1' mice develop allergic pathology with tissue infiltration by eosinophils and mast cells, and increased CD4+ T-helper type II (Th2) cytokine production. We hypothesized that the pathology resulted from increased activity of Itk, a tyrosine kinase upstream of PLC gamma (and therefore of calcineurin) that specifically promotes Th2 function. CypA bound Itk via the PPIase active site. Mutation of a conformationally heterogeneous proline in Itk (P287G) disrupted CypA binding and conferred Th2 hyperactivity on wild-type CD4+ T cells. Thus, CypA regulates CD4+ T cells signal transduction in the absence of cyclosporine via a regulatory proline residue in Itk. Aim 1: Ppia4' mice exhibit strain-dependent lethality. A dominant suppressor of lethality in 129/SvEv mice will be mapped and cloned. Aim 2: The functional significance of CypA peptidyl-prolyl isomerase activity for inhibition of Itk and Th2 cytokine expression will be tested using a panel of rationally-designed CypA mutants, as well as mutants screened in a yeast strain that is dependent on CypA PPIase activity. Aim 3: Ppia*'* memory CD4+ Th2 cells secrete enormous quantities of IL2. We will determine if this phenotype also results from effects of CypA on Itk and we will elucidate the post-transcriptional mechanism underlying it. These studies will provide the first detailed assessment of the biological function of CypA, shed light on a novel mechanism of protein kinase regulation characterized by a conformational switch in Itk, and advance basic knowledge of protein-folding, T cell signaling, cytokine expression, and CD4+ T cell differentiation. New information concerning these basic biological processes will help understand the etiology of such diseases as asthma and AIDS, and, therefore, is critical for the development of much-needed medical therapies.
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TRIM5 and the Regulation of HIV-1 Infectivity.
TRIM5 和 HIV-1 感染性的调节。
DOI: 10.1155/2012/426840
发表时间: 2012
期刊: Molecular biology international
影响因子: --
作者: [Luban,Jeremy]
通讯作者: Luban,Jeremy
DOI: 10.1186/1742-4690-8-98
发表时间: 2011-12-06
期刊: Retrovirology
影响因子: 3.3
作者: [De Iaco A, Luban J]
通讯作者: Luban J
DOI: 10.1016/j.coviro.2012.02.003
发表时间: 2012-04
期刊: CURRENT OPINION IN VIROLOGY
影响因子: 5.9
作者: [Gruetter, Markus G., Luban, Jeremy]
通讯作者: Luban, Jeremy
DOI: 10.1084/jem.20070193
发表时间: 2007-08-06
期刊: The Journal of experimental medicine
影响因子: --
作者: [Zhu C, Wang X, Deinum J, Huang Z, Gao J, Modjtahedi N, Neagu MR, Nilsson M, Eriksson PS, Hagberg H, Luban J, Kroemer G, Blomgren K]
通讯作者: Blomgren K
6
    Insight into the Ebola virus glycoprotein fusion mechanism gleaned from the 2013-2016 epidemic GP-A82V variant
    Insight into the Ebola virus glycoprotein fusion mechanism gleaned from the 2013-2016 epidemic GP-A82V variant
    Insight into the Ebola virus glycoprotein fusion mechanism gleaned from the 2013-2016 epidemic GP-A82V variant
    The HUSH complex in HIV-1 latency
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