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Items: 30

1.

Construction of an open-access database that integrates cross-reference information from the transcriptome and proteome of immune cells.

Hijikata A, Kitamura H, Kimura Y, Yokoyama R, Aiba Y, Bao Y, Fujita S, Hase K, Hori S, Ishii Y, Kanagawa O, Kawamoto H, Kawano K, Koseki H, Kubo M, Kurita-Miki A, Kurosaki T, Masuda K, Nakata M, Oboki K, Ohno H, Okamoto M, Okayama Y, O-Wang J, Saito H, Saito T, Sakuma M, Sato K, Sato K, Seino K, Setoguchi R, Tamura Y, Tanaka M, Taniguchi M, Taniuchi I, Teng A, Watanabe T, Watarai H, Yamasaki S, Ohara O.

Bioinformatics. 2007 Nov 1;23(21):2934-41. Epub 2007 Sep 24.

PMID:
17893089
2.

DNA polymerases eta and theta function in the same genetic pathway to generate mutations at A/T during somatic hypermutation of Ig genes.

Masuda K, Ouchida R, Hikida M, Kurosaki T, Yokoi M, Masutani C, Seki M, Wood RD, Hanaoka F, O-Wang J.

J Biol Chem. 2007 Jun 15;282(24):17387-94. Epub 2007 Apr 20.

3.

The effects of FasL on inflammation and tumor survival are dependent on its expression levels.

Wada A, Tada Y, Kawamura K, Takiguchi Y, Tatsumi K, Kuriyama T, Takenouchi T, O-Wang J, Tagawa M.

Cancer Gene Ther. 2007 Mar;14(3):262-7. Epub 2006 Oct 20.

PMID:
17053813
4.

Absence of DNA polymerase theta results in decreased somatic hypermutation frequency and altered mutation patterns in Ig genes.

Masuda K, Ouchida R, Hikida M, Nakayama M, Ohara O, Kurosaki T, O-Wang J.

DNA Repair (Amst). 2006 Nov 8;5(11):1384-91. Epub 2006 Aug 4.

PMID:
16890500
5.

Role of Clast1 in development of cerebellar granule cells.

Maeda Y, Fujimura L, O-Wang J, Hatano M, Sakamoto A, Arima M, Ebara M, Ino H, Yamashita T, Saisho H, Tokuhisa T.

Brain Res. 2006 Aug 9;1104(1):18-26. Epub 2006 Jun 30.

PMID:
16814752
6.

Role of DNA polymerase theta in tolerance of endogenous and exogenous DNA damage in mouse B cells.

Ukai A, Maruyama T, Mochizuki S, Ouchida R, Masuda K, Kawamura K, Tagawa M, Kinoshita K, Sakamoto A, Tokuhisa T, O-Wang J.

Genes Cells. 2006 Feb;11(2):111-21.

7.

FcRY, an Fc receptor related gene differentially expressed during B lymphocyte development and activation.

Masuda K, Davis RS, Maruyama T, Zhang J, He T, Cooper MD, O-Wang J, Burrows PD.

Gene. 2005 Dec 19;363:32-40. Epub 2005 Nov 2.

PMID:
16263223
8.

DNA polymerase theta contributes to the generation of C/G mutations during somatic hypermutation of Ig genes.

Masuda K, Ouchida R, Takeuchi A, Saito T, Koseki H, Kawamura K, Tagawa M, Tokuhisa T, Azuma T, O-Wang J.

Proc Natl Acad Sci U S A. 2005 Sep 27;102(39):13986-91. Epub 2005 Sep 19.

9.

Mammalian polyhomeotic homologues Phc2 and Phc1 act in synergy to mediate polycomb repression of Hox genes.

Isono K, Fujimura Y, Shinga J, Yamaki M, O-Wang J, Takihara Y, Murahashi Y, Takada Y, Mizutani-Koseki Y, Koseki H.

Mol Cell Biol. 2005 Aug;25(15):6694-706. Erratum in: Mol Cell Biol. 2014 Jul;34(14):2771.

10.

A role for c-fos/activator protein 1 in B lymphocyte terminal differentiation.

Ohkubo Y, Arima M, Arguni E, Okada S, Yamashita K, Asari S, Obata S, Sakamoto A, Hatano M, O-Wang J, Ebara M, Saisho H, Tokuhisa T.

J Immunol. 2005 Jun 15;174(12):7703-10.

11.

Up-regulation of the error-prone DNA polymerase {kappa} promotes pleiotropic genetic alterations and tumorigenesis.

Bavoux C, Leopoldino AM, Bergoglio V, O-Wang J, Ogi T, Bieth A, Judde JG, Pena SD, Poupon MF, Helleday T, Tagawa M, Machado C, Hoffmann JS, Cazaux C.

Cancer Res. 2005 Jan 1;65(1):325-30.

12.

Elevated expression of DNA polymerase kappa in human lung cancer is associated with p53 inactivation: Negative regulation of POLK promoter activity by p53.

Wang Y, Seimiya M, Kawamura K, Yu L, Ogi T, Takenaga K, Shishikura T, Nakagawara A, Sakiyama S, Tagawa M, O-Wang J.

Int J Oncol. 2004 Jul;25(1):161-5.

PMID:
15202001
13.

Impaired lymphocyte development and function in Clast5/Stra13/DEC1-transgenic mice.

Seimiya M, Wada A, Kawamura K, Sakamoto A, Ohkubo Y, Okada S, Hatano M, Tokuhisa T, Watanabe T, Saisho H, Tagawa M, O-Wang J.

Eur J Immunol. 2004 May;34(5):1322-32.

14.

DNA polymerase theta is preferentially expressed in lymphoid tissues and upregulated in human cancers.

Kawamura K, Bahar R, Seimiya M, Chiyo M, Wada A, Okada S, Hatano M, Tokuhisa T, Kimura H, Watanabe S, Honda I, Sakiyama S, Tagawa M, O-Wang J.

Int J Cancer. 2004 Mar;109(1):9-16.

15.

Cell growth- and P53-dependent transcriptional activity of the midkine promoter confers suicide gene expression in tumor cells.

Yu L, Ugai S, O-Wang J, Namba M, Kadomatsu K, Muramatsu T, Matsubara S, Sakiyama S, Tagawa M.

Oncol Rep. 2003 Sep-Oct;10(5):1301-5.

PMID:
12883697
16.

T-cell-dependent antitumor effects produced by CD40 ligand expressed on mouse lung carcinoma cells are linked with the maturation of dendritic cells and secretion of a variety of cytokines.

Tada Y, O-Wang J, Yu L, Shimozato O, Wang YQ, Takiguchi Y, Tatsumi K, Kuriyama T, Takenaga K, Sakiyama S, Tagawa M.

Cancer Gene Ther. 2003 Jun;10(6):451-6.

PMID:
12768190
17.

Hypertension and angiotensin II hypersensitivity in aminopeptidase A-deficient mice.

Mitsui T, Nomura S, Okada M, Ohno Y, Kobayashi H, Nakashima Y, Murata Y, Takeuchi M, Kuno N, Nagasaka T, O-Wang J, Cooper MD, Mizutani S.

Mol Med. 2003 Jan-Feb;9(1-2):57-62.

18.

Fas ligand-expressing tumors induce tumor-specific protective immunity in the inoculated hosts but vaccination with the apoptotic tumors suppresses antitumor immunity.

Tada Y, O-Wang J, Wada A, Takiguchi Y, Tatsumi K, Kuriyama T, Sakiyama S, Tagawa M.

Cancer Gene Ther. 2003 Feb;10(2):134-40.

PMID:
12536202
19.

Stage-specific expression of Clast6/E3/LAPTM5 during B cell differentiation: elevated expression in human B lymphomas.

Seimiya M, O-Wang J, Bahar R, Kawamura K, Wang Y, Saisho H, Tagawa M.

Int J Oncol. 2003 Feb;22(2):301-4.

PMID:
12527926
20.

Cutting edge: a novel role for Fas ligand in facilitating antigen acquisition by dendritic cells.

Tada Y, O-Wang J, Takiguchi Y, Tatsumi K, Kuriyama T, Okada S, Tokuhisa T, Sakiyama S, Tagawa M.

J Immunol. 2002 Sep 1;169(5):2241-5.

21.

Growth retardation, polyploidy, and multinucleation induced by Clast3, a novel cell cycle-regulated protein.

Bahar R, O-Wang J, Kawamura K, Seimiya M, Wang Y, Hatano M, Okada S, Tokuhisa T, Watanabe T, Tagawa M.

J Biol Chem. 2002 Oct 18;277(42):40012-9. Epub 2002 Jul 29.

22.

An essential role for REV3 in mammalian cell survival: absence of REV3 induces p53-independent embryonic death.

O-Wang J, Kajiwara K, Kawamura K, Kimura M, Miyagishima H, Koseki H, Tagawa M.

Biochem Biophys Res Commun. 2002 May 10;293(3):1132-7.

PMID:
12051777
23.

Antitumor effects are produced by forced expression of membrane-bound but not soluble Fas ligand in murine lung carcinoma cells.

Tada Y, O-Wang J, Seimiya M, Takiguchi Y, Tatsumi K, Kuriyama T, Tagawa M.

Anticancer Res. 2002 Mar-Apr;22(2A):831-6.

PMID:
12014659
24.

Expression of the TNF-alpha gene on mouse lung carcinoma cells suppresses spontaneous lung metastasis without affecting tumorigenicity.

Tada Y, O-Wang J, Takenaga K, Takiguchi Y, Tatsumi K, Kuriyama T, Tagawa M.

Oncol Rep. 2002 May-Jun;9(3):585-8.

PMID:
11956632
25.

Clast5/Stra13 is a negative regulator of B lymphocyte activation.

Seimiya M, Bahar R, Wang Y, Kawamura K, Tada Y, Okada S, Hatano M, Tokuhisa T, Saisho H, Watanabe T, Tagawa M, O-Wang J.

Biochem Biophys Res Commun. 2002 Mar 22;292(1):121-7.

PMID:
11890681
26.

T cell dependent and independent antitumor immunity generated by the expression of Fas ligand on mouse lung carcinoma cells.

Tada Y, O-Wang J, Takiguchi Y, Tatsumi K, Kuriyama T, Tagawa M.

Int J Mol Med. 2002 Mar;9(3):281-5.

PMID:
11836634
27.
28.

DNA polymerase kappa, implicated in spontaneous and DNA damage-induced mutagenesis, is overexpressed in lung cancer.

O-Wang J, Kawamura K, Tada Y, Ohmori H, Kimura H, Sakiyama S, Tagawa M.

Cancer Res. 2001 Jul 15;61(14):5366-9.

29.

Sez4 gene encoding an elongation subunit of DNA polymerase zeta is required for normal embryogenesis.

Kajiwara K, O-Wang J, Sakurai T, Yamashita S, Tanaka M, Sato M, Tagawa M, Sugaya E, Nakamura K, Nakao K, Katsuki M, Kimura M.

Genes Cells. 2001 Feb;6(2):99-106.

30.

The error-prone DNA polymerase zeta catalytic subunit (Rev3) gene is ubiquitously expressed in normal and malignant human tissues.

Kawamura K, O-Wang J, Bahar R, Koshikawa N, Shishikura T, Nakagawara A, Sakiyama S, Kajiwara K, Kimura M, Tagawa M.

Int J Oncol. 2001 Jan;18(1):97-103.

PMID:
11115544

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