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1 - 25 of 34 results for author:"Thomas M.L." in Literature citations

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B cell-specific deletion of protein-tyrosine phosphatase Shp1 promotes B-1a cell development and causes systemic autoimmunity.

Pao L.I., Lam K.P., Henderson J.M., Kutok J.L., Alimzhanov M., Nitschke L., Thomas M.L., Neel B.G., Rajewsky K.

Immunity 27:35-48(2007) · Mapped (12)

Phosphorylation-dependent regulation of T-cell activation by PAG/Cbp, a lipid raft-associated transmembrane adaptor.

Davidson D., Bakinowski M., Thomas M.L., Horejsi V., Veillette A.

Mol. Cell. Biol. 23:2017-2028(2003) · UniProtKB (2) · Mapped (21)

Targeting of CD45 protein tyrosine phosphatase activity to lipid microdomains on the T cell surface inhibits TCR signaling.

He X., Woodford-Thomas T.A., Johnson K.G., Shah D.D., Thomas M.L.

Eur. J. Immunol. 32:2578-2587(2002) · Mapped (7)

Development of intestinal intraepithelial lymphocytes, NK cells, and NK 1.1+ T cells in CD45-deficient mice.

Martin S.M., Mehta I.K., Yokoyama W.M., Thomas M.L., Lorenz R.G.

J. Immunol. 166:6066-6073(2001) · Mapped (6)

Molecular cloning of MIS, a myeloid inhibitory siglec, that binds protein tyrosine phosphatases SHP-1 and SHP-2.

Ulyanova T., Shah D.D., Thomas M.L.

J. Biol. Chem. 276:14451-14458(2001) · UniProtKB (1)

gammadelta T cells lyse autologous and allogenic oesophageal tumours: involvement of heat-shock proteins in the tumour cell lysis.

Thomas M.L., Samant U.C., Deshpande R.K., Chiplunkar S.V.

Cancer Immunol. Immunother. 48:653-659(2000)

Induction of a germinal center phenotype in B cells in vitro by a Th2 cell line.

Morafo V., Rath S., Thomas M.L., Durdik J.M.

Cell. Immunol. 198:77-86(1999) · Mapped (6)

CD45-associated protein is not essential for the regulation of antigen receptor-mediated signal transduction.

Kung C., Okumura M., Seavitt J.R., Noll M.E., White L.S., Pingel J.T., Thomas M.L.

Eur. J. Immunol. 29:3951-3955(1999) · Mapped (2)

The sialoadhesin CD33 is a myeloid-specific inhibitory receptor.

Ulyanova T., Blasioli J., Woodford-Thomas T.A., Thomas M.L.

Eur. J. Immunol. 29:3440-3449(1999) · UniProtKB (1)

Regulation of integrin-mediated T cell adhesion by the transmembrane protein tyrosine phosphatase CD45.

Shenoi H., Seavitt J., Zheleznyak A., Thomas M.L., Brown E.J.

J. Immunol. 162:7120-7127(1999)

Genomic organization and chromosomal localization of mouse coronin-1.

Kung C., Thomas M.L.

Mamm. Genome 10:523-525(1999) · Mapped (9)

Expression of the p56(Lck) Y505F mutation in CD45-deficient mice rescues thymocyte development.

Seavitt J.R., White L.S., Murphy K.M., Loh D.Y., Perlmutter R.M., Thomas M.L.

Mol. Cell. Biol. 19:4200-4208(1999) · Mapped (10)

Definition of family of coronin-related proteins conserved between humans and mice: close genetic linkage between coronin-2 and CD45-associated protein.

Okumura M., Kung C., Wong S., Rodgers M., Thomas M.L.

DNA Cell Biol. 17:779-787(1998) · UniProtKB (3) · Mapped (28)

The protein tyrosine phosphatase SHP-1 regulates integrin-mediated adhesion of macrophages.

Roach T.I., Slater S.E., White L.S., Zhang X., Majerus P.W., Brown E.J., Thomas M.L.

Curr. Biol. 8:1035-1038(1998) · Mapped (14)

The association of atopy with a gain-of-function mutation in the alpha subunit of the interleukin-4 receptor.

Hershey G.K.K., Friedrich M.F., Esswein L.A., Thomas M.L., Chatila T.A.

N. Engl. J. Med. 337:1720-1725(1997) · UniProtKB (1) · Mapped (6)

Comparison of CD45 extracellular domain sequences from divergent vertebrate species suggests the conservation of three fibronectin type III domains.

Okumura M., Matthews R.J., Robb B., Litman G.W., Bork P., Thomas M.L.

J. Immunol. 157:1569-1575(1996) · Mapped (21)

Regulation of B-lymphocyte negative and positive selection by tyrosine phosphatase CD45.

Cyster J.G., Healy J.I., Kishihara K., Mak T.W., Thomas M.L., Goodnow C.C.

Nature 381:325-328(1996) · Mapped (6)

Leukocyte common antigen-related phosphatase (LRP) gene structure: conservation of the genomic organization of transmembrane protein tyrosine phosphatases.

Wong E.C., Mullersman J.E., Thomas M.L.

Genomics 17:33-38(1993) · UniProtKB (1) · Mapped (2)

Normal B lymphocyte development but impaired T cell maturation in CD45-exon6 protein tyrosine phosphatase-deficient mice.

Kishihara K., Penninger J., Wallace V.A., Kundig T.M., Kawai K., Wakeham A., Timms E., Pfeffer K., Ohashi P.S., Thomas M.L.

Cell 74:143-156(1993) · Mapped (6)

Mutations at the murine motheaten locus are within the hematopoietic cell protein-tyrosine phosphatase (Hcph) gene.

Schultz L.D., Schweitzer P.A., Rajan T.V., Yi T., Ihle J.N., Matthews R.J., Thomas M.L., Beier D.R.

Cell 73:1445-1454(1993) · UniProtKB (4) · Mapped (13)

A role in B cell activation for CD22 and the protein tyrosine phosphatase SHP.

Doody G.M., Justement L.B., Delibrias C.C., Matthews R.J., Lin J., Thomas M.L., Fearon D.T.

Science 269:242-244(1995) · UniProtKB (1)

CD45 protein-tyrosine phosphatase associates with the WW domain-containing protein, CD45AP, through the transmembrane region.

Cahir McFarland E.D., Thomas M.L.

J. Biol. Chem. 270:28103-28107(1995) · Mapped (2)

Sequence determination of the thiolester site of the fourth component of human complement.

Harrison R.A., Thomas M.L., Tack B.F.

Proc. Natl. Acad. Sci. U.S.A. 78:7388-7392(1981) · UniProtKB (2)

Identification and alignment of a thiol ester site in the third component of guinea pig complement.

Thomas M.L., Tack B.F.

Biochemistry 22:942-947(1983) · UniProtKB (1)

NH2-terminal structure and cleavage of guinea pig pro-C3, the precursor of the third complement component.

Goldberger G., Thomas M.L., Tack B.F., Williams J., Colten H.R., Abraham G.N.

J. Biol. Chem. 256:12617-12619(1981) · UniProtKB (1)

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