The actin regulator coronin 1A is mutant in a thymic egress-deficient mouse strain and in a patient with severe combined immunodeficiency
NATURE IMMUNOLOGY
Authors: Shiow, Lawrence R.; Roadcap, David W.; Paris, Kenneth; Watson, Susan R.; Grigorova, Irina L.; Lebet, Tonya; An, Jinping; Xu, Ying; Jenne, Craig N.; Foeger, Niko; Sorensen, Ricardo U.; Goodnow, Christopher C.; Bear, James E.; Puck, Jennifer M.; Cyster, Jason G.
Abstract
Mice carrying the recessive locus for peripheral T cell deficiency (Ptcd) have a block in thymic egress, but the mechanism responsible is undefined. Here we found that Ptcd T cells had an intrinsic migration defect, impaired lymphoid tissue trafficking and irregularly shaped protrusions. Characterization of the Ptcd locus showed a point substitution of lysine for glutamic acid at position 26 in the actin regulator coronin 1A that enhanced its inhibition of the actin regulator Arp2/3 and resulted in its mislocalization from the leading edge of migrating T cells. The discovery of another coronin 1A mutant during an N-ethyl-N-nitrosourea-mutagenesis screen for T cell-lymphopenic mice prompted us to evaluate a T cell-deficient, B cell-sufficient and natural killer cell-sufficient patient with severe combined immunodeficiency, whom we found had mutations in both CORO1A alleles. Our findings establish a function for coronin 1A in T cell egress, identify a surface of coronin involved in Arp2/3 regulation and demonstrate that actin regulation is a biological process defective in human and mouse severe combined immunodeficiency.
Coronin 1A is an essential regulator of the TGF beta receptor/SMAD3 signaling pathway in Th17 CD4(+) T cells
JOURNAL OF AUTOIMMUNITY
Authors: Kaminski, Sandra; Hermann-Kleiter, Natascha; Meisel, Marlies; Thuille, Nikolaus; Cronin, Shane; Hara, Hiromitsu; Fresser, Friedrich; Penninger, Josef M.; Baier, Gottfried
Abstract
Transforming growth factor beta (TGF beta) plays a central role in maintaining immune homeostasis by regulating the initiation and termination of immune responses and thus preventing the development of autoimmune diseases. In this study, we describe an essential mechanism by which the actin regulatory protein Coronin 1A (Coro1A) ensures the proper response of Th17 CD4(+) T cells to TGF beta. Coro1A has been established as a key player in T cell survival, migration, activation, and Ca2+ regulation in naive T cells. We show that mice lacking Coro1a developed less severe experimental autoimmune encephalomyelitis (EAE). Unexpectedly, upon the re-induction of EAE, Coro1a(-/-) mice exhibited enhanced EAE signs that correlated with increased numbers of IL-17 producing CD4(+) cells in the central nervous system (CNS) compared to wild-type mice. In vitro differentiated Coro1a(-/-) Th17 CD4+ T cells consistently produced more IL-17 than wild-type cells and displayed a Th17/Th1-like phenotype in regard to the expression of the Th1 markers T-bet and IFN gamma. Mechanistically, the Coro1a(-/-) Th17 cell phenotype correlated with a severe defect in TGF beta R-mediated SMAD3 activation. Taken together, these data provide experimental evidence of a non-redundant role of Coro1A in the regulation of Th17 CD4(+) cell effector functions and, subsequently, in the development of autoimmunity. (C) 2011 Elsevier Ltd. All rights reserved.