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1 - 25 of 47 results for author:"Hutton J.C." in Literature citations

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The physiological effects of deleting the mouse SLC30A8 gene encoding zinc transporter-8 are influenced by gender and genetic background.

Pound L.D., Sarkar S.A., Ustione A., Dadi P.K., Shadoan M.K., Lee C.E., Walters J.A., Shiota M., McGuinness O.P., Jacobson D.A. et al.

PLoS ONE 7:e40972-e40972(2012) · Mapped (1)

Zinc transporter (ZnT)8(186-194) is an immunodominant CD8+ T cell epitope in HLA-A2+ type 1 diabetic patients.

Scotto M., Afonso G., Larger E., Raverdy C., Lemonnier F.A., Carel J.C., Dubois-Laforgue D., Baz B., Levy D., Gautier J.F. et al.

Diabetologia 55:2026-2031(2012) · Mapped (25)

Zinc transporter-8 autoantibodies improve prediction of type 1 diabetes in relatives positive for the standard biochemical autoantibodies.

Yu L., Boulware D.C., Beam C.A., Hutton J.C., Wenzlau J.M., Greenbaum C.J., Bingley P.J., Krischer J.P., Sosenko J.M., Skyler J.S. et al.

Diabetes Care 35:1213-1218(2012) · Mapped (1)

Deletion of the G6pc2 gene encoding the islet-specific glucose-6-phosphatase catalytic subunit-related protein does not affect the progression or incidence of type 1 diabetes in NOD/ShiLtJ mice.

Oeser J.K., Parekh V.V., Wang Y., Jegadeesh N.K., Sarkar S.A., Wong R., Lee C.E., Pound L.D., Hutton J.C., Van Kaer L. et al.

Diabetes 60:2922-2927(2011) · Mapped (1)

Characterization of the human SLC30A8 promoter and intronic enhancer.

Pound L.D., Sarkar S.A., Cauchi S., Wang Y., Oeser J.K., Lee C.E., Froguel P., Hutton J.C., O'Brien R.M.

J. Mol. Endocrinol. 47:251-259(2011) · Mapped (1)

Kinetics of the post-onset decline in zinc transporter 8 autoantibodies in type 1 diabetic human subjects.

Wenzlau J.M., Walter M., Gardner T.J., Frisch L.M., Yu L., Eisenbarth G.S., Ziegler A.G., Davidson H.W., Hutton J.C.

J. Clin. Endocrinol. Metab. 95:4712-4719(2010) · Mapped (1)

Predictive power of screening for antibodies against insulinoma-associated protein 2 beta (IA-2beta) and zinc transporter-8 to select first-degree relatives of type 1 diabetic patients with risk of rapid progression to clinical onset of the disease: implications for prevention trials.

De Grijse J., Asanghanwa M., Nouthe B., Albrecher N., Goubert P., Vermeulen I., Van Der Meeren S., Decochez K., Weets I., Keymeulen B. et al.

Diabetologia 53:517-524(2010) · Mapped (3)

Deletion of the mouse Slc30a8 gene encoding zinc transporter-8 results in impaired insulin secretion.

Pound L.D., Sarkar S.A., Benninger R.K., Wang Y., Suwanichkul A., Shadoan M.K., Printz R.L., Oeser J.K., Lee C.E., Piston D.W. et al.

Biochem. J. 421:371-376(2009) · Mapped (1)

Novel antigens in type 1 diabetes: the importance of ZnT8.

Wenzlau J.M., Frisch L.M., Gardner T.J., Sarkar S., Hutton J.C., Davidson H.W.

Curr. Diab. Rep. 9:105-112(2009) · Mapped (1)

SlC30A8 is a major target of humoral autoimmunity in type 1 diabetes and a predictive marker in prediabetes.

Wenzlau J.M., Moua O., Sarkar S.A., Yu L., Rewers M., Eisenbarth G.S., Davidson H.W., Hutton J.C.

Ann. N. Y. Acad. Sci. 1150:256-259(2008) · Mapped (1)

Association between anti-ZnT8 autoantibody specificities and SLC30A8 Arg325Trp variant in Japanese patients with type 1 diabetes.

Kawasaki E., Uga M., Nakamura K., Kuriya G., Satoh T., Fujishima K., Ozaki M., Abiru N., Yamasaki H., Wenzlau J.M. et al.

Diabetologia 51:2299-2302(2008) · Mapped (1)

Mouse pancreatic endocrine cell transcriptome defined in the embryonic Ngn3-null mouse.

Juhl K., Sarkar S.A., Wong R., Jensen J., Hutton J.C.

Diabetes 57:2755-2761(2008) · Mapped (17)

A common nonsynonymous single nucleotide polymorphism in the SLC30A8 gene determines ZnT8 autoantibody specificity in type 1 diabetes.

Wenzlau J.M., Liu Y., Yu L., Moua O., Fowler K.T., Rangasamy S., Walters J., Eisenbarth G.S., Davidson H.W., Hutton J.C.

Diabetes 57:2693-2697(2008) · Mapped (1)

The cation efflux transporter ZnT8 (Slc30A8) is a major autoantigen in human type 1 diabetes.

Wenzlau J.M., Juhl K., Yu L., Moua O., Sarkar S.A., Gottlieb P., Rewers M., Eisenbarth G.S., Jensen J., Davidson H.W. et al.

Proc. Natl. Acad. Sci. U.S.A. 104:17040-17045(2007) · Mapped (1)

Deletion of the gene encoding the islet-specific glucose-6-phosphatase catalytic subunit-related protein autoantigen results in a mild metabolic phenotype.

Wang Y., Martin C.C., Oeser J.K., Sarkar S., McGuinness O.P., Hutton J.C., O'Brien R.M.

Diabetologia 50:774-778(2007) · UniProtKB (1)

Induction of indoleamine 2,3-dioxygenase by interferon-gamma in human islets.

Sarkar S.A., Wong R., Hackl S.I., Moua O., Gill R.G., Wiseman A., Davidson H.W., Hutton J.C.

Diabetes 56:72-79(2007) · Mapped (2)

Deletion of the gene encoding the ubiquitously expressed glucose-6-phosphatase catalytic subunit-related protein (UGRP)/glucose-6-phosphatase catalytic subunit-beta results in lowered plasma cholesterol and elevated glucagon.

Wang Y., Oeser J.K., Yang C., Sarkar S., Hackl S.I., Hasty A.H., McGuinness O.P., Paradee W., Hutton J.C., Powell D.R. et al.

J. Biol. Chem. 281:39982-39989(2006) · UniProtKB (1)

A new model of insulin-deficient diabetes: male NOD mice with a single copy of Ins1 and no Ins2.

Babaya N., Nakayama M., Moriyama H., Gianani R., Still T., Miao D., Yu L., Hutton J.C., Eisenbarth G.S.

Diabetologia 49:1222-1228(2006) · Mapped (9)

Alternative splicing of G6PC2, the gene coding for the islet-specific glucose-6-phosphatase catalytic subunit-related protein (IGRP), results in differential expression in human thymus and spleen compared with pancreas.

Dogra R.S., Vaidyanathan P., Prabakar K.R., Marshall K.E., Hutton J.C., Pugliese A.

Diabetologia 49:953-957(2006) · UniProtKB (1)

Prime role for an insulin epitope in the development of type 1 diabetes in NOD mice.

Nakayama M., Abiru N., Moriyama H., Babaya N., Liu E., Miao D., Yu L., Wegmann D.R., Hutton J.C., Elliott J.F. et al.

Nature 435:220-223(2005) · Mapped (9)

An extended tyrosine-targeting motif for endocytosis and recycling of the dense-core vesicle membrane protein phogrin.

Wasmeier C., Burgos P.V., Trudeau T., Davidson H.W., Hutton J.C.

Traffic 6:474-487(2005) · Mapped (6)

Diminished beta-cell replication contributes to reduced beta-cell mass in fetal sheep with intrauterine growth restriction.

Limesand S.W., Jensen J., Hutton J.C., Hay W.W. Jr.

Am. J. Physiol. 288:R1297-R1305(2005) · UniProtKB (1)

Recycling of the dense-core vesicle membrane protein phogrin in Min6 beta-cells.

Vo Y.P., Hutton J.C., Angleson J.K.

Biochem. Biophys. Res. Commun. 324:1004-1010(2004) · Mapped (6)

Dense core vesicle dynamics in Caenorhabditis elegans neurons and the role of kinesin UNC-104.

Zahn T.R., Angleson J.K., MacMorris M.A., Domke E., Hutton J.F., Schwartz C., Hutton J.C.

Traffic 5:544-559(2004) · Mapped (31)

HLA-DQ8-associated T cell responses to the diabetes autoantigen phogrin (IA-2 beta) in human prediabetes.

Kelemen K., Gottlieb P.A., Putnam A.L., Davidson H.W., Wegmann D.R., Hutton J.C.

J. Immunol. 172:3955-3962(2004) · Mapped (1)

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