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Dive into the research topics where Hiroaki Hase is active.

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Featured researches published by Hiroaki Hase.


Molecular Cancer Research | 2015

miR-629 Targets TRIM33 to Promote TGFβ/Smad Signaling and Metastatic Phenotypes in ccRCC

Kentaro Jingushi; Yuko Ueda; Kaori Kitae; Hiroaki Hase; Hiroshi Egawa; Ikumi Ohshio; Ryoji Kawakami; Yuri Kashiwagi; Yohei Tsukada; Takumi Kobayashi; Wataru Nakata; Kazutoshi Fujita; Motohide Uemura; Norio Nonomura; Kazutake Tsujikawa

Renal cell carcinoma (RCC) is the most common neoplasm of the adult kidney, and clear cell RCC (ccRCC) represents its most common histological subtype. To identify a therapeutic target for ccRCC, miRNA expression signatures from ccRCC clinical specimens were analyzed. miRNA microarray and real-time PCR analyses revealed that miR-629 expression was significantly upregulated in human ccRCC compared with adjacent noncancerous renal tissue. Functional inhibition of miR-629 by a hairpin miRNA inhibitor suppressed ccRCC cell motility and invasion. Mechanistically, miR-629 directly targeted tripartite motif-containing 33 (TRIM33), which inhibits the TGFβ/Smad signaling pathway. In clinical ccRCC specimens, downregulation of TRIM33 was observed with the association of both pathologic stages and grades. The miR-629 inhibitor significantly suppressed TGFβ-induced Smad activation by upregulating TRIM33 expression and subsequently inhibited the association of Smad2/3 and Smad4. Moreover, a miR-629 mimic enhanced the effect of TGFβ on the expression of epithelial–mesenchymal transition–related factors as well as on the motility and invasion in ccRCC cells. These findings identify miR-629 as a potent regulator of the TGFβ/Smad signaling pathway via TRIM33 in ccRCC. Implications: This study suggests that miR-629 has biomarker potential through its ability to regulate TGFβ/Smad signaling and accelerate ccRCC cell motility and invasion. Mol Cancer Res; 13(3); 565–74. ©2014 AACR.


Scientific Reports | 2017

AlkB homolog 3-mediated tRNA demethylation promotes protein synthesis in cancer cells

Yuko Ueda; Ikumi Ooshio; Yasuyuki Fusamae; Kaori Kitae; Megumi Kawaguchi; Kentaro Jingushi; Hiroaki Hase; Kazuo Harada; Kazumasa Hirata; Kazutake Tsujikawa

The mammalian AlkB homolog (ALKBH) family of proteins possess a 2-oxoglutarate- and Fe(II)-dependent oxygenase domain. A similar domain in the Escherichia coli AlkB protein catalyzes the oxidative demethylation of 1-methyladenine (1-meA) and 3-methylcytosine (3-meC) in both DNA and RNA. AlkB homolog 3 (ALKBH3) was also shown to demethylate 1-meA and 3-meC (induced in single-stranded DNA and RNA by a methylating agent) to reverse the methylation damage and retain the integrity of the DNA/RNA. We previously reported the high expression of ALKBH3 in clinical tumor specimens and its involvement in tumor progression. In this study, we found that ALKBH3 effectively demethylated 1-meA and 3-meC within endogenously methylated RNA. Moreover, using highly purified recombinant ALKBH3, we identified N6-methyladenine (N6-meA) in mammalian transfer RNA (tRNA) as a novel ALKBH3 substrate. An in vitro translation assay showed that ALKBH3-demethylated tRNA significantly enhanced protein translation efficiency. In addition, ALKBH3 knockdown in human cancer cells impaired cellular proliferation and suppressed the nascent protein synthesis that is usually accompanied by accumulation of the methylated RNAs. Thus, our data highlight a novel role for ALKBH3 in tumor progression via RNA demethylation and subsequent protein synthesis promotion.


Molecular Cancer Research | 2014

LOXL2 Status Correlates with Tumor Stage and Regulates Integrin Levels to Promote Tumor Progression in ccRCC

Hiroaki Hase; Kentaro Jingushi; Yuko Ueda; Kaori Kitae; Hiroshi Egawa; Ikumi Ohshio; Ryoji Kawakami; Yuri Kashiwagi; Yohei Tsukada; Takumi Kobayashi; Wataru Nakata; Kazutoshi Fujita; Motohide Uemura; Norio Nonomura; Kazutake Tsujikawa

Clear cell renal cell carcinoma (ccRCC) is the most common histologically defined subtype of renal cell carcinoma (RCC). To define the molecular mechanism in the progression of ccRCC, we focused on LOX-like protein 2 (LOXL2), which is critical for the first step in collagen and elastin cross-linking. Using exon array analysis and quantitative validation, LOXL2 was shown to be significantly upregulated in clinical specimens of human ccRCC tumor tissues, compared with adjacent noncancerous renal tissues, and this elevated expression correlated with the pathologic stages of ccRCC. RNAi-mediated knockdown of LOXL2 resulted in marked suppression of stress-fiber and focal adhesion formation in ccRCC cells. Moreover, LOXL2 siRNA knockdown significantly inhibited cell growth, migration, and invasion. Mechanistically, LOXL2 regulated the degradation of both integrins α5 (ITGAV5) and β1 (ITGB1) via protease- and proteasome-dependent systems. In clinical ccRCC specimens, the expression levels of LOXL2 and integrin α5 correlated with the pathologic tumor grades. In conclusion, LOXL2 is a potent regulator of integrin α5 and integrin β1 protein levels and functions in a tumor-promoting capacity in ccRCC. Implications: This is the first report demonstrating that LOXL2 is highly expressed and involved in ccRCC progression by regulating the levels of integrins α5 and β1. Mol Cancer Res; 12(12); 1807–17. ©2014 AACR.


International Journal of Oncology | 2017

High miR-122 expression promotes malignant phenotypes in ccRCC by targeting occludin

Kentaro Jingushi; Yuri Kashiwagi; Yuko Ueda; Kaori Kitae; Hiroaki Hase; Wataru Nakata; Kazutoshi Fujita; Motohide Uemura; Norio Nonomura; Kazutake Tsujikawa

Renal cell carcinoma (RCC) is the most common neoplasm of the adult kidney, and clear cell RCC (ccRCC) represents its most common histological subtype. Although several studies have reported high expression of miR-122 in ccRCC, its physiological role remains unclear. To clarify the role of miR-122 in ccRCC, we compared miR-122 expression levels in non-cancerous tissue and ccRCC. Significant upregulation of miR-122 was observed in ccRCC specimens. Moreover, ccRCC patients with high miR-122 expression showed poor progression-free survival compared to those with low miR-122 expression. Overexpression of miR-122 using an miRNA mimic promoted proliferation, migration, and invasion activities of ccRCC cells. miR-122 directly targets occludin, a known component of tight junctions. Occludin knockdown promoted the cell migration activity but not proliferation or invasion activities of ccRCC cells. In human clinical specimens, miR-122 expression inversely correlated with occludin protein expression. These findings show that miR-122 is an oncomiR in ccRCC.


Biochemical and Biophysical Research Communications | 2017

TP53 gene status is a critical determinant of phenotypes induced by ALKBH3 knockdown in non-small cell lung cancers

Takahiro Kogaki; Ikumi Ohshio; Megumi Kawaguchi; Mizuki Kimoto; Kaori Kitae; Hiroaki Hase; Yuko Ueda; Kentaro Jingushi; Kazutake Tsujikawa


Biochemical and Biophysical Research Communications | 2016

ALKBH8 promotes bladder cancer growth and progression through regulating the expression of survivin

Ikumi Ohshio; Ryoji Kawakami; Yohei Tsukada; Kazuhiro Nakajima; Kaori Kitae; Tomoki Shimanoe; Yasuka Saigo; Hiroaki Hase; Yuko Ueda; Kentaro Jingushi; Kazutake Tsujikawa


Anticancer Research | 2018

Novel Metabolically Stable PCA-1/ALKBH3 Inhibitor Has Potent Antiproliferative Effects on DU145 Cells In Vivo

Masahiro Ueda; Tadashi Shimizu; Miyuki Mabuchi; Kota Horiike; Kaori Kitae; Hiroaki Hase; Yuko Ueda; Kazutake Tsujikawa; Akito Tanaka


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Quantification and global identification of RNA modifications in cancer and availability as biomarkers

Ikumi Ooshio; Yuko Ueda; Hiroaki Hase; Kaori Kitae; Manami Nishimoto; Satoko Inubushi; Syohei Sato; Shintaro Fujii; Kentaro Jingushi; Kazutoshi Fujita; Motohide Uemura; Norio Nonomura; Kazutake Tsujikawa


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Fluctuation and functional analyses of RNA modifications associated with mouse aging

Manami Nishimoto; Ikumi Oshio; Satoko Inubushi; Sachi Wakasugi; Kaori Kitae; Kentaro Jingushi; Yuko Ueda; Hiroaki Hase; Kazutake Tsujikawa


The Molecular Biology Society of Japan | 2016

fundamental research of biological control by RNA epigenetics

Hiroaki Hase; Ikumi Ohshio; Yuko Ueda; Kaori Kitae; Manami Nishimoto; Satoko Inubushi; Mizuki Kimoto; Tatsuhiko Furukawa; Kazutake Tsujikawa

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