Literature DB >> 12759416

Memory phenotype of CD8+ T cells in MHC class Ia-deficient mice.

Zoran Kurepa1, Jie Su, James Forman.   

Abstract

B6.K(b-)D(b-) mice are devoid of class Ia but express normal levels of class Ib molecules. They have low levels of CD8 T cells in both the thymus as well as peripheral T cell compartments. Although the percentage of splenic CD8 alpha alpha T cells is increased in these animals, approximately 90% of CD8 T cells are CD8 alpha beta. In contrast to B6 animals, most of the CD8 T cells from these mice have a memory phenotype (CD44(high)CD122(high) CD62L(low)) including both CD8 alpha beta and CD8 alpha alpha subsets. In the thymus of B6.K(b-)D(b-) animals, there is a decrease in the percentage of SP CD8 T cells, although most are CD44(low), similar to that seen in B6 mice. The spleens from day 1-old B6 and B6.K(b-)D(b-) mice have a relatively high proportion of CD44(high)CD62L(low) CD8 T cells. However, by day 28 most CD8 T cells in B6 mice have a naive phenotype while in B6.K(b-)D(b-) mice the memory phenotype remains. Unlike CD44(high) cells that are found in B6 animals, most CD44(high) cells from B6.K(b-)D(b-) mice do not secrete IFN-gamma rapidly upon activation. The paucity of CD8 T cells in B6.K(b-)D(b-) mice might be due in part to their inability to undergo homeostatic expansion. Consistent with this, we found that CD8 T cells from these animals expand poorly in X-irradiated syngeneic hosts compared with B6 CD8 T cells that respond to class Ia Ags. We examined homeostatic expansion of B6 CD8 T cells in single as well as double class Ia knockout mice and were able to estimate the fraction of cells reactive against class Ia vs class Ib molecules.

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Year:  2003        PMID: 12759416     DOI: 10.4049/jimmunol.170.11.5414

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  10 in total

1.  The NF-κB1 transcription factor prevents the intrathymic development of CD8 T cells with memory properties.

Authors:  Raffi Gugasyan; Elisha Horat; Sarah A Kinkel; Fiona Ross; George Grigoriadis; Daniel Gray; Meredith O'Keeffe; Stuart P Berzins; Gabrielle T Belz; Raelene J Grumont; Ashish Banerjee; Andreas Strasser; Dale I Godfrey; Philip N Tsichlis; Steve Gerondakis
Journal:  EMBO J       Date:  2011-11-29       Impact factor: 11.598

2.  Nonconventional CD8+ T cell responses to Listeria infection in mice lacking MHC class Ia and H2-M3.

Authors:  Hoonsik Cho; Hak-Jong Choi; Honglin Xu; Kyrie Felio; Chyung-Ru Wang
Journal:  J Immunol       Date:  2010-11-22       Impact factor: 5.422

3.  Clonally expanded CD8 T cells characterize amyotrophic lateral sclerosis-4.

Authors:  Laura Campisi; Shahab Chizari; Jessica S Y Ho; Anastasia Gromova; Frederick J Arnold; Lorena Mosca; Xueyan Mei; Yesai Fstkchyan; Denis Torre; Cindy Beharry; Marta Garcia-Forn; Miguel Jiménez-Alcázar; Vladislav A Korobeynikov; Jack Prazich; Zahi A Fayad; Marcus M Seldin; Silvia De Rubeis; Craig L Bennett; Lyle W Ostrow; Christian Lunetta; Massimo Squatrito; Minji Byun; Neil A Shneider; Ning Jiang; Albert R La Spada; Ivan Marazzi
Journal:  Nature       Date:  2022-06-22       Impact factor: 69.504

4.  Bystander-activated memory CD8 T cells control early pathogen load in an innate-like, NKG2D-dependent manner.

Authors:  Talyn Chu; Aaron J Tyznik; Sarah Roepke; Amy M Berkley; Amanda Woodward-Davis; Laura Pattacini; Michael J Bevan; Dietmar Zehn; Martin Prlic
Journal:  Cell Rep       Date:  2013-03-21       Impact factor: 9.423

5.  A Stat5b transgene is capable of inducing CD8+ lymphoblastic lymphoma in the absence of normal TCR/MHC signaling.

Authors:  Katherine Bessette; Mark L Lang; Roy A Fava; Martin Grundy; Jennifer Heinen; Laurie Horne; Rosanne Spolski; Amin Al-Shami; Herbert C Morse; Warren J Leonard; John A Kelly
Journal:  Blood       Date:  2007-09-21       Impact factor: 22.113

Review 6.  The role of MHC class Ib-restricted T cells during infection.

Authors:  Courtney K Anderson; Laurent Brossay
Journal:  Immunogenetics       Date:  2016-07-01       Impact factor: 2.846

Review 7.  TCR-MHC docking orientation: natural selection, or thymic selection?

Authors:  Edward J Collins; David S Riddle
Journal:  Immunol Res       Date:  2008       Impact factor: 2.829

8.  Qa-1-Restricted CD8+ T Cells Can Compensate for the Absence of Conventional T Cells during Viral Infection.

Authors:  Courtney K Anderson; Emma C Reilly; Angus Y Lee; Laurent Brossay
Journal:  Cell Rep       Date:  2019-04-09       Impact factor: 9.423

9.  Classical MHC expression by DP thymocytes impairs the selection of non-classical MHC restricted innate-like T cells.

Authors:  Hristo Georgiev; Changwei Peng; Matthew A Huggins; Stephen C Jameson; Kristin A Hogquist
Journal:  Nat Commun       Date:  2021-04-16       Impact factor: 17.694

Review 10.  Hiding in Plain Sight: Virtually Unrecognizable Memory Phenotype CD8+ T cells.

Authors:  Daniel Thiele; Nicole L La Gruta; Angela Nguyen; Tabinda Hussain
Journal:  Int J Mol Sci       Date:  2020-11-16       Impact factor: 5.923

  10 in total

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