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Items: 1 to 20 of 117

1.

CD155 is involved in negative selection and is required to retain terminally maturing CD8 T cells in thymus.

Qiu Q, Ravens I, Seth S, Rathinasamy A, Maier MK, Davalos-Misslitz A, Forster R, Bernhardt G.

J Immunol. 2010 Feb 15;184(4):1681-9. doi: 10.4049/jimmunol.0900062. Epub 2010 Jan 4.

3.
4.

The quantity of TCR signal determines positive selection and lineage commitment of T cells.

Watanabe N, Arase H, Onodera M, Ohashi PS, Saito T.

J Immunol. 2000 Dec 1;165(11):6252-61.

5.

Runx3 regulates integrin alpha E/CD103 and CD4 expression during development of CD4-/CD8+ T cells.

Grueter B, Petter M, Egawa T, Laule-Kilian K, Aldrian CJ, Wuerch A, Ludwig Y, Fukuyama H, Wardemann H, Waldschuetz R, Möröy T, Taniuchi I, Steimle V, Littman DR, Ehlers M.

J Immunol. 2005 Aug 1;175(3):1694-705. Erratum in: J Immunol. 2005 Nov 1;175(9):6238.

6.

The interferon regulatory transcription factor IRF-1 controls positive and negative selection of CD8+ thymocytes.

Penninger JM, Sirard C, Mittrücker HW, Chidgey A, Kozieradzki I, Nghiem M, Hakem A, Kimura T, Timms E, Boyd R, Taniguchi T, Matsuyama T, Mak TW.

Immunity. 1997 Aug;7(2):243-54.

7.

Programmed differentiation of murine thymocytes during fetal thymus organ culture.

DeLuca D, Bluestone JA, Shultz LD, Sharrow SO, Tatsumi Y.

J Immunol Methods. 1995 Jan 13;178(1):13-29.

PMID:
7829862
8.

Human CD4 expression at the late single-positive stage of thymic development supports T cell maturation and peripheral export in CD4-deficient mice.

Boyer O, Marodon G, Cohen JL, Lejeune L, Irinopoulou T, Liblau R, Bruneval P, Klatzmann D.

J Immunol. 2002 Oct 15;169(8):4347-53.

9.

Diminution of the AML1 transcription factor function causes differential effects on the fates of CD4 and CD8 single-positive T cells.

Hayashi K, Natsume W, Watanabe T, Abe N, Iwai N, Okada H, Ito Y, Asano M, Iwakura Y, Habu S, Takahama Y, Satake M.

J Immunol. 2000 Dec 15;165(12):6816-24.

10.

CD226 interaction with CD155 impacts on retention and negative selection of CD8 positive thymocytes as well as T cell differentiation to follicular helper cells in Peyer's Patches.

Danisch S, Qiu Q, Seth S, Ravens I, Dorsch M, Shibuya A, Shibuya K, Förster R, Bernhardt G.

Immunobiology. 2013 Feb;218(2):152-8. doi: 10.1016/j.imbio.2012.02.010. Epub 2012 Feb 17.

PMID:
22429743
12.

Overexpression of the Runx3 transcription factor increases the proportion of mature thymocytes of the CD8 single-positive lineage.

Kohu K, Sato T, Ohno S, Hayashi K, Uchino R, Abe N, Nakazato M, Yoshida N, Kikuchi T, Iwakura Y, Inoue Y, Watanabe T, Habu S, Satake M.

J Immunol. 2005 Mar 1;174(5):2627-36.

13.
15.

Functionally and phenotypically mature mouse CD8+ T cells develop in porcine thymus grafts in mice.

Zhao Y, Barth RN, Swenson K, Pearson DA, Sykes M.

Xenotransplantation. 1998 Feb;5(1):99-104.

PMID:
9507740
16.

Thymocyte-intrinsic genetic factors influence CD8 T cell lineage commitment and affect selection of a tumor-reactive TCR.

Shanker A, Auphan-Anezin N, Chomez P, Giraudo L, Van den Eynde B, Schmitt-Verhulst AM.

J Immunol. 2004 Apr 15;172(8):5069-77.

17.

Alpha beta TCR+ cells are a minimal fraction of peripheral CD8+ pool in MHC class I-deficient mice.

Nesić D, Santori FR, Vukmanović S.

J Immunol. 2000 Aug 15;165(4):1896-901.

18.

CCR7 expression in developing thymocytes is linked to the CD4 versus CD8 lineage decision.

Yin X, Ladi E, Chan SW, Li O, Killeen N, Kappes DJ, Robey EA.

J Immunol. 2007 Dec 1;179(11):7358-64.

20.

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