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Featured researches published by Toshihiro Sakurai.


Domestic Animal Endocrinology | 2016

A transcriptional cofactor YAP regulates IFNT expression via transcription factor TEAD in bovine conceptuses

Kazuya Kusama; Toshihiro Sakurai; Hanako Bai; Atsushi Ideta; Yoshito Aoyagi; Kazuhiko Imakawa

Interferon tau (IFNT) is the pregnancy recognition protein in all ruminants, and its expression is restricted to trophoblast cells. Interferon tau production increases as the conceptus elongates; however, its expression is downregulated soon after the initiation of conceptus attachment to the uterine epithelium. Our previous study identified that among 8 bovine IFNT genes, only 2 forms of IFNTs, IFNT2 and IFN-tau-c1, were expressed by the conceptuses during the periattachment period. To characterize whether Hippo signaling including a transcription cofactor yes-associated protein (YAP) was involved in the IFNT regulation, we examined the expression and effects of YAP and/or TEAD in human choriocarcinoma JEG3 and bovine trophoblast CT-1 cells, and in bovine conceptuses obtained from day 17, 20 or 22 pregnant animals (pregnant day 19.5 = day of conceptus attachment to the endometrium). YAP was expressed in bovine conceptuses and transfection of YAP or TEAD4, a transcription factor partner of YAP, expression plasmid increased the luciferase activity of IFNT2 and IFN-tau-c1 reporter plasmids in JEG3 cells. In the presence of YAP expression plasmid, TEAD2 or TEAD4 expression plasmid further upregulated transcriptional activity of IFNT2 or IFN-tau-c1 constructs, which were substantially reduced in the absence of the TEAD-binding site on IFNT2 or IFN-tau-c1 promoter region in JEG3 cells. In CT-1 cells, treatment with TEAD2, TEAD4, or YAP small-interfering RNA downregulated endogenous IFNT expression. It should be noted that TEAD2 and TEAD4 were predominantly localized in the nuclei of trophectoderm of Day 17 conceptuses, but nuclear localization appeared to be lower in those cells of conceptuses on days 20 and 22 of pregnancy. Moreover, the binding of TEAD4 to the TEAD-binding site of the IFN-tau-c1 promoter region in day 17 conceptuses was less in day 20 and 22 conceptuses. Furthermore, the level of YAP phosphorylation increased in day 20 and 22 conceptuses. These results indicated that although YAP/TEAD had the ability to up-regulate IFNT gene transcription on day 17, IFNT2 or IFN-tau-c1 was down-regulated following changes in the localization of TEAD2 and TEAD4 from the nucleus to the cytoplasm and increases in phosphorylation and degradation of YAP. These data suggest that TEAD relocation and/or YAP degradation following its phosphorylation down-regulates IFNT gene transcription after conceptus attachment to the uterine endometrium.


PLOS ONE | 2016

Induction of IFNT-Stimulated Genes by Conceptus-Derived Exosomes during the Attachment Period

Keigo Nakamura; Kazuya Kusama; Toshihiro Sakurai; Kazuto Isuzugawa; James D. Godkin; Yoshihito Suda; Kazuhiko Imakawa

Biochemical and/or physical communication between the conceptus and the uterine endometrium is required for conceptus implantation to the maternal endometrium, leading to placentation and the establishment of pregnancy. We previously reported that in vitro co-culture system with bovine trophoblast CT-1 cells, primary uterine endometrial epithelial cells (EECs), and uterine flushings (UFs) mimics in vivo conceptus attachment process. To identify molecules in UFs responsible for this change, we first characterized protein contents of UFs from day 17 cyclic (C17) and pregnant (P17) ewes through the use of two dimensional-Polyacrylamide Gel Electrophoresis (2D-PAGE), followed by Liquid Chromatography-tandem Mass Spectrometry (LC-MS/MS) analysis. These analyses identified 266 proteins specific for P17 UFs, from which 172 proteins were identified as exosomal proteins. Among 172 exosomal proteins, 8 proteins that had been identified as exosomal proteins were chosen for further analysis, including macrophage-capping protein (CAPG), aldo-keto reductase family 1, member B1 protein (AKR1B1), bcl-2-like protein 15 (BCL2L15), carbonic anhydrase 2 (CA2), isocitrate dehydrogenase 2 (IDH2), eukaryotic translation elongation factor 2 (EEF2), moesin (MSN), and ezrin (EZR). CAPG and AKR1B1 were again confirmed in P15 and P17 UFs, and more importantly CAPG and AKR1B1, mRNA and protein, were found only in P15 and P17 conceptuses. Moreover, exosomes were isolated from C15, C17, P15, or P17 UFs. Only P15 and P17 exosomes, originated from the conceptus, contained interferon tau (IFNT) as well as CAPG and AKR1B1, and up-regulated STAT1, STAT2, MX1, MX2, BST2, and ISG15 transcripts in EECs. These observations indicate that in addition to endometrial derived exosomes previously described, conceptus-derived exosomes are present in UFs and could function to modify endometrial response. These results suggest that exosomes secreted from conceptuses as well as endometria are involved in cell to cell interactions for conceptus implantation to the maternal endometrium.


Toxicology Letters | 2016

Preliminary characterization of a murine model for 1-bromopropane neurotoxicity: Role of cytochrome P450.

Cai Zong; C. Edwin Garner; Chinyen Huang; Xiao Zhang; Lingyi Zhang; Jie Chang; Shinya Toyokuni; Hidenori Ito; Masashi Kato; Toshihiro Sakurai; Sahoko Ichihara; Gaku Ichihara

Neurotoxicity of 1-bromopropane (1-BP) has been reported in both human cases and animal studies. To date, neurotoxicity of 1-BP has been induced in rats but not in mice due to the lethal hepatotoxicity of 1-BP. Oxidization by cytochromes P450 and conjugation with glutathione (GSH) are two critical metabolism pathways of 1-BP and play important roles in toxicity of 1-BP. The aim of the present study was to establish a murine model of 1-BP neurotoxicity, by reducing the hepatotoxicity of 1-BP with 1-aminobenzotriazole (1-ABT); a commonly used nonspecific P450s inhibitor. The results showed that subcutaneous or intraperitoneal injection of 1-ABT at 50mg/kg body weight BID (100mg/kg BW/day) for 3days, inhibited about 92-96% of hepatic microsomal CYP2E1 activity, but only inhibited about 62-64% of CYP2E1 activity in brain microsomes. Mice treated with 1-ABT survived even after exposure to 1200ppm 1-BP for 4 weeks and histopathological studies showed that treatment with 1-ABT protected mice from 1-BP-induced hepatic necrosis, hepatocyte degeneration, and hemorrhage. After 4-week exposure to 1-BP, the brain weight of 1-ABT(+)/1200ppm 1-BP group was decreased significantly. In 1-ABT-treated groups, expression of hippocampal Ran protein and cerebral cortical GRP78 was dose-dependently increased by exposure to 1-BP. We conclude that the control of hepatic P450 activity allows the observation of effects of 1-BP on the murine brain at a higher concentration by reduction of hepatotoxicity. The study suggests that further experiments with liver-specific control of P450 activity using gene technology might provide better murine models for 1-bromopropane-induced neurotoxicity.


Toxicological Sciences | 2018

Exposure of Mice to 1,2-Dichloropropane Induces CYP450-Dependent Proliferation and Apoptosis of Cholangiocytes

Xiao Zhang; Cai Zong; Lingyi Zhang; Edwin Garner; Shigeyuki Sugie; Chinyen Huang; Wenting Wu; Jie Chang; Toshihiro Sakurai; Masashi Kato; Sahoko Ichihara; Shinji Kumagai; Gaku Ichihara

1,2-Dichloropropane (1,2-DCP) has been used as a paint remover in the industry. The International Agency for Research on Cancer reclassified this compound recently to group 1 (carcinogenic to humans) based on epidemiological studies of cholangiocarcinoma among offset-color proof-printing workers exposed to 1,2-DCP in Japan. Two-year rodent carcinogenicity bioassays demonstrated that 1,2-DCP induced tumors in liver and lung, but not in bile duct. The present study was designed to assess the toxic effects of 1,2-DCP on proliferation and apoptosis in mice bile duct and the role of cytochrome P450 (CYP450) in any such effect. Male C57BL/6JJcl mice were cotreated or untreated with 1-aminobenzotriazole (1-ABT), a CYP450 inhibitor, and exposed to inhalation of 1,2-DCP at 0, 50, or 250 ppm alone, or at 0, 50, 250, or 1250 ppm 8 h/day for 4 weeks. Exposure to 1,2-DCP increased proliferation and apoptosis of cholangiocytes and induced severe hepatic damage, but had no effect on the lungs. Cotreatment with 1-ABT abrogated the effects of 1,2-DCP on proliferation and apoptosis of cholangiocytes. The results revealed that 1,2-DCP induces proliferation and apoptosis of cholangiocytes and that this effect is mediated through CYP450.


The FASEB Journal | 2018

Down-regulation of transcription factor OVOL2 contributes to epithelial–mesenchymal transition in a noninvasive type of trophoblast implantation to the maternal endometrium

Kazuya Kusama; Keigo Nakamura; Toshihiro Sakurai; Koji Kimura; Atsushi Ideta; Yoshito Aoyagi; Kazuhiko Imakawa

Embryo implantation into the uterine endometrium is required for pregnancy establishment in most mammals. By using global expression analysis, we investigated the molecules that are related to epithelial‐mesenchymal transition (EMT) in noninvasive bovine trophoblasts and found that the transcription factor, ovo‐like zinc finger 2 (OVOL2), which is essential for mesenchymal‐epithelial transition in various cancers, was down‐regulated after trophoblast attachment to the endometrial epithelium in utero. In cultured bovine trophoblast cells, OVOL2 down‐regulation occurred only when cells were allowed to attach to bovine endometrial epithelial cells viathe TEAD3/YAP signaling pathway. This resulted in the up‐regulation of the EMT‐associated transcription factors, ZEB1 and SNAI2, and the mesenchymal cell markers, N‐cadherin (CDH2) and vimentin (VIM), whereas epithelial cell marker, E‐cadherin (CDH1), was down‐regulated. In contrast, OVOL2 overexpression in bovine trophoblast cells exhibited a decrease in ZEB1 transcripts and an increase in E‐cadherin. These observations revealed that ovo‐like protein (OVOL)2 down‐regulation occurred concurrently with conceptus implantation into the uterine endometrium via the YAP/TEAD3 signaling pathway, and suggest that the down‐regulation of OVOL2 expression contributes to the up‐regulation of EMT‐related transcription factor expression, which enables EMT progression in the noninvasive bovine trophectoderm postimplantation.—Bai R., Kusama, K., Nakamura, K., Sakurai, T., Kimura, K., Ideta, A., Aoyagi, Y., Imakawa K. Down‐regulation of transcription factor OVOL2 contributes to epithelial–mesenchymal transition in a noninvasive type of trophoblast implantation to the maternal endometrium. FASEB J. 32, 3371–3384 (2018). www.fasebj.org


BMC Cancer | 2018

The DNA methylation profile of liver tumors in C3H mice and identification of differentially methylated regions involved in the regulation of tumorigenic genes

Junya Matsushita; Kazuyuki Okamura; Kazuhiko Nakabayashi; Takehiro Suzuki; Yu Horibe; Tomoko Kawai; Toshihiro Sakurai; Satoshi Yamashita; Yoshikazu Higami; Gaku Ichihara; Kenichiro Hata; Keiko Nohara

BackgroundC3H mice have been frequently used in cancer studies as animal models of spontaneous liver tumors and chemically induced hepatocellular carcinoma (HCC). Epigenetic modifications, including DNA methylation, are among pivotal control mechanisms of gene expression leading to carcinogenesis. Although information on somatic mutations in liver tumors of C3H mice is available, epigenetic aspects are yet to be clarified.MethodsWe performed next generation sequencing-based analysis of DNA methylation and microarray analysis of gene expression to explore genes regulated by DNA methylation in spontaneous liver tumors of C3H mice. Overlaying these data, we selected cancer-related genes whose expressions are inversely correlated with DNA methylation levels in the associated differentially methylated regions (DMRs) located around transcription start sites (TSSs) (promoter DMRs). We further assessed mutuality of the selected genes for expression and DNA methylation in human HCC using the Cancer Genome Atlas (TCGA) database.ResultsWe obtained data on genome-wide DNA methylation profiles in the normal and tumor livers of C3H mice. We identified promoter DMRs of genes which are reported to be related to cancer and whose expressions are inversely correlated with the DNA methylation, including Mst1r, Slpi and Extl1. The association between DNA methylation and gene expression was confirmed using a DNA methylation inhibitor 5-aza-2′-deoxycytidine (5-aza-dC) in Hepa1c1c7 cells and Hepa1-6 cells. Overexpression of Mst1r in Hepa1c1c7 cells illuminated a novel downstream pathway via IL-33 upregulation. Database search indicated that gene expressions of Mst1r and Slpi are upregulated and the TSS upstream regions are hypomethylated also in human HCC. These results suggest that DMRs, including those of Mst1r and Slpi, are involved in liver tumorigenesis in C3H mice, and also possibly in human HCC.ConclusionsOur study clarified genome wide DNA methylation landscape of C3H mice. The data provide useful information for further epigenetic studies of mice models of HCC. The present study particularly proposed novel DNA methylation-regulated pathways for Mst1r and Slpi, which may be applied not only to mouse HCC but also to human HCC.


Biochemical Journal | 2017

Novel endogenous retrovirus-derived transcript expressed in the bovine placenta is regulated by WNT signaling

Toshihiro Sakurai; So Nakagawa; Hanako Bai; Kazuya Kusama; Atsushi Ideta; Yoshito Aoyagi; Kazuyuki Kaneko; Kosuke Iga; Jiro Yasuda; Takayuki Miyazawa; Kazuhiko Imakawa

Endogenous retroviruses (ERVs) are involved in placentation; perhaps, the most well-known ERVs are the syncytins, actively transcribed env genes involved in cell–cell fusion and possible morphological variations. However, ERVs other than syncytins that play an important role in placental development have not been well characterized. To identify ERV genes expressed during the onset of placentation in the bovine species, we characterized the expression profiles of bovine conceptus transcripts during the peri-attachment period using RNA-seq analysis, and confirming some candidates through real-time PCR. Using in silico and PCR analyses, we identified a novel ERV proviral sequence derived from a gag region, designated bovine endogenous retroviruses (BERV)-K3, containing Gag_p10 and Gag_p24, zinc finger domain. Initial expression of this ERV in bovine conceptuses was on day 20 (day 0 = day of estrus), soon after conceptus attachment to the endometrial epithelium, and its high placental expression was maintained up to the middle of pregnancy. The BERV-K3 transcript was also found in the uterine luminal and glandular epithelia, liver, kidney, intestine, and skin. BERV-K3 is located on chromosome 7 and integrated within LOC100848658, from which noncoding RNA could be transcribed. Furthermore, the expression of endogenous BERV-K3 in bovine trophoblast cell lines was induced by a WNT agonist, a signaling system common to genes expressed in placentas. These data support the argument that during the evolutionary process, mammals incorporated not only similar ERV sequences, but also ERVs unique to individual species. BERV-K3 is in the latter case, likely providing functions unique to ruminant gestation.


Biochemical and Biophysical Research Communications | 2018

Intrauterine exosomes are required for bovine conceptus implantation

Kazuya Kusama; Keigo Nakamura; Kentaro Nagaoka; Toshihiro Sakurai; Kazuhiko Imakawa


Reproduction, Fertility and Development | 2018

Exchange protein directly activated by cAMP (EPAC) promotes transcriptional activation of the decidual prolactin gene via CCAAT/enhancer-binding protein in human endometrial stromal cells

Kazuya Kusama; Kazuhiro Tamura; Hanako Bai; Toshihiro Sakurai; Hirotaka Nishi; Keiichi Isaka; Kazuhiko Imakawa; Mikihiro Yoshie


Toxicology Research | 2016

Role of cytochrome P450s in the male reproductive toxicity of 1-bromopropane

Cai Zong; Xiao Zhang; Chinyen Huang; Jie Chang; C. Edwin Garner; Toshihiro Sakurai; Masashi Kato; Sahoko Ichihara; Gaku Ichihara

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Gaku Ichihara

Tokyo University of Science

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