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12 results for author:"Tang X.X." in Literature citations

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Lymphocyte CFTR promotes epithelial bicarbonate secretion for bacterial killing.

Tang X.X., Fok K.L., Chen H., Chan K.S., Tsang L.L., Rowlands D.K., Zhang X.H., Dong J.D., Ruan Y.C., Jiang X. et al.

J. Cell. Physiol. 227:3887-3894(2012) · Mapped (5)

Biological effects of induced MYCN hyper-expression in MYCN-amplified neuroblastomas.

Torres J., Regan P.L., Edo R., Leonhardt P., Jeng E.I., Rappaport E.F., Ikegaki N., Tang X.X.

Int. J. Oncol. 37:983-991(2010) · Mapped (7)

Biological significance of EPHA2 expression in neuroblastoma.

Kung B., Zhao H., Hicks S.L., Tang X.X., Ikegaki N.

Int. J. Oncol. 35:845-850(2009) · Mapped (5)

Involvement of cystic fibrosis transmembrane conductance regulator in infection-induced edema.

Ajonuma L.C., He Q., Sheung Chan P.K., Yu Ng E.H., Fok K.L., Yan Wong C.H., Tsang L.L., Ho L.S., Lau M.C., Huang H.Y. et al.

Cell Biol. Int. 32:801-806(2008) · Mapped (5)

De novo identification of MIZ-1 (ZBTB17) encoding a MYC-interacting zinc-finger protein as a new favorable neuroblastoma gene.

Ikegaki N., Gotoh T., Kung B., Riceberg J.S., Kim D.Y., Zhao H., Rappaport E.F., Hicks S.L., Seeger R.C., Tang X.X.

Clin. Cancer Res. 13:6001-6009(2007) · Mapped (7)

Cloning of human myelin protein zero-like genes by bioinformatics strategy.

Tang D.S., Yu K.P., Tang X.X., Zhang H.L., Pan Q., Dai H.P., Xia J.H.

Sheng Wu Hua Xue Yu Sheng Wu Wu Li Xue Bao 32:364-368(2000) · UniProtKB (1)

Implications of EPHB6, EFNB2, and EFNB3 expressions in human neuroblastoma.

Tang X.X., Zhao H., Robinson M.E., Cohen B., Cnaan A., London W., Cohn S.L., Cheung N.K., Brodeur G.M., Evans A.E. et al.

Proc. Natl. Acad. Sci. U.S.A. 97:10936-10941(2000)

A variant transcript encoding an isoform of the human protein tyrosine kinase EPHB2 is generated by alternative splicing and alternative use of polyadenylation signals.

Tang X.X., Pleasure D.E., Brodeur G.M., Ikegaki N.

Oncogene 17:521-526(1998) · UniProtKB (1)

cDNA cloning, chromosomal localization, and expression pattern of EPLG8, a new member of the EPLG gene family encoding ligands of EPH-related protein-tyrosine kinase receptors.

Tang X.X., Pleasure D.E., Ikegaki N.

Genomics 41:17-24(1997) · UniProtKB (1)

ECK, a human EPH-related gene, maps to 1p36.1, a common region of alteration in human cancers.

Sulman E.P., Tang X.X., Allen C., Biegel J.A., Pleasure D.E., Brodeur G.M., Ikegaki N.

Genomics 40:371-374(1997) · Mapped (4)

cDNA cloning, molecular characterization, and chromosomal localization of NET(EPHT2), a human EPH-related receptor protein-tyrosine kinase gene preferentially expressed in brain.

Tang X.X., Biegel J.A., Nycum L.M., Yoshioka A., Brodeur G.M., Pleasure D.E., Ikegaki N.

Genomics 29:426-437(1995) · UniProtKB (1)

Molecular characterization and chromosomal localization of DRT (EPHT3): a developmentally regulated human protein-tyrosine kinase gene of the EPH family.

Ikegaki N., Tang X.X., Liu X.-G., Biegel J.A., Allen C., Yoshioka A., Sulman E.P., Brodeur G.M., Pleasure D.E.

Hum. Mol. Genet. 4:2033-2045(1995) · UniProtKB (1)

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