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Dive into the research topics where Hiroto Nishihara is active.

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Featured researches published by Hiroto Nishihara.


Journal of Reproduction and Development | 2016

Search for regulatory factors of the pituitary-specific transcription factor PROP1 gene.

Naoto Nishimura; Hiroki Ueharu; Hiroto Nishihara; Shiori Shibuya; Saishu Yoshida; Masashi Higuchi; Naoko Kanno; Kotaro Horiguchi; Takako Kato; Yukio Kato

Pituitary-specific transcription factor PROP1, a factor important for pituitary organogenesis, appears on rat embryonic day 11.5 (E11.5) in SOX2-expressing stem/progenitor cells and always coexists with SOX2 throughout life. PROP1-positive cells at one point occupy all cells in Rathke’s pouch, followed by a rapid decrease in their number. Their regulatory factors, except for RBP-J, have not yet been clarified. This study aimed to use the 3 kb upstream region and 1st intron of mouse prop1 to pinpoint a group of factors selected on the basis of expression in the early pituitary gland for expression of Prop1. Reporter assays for SOX2 and RBP-J showed that the stem/progenitor marker SOX2 has cell type-dependent inhibitory and activating functions through the proximal and distal upstream regions of Prop1, respectively, while RBP-J had small regulatory activity in some cell lines. Reporter assays for another 39 factors using the 3 kb upstream regions in CHO cells ultimately revealed that 8 factors, MSX2, PAX6, PIT1, PITX1, PITX2, RPF1, SOX8 and SOX11, but not RBP-J, regulate Prop1 expression. Furthermore, a synergy effect with SOX2 was observed for an additional 10 factors, FOXJ1, HES1, HEY1, HEY2, KLF6, MSX1, RUNX1, TEAD2, YBX2 and ZFP36Ll, which did not show substantial independent action. Thus, we demonstrated 19 candidates, including SOX2, to be regulatory factors of Prop1 expression.


PLOS ONE | 2016

S100β-Positive Cells of Mesenchymal Origin Reside in the Anterior Lobe of the Embryonic Pituitary Gland

Kotaro Horiguchi; Hideji Yako; Saishu Yoshida; Ken Fujiwara; Takehiro Tsukada; Naoko Kanno; Hiroki Ueharu; Hiroto Nishihara; Takako Kato; Takashi Yashiro; Yukio Kato

The anterior and intermediate lobes of the pituitary gland develop through invagination of the oral ectoderm and as they are endocrine tissues, they participate in the maintenance of vital functions via the synthesis and secretion of numerous hormones. We recently observed that several extrapituitary cells invade the anterior lobe of the developing pituitary gland. This raised the question of the origin(s) of these S100β-positive cells, which are not classic endocrine cells but instead comprise a heterogeneous cell population with plural roles, especially as stem/progenitor cells. To better understand the roles of these S100β-positive cells, we performed immunohistochemical analysis using several markers in S100β/GFP-TG rats, which express GFP in S100β-expressing cells under control of the S100β promoter. GFP-positive cells were present as mesenchymal cells surrounding the developing pituitary gland and at Atwells recess but were not present in the anterior lobe on embryonic day 15.5. These cells were negative for SOX2, a pituitary stem/progenitor marker, and PRRX1, a mesenchyme and pituitary stem/progenitor marker. However, three days later, GFP-positive and PRRX1-positive (but SOX2-negative) cells were observed in the parenchyma of the anterior lobe. Furthermore, some GFP-positive cells were positive for vimentin, p75, isolectin B4, DESMIN, and Ki67. These data suggest that S100β-positive cells of extrapituitary origin invade the anterior lobe, undergoing proliferation and diverse transformation during pituitary organogenesis.


Journal of Neuroendocrinology | 2018

Retinoic acid signalling is a candidate regulator of the expression of pituitary-specific transcription factor Prop1 in the developing rodent pituitary

Saishu Yoshida; K. Fujiwara; Hiroto Nishihara; Takako Kato; Takashi Yashiro; Yukio Kato

Development of the anterior pituitary proceeds via spatiotemporal patterning of transcription factors and signalling molecules. Among them, retinoic acid (RA) functions as an important signalling molecule for vertebrate organogenesis in many tissues. However, little is known regarding the target genes in the developing pituitary. The present study aimed to clarify the relationship between endogenous RA signalling and mRNA expression of the pituitary‐specific transcription factor Prop1 in the pituitary primordium of Rathkes pouch. Gene expression analysis and in situ hybridisation demonstrated that retinaldehyde dehydrogenases (Raldhs) and all types of RA receptors (Rars) are expressed at the level of transcription in the rat Rathkes pouch. Ex vivo organ culture using Rathkes pouch and an in vitro reporter assay demonstrated that RA signalling increases the expression level of Prop1 via RARα. Moreover, a reporter assay using serial truncated constructs of the 5′‐upstream region of mouse Prop1 revealed a predicted cis‐regulatory element of RARα. This is the first report of a relationship between RA signalling and Prop1‐expression during early pituitary development.


Journal of Reproduction and Development | 2017

Involvement of DNA methylation in regulating rat Prop1 gene expression during pituitary organogenesis

Hiroto Nishihara; Saishu Yoshida; Naoko Kanno; Naoto Nishimura; Hiroki Ueharu; Jun Ohgane; Takako Kato; Yukio Kato

PROP1 is a pituitary specific transcription factor that plays a crucial role in pituitary organogenesis. The Prop1 shows varied expression patterns that promptly emerge and then fade during the early embryonic period. However, the regulatory mechanisms governing Prop1 expression remain unclear. Here, we investigated whether Prop1 was under epigenetic regulation by DNA methylation. Bisulfite sequencing was performed on DNA obtained from the pituitary glands and livers of rats on embryonic days (E) 13.5 and E14.5, and postnatal days (P) 4 and P30. The methylation of CpG sites in seven regions from 3-kb upstream of the Prop1 transcription start site through to its second intron were examined. Certain differences in CpG-methylation levels were observed in Region-1 (–2772 b to –2355 b), Region-4 (–198 b to +286 b), Region-5 (+671 b to +990 b), and Region-6 (+1113 b to +1273 b) based on comparisons between pituitary and liver DNA on E13.5. DNA methylation in pituitary glands on E14.5, P4, and P30 was generally similar to that observed in in the pituitary gland on E13.5, whereas the anterior and intermediate lobes of the pituitary gland on P4 and P30 showed only small differences. These results indicate that Prop1 is under regulation by CpG methylation during the early period of pituitary primordium development around E13.5.


Journal of Reproduction and Development | 2017

Construction and expression of vectors encoding biologically active rodent gonadotropins

Akihiko Ohta; Yuichiro Tsunoda; Yoshihiko Tamura; Kayoko Iino; Naoto Nishimura; Hiroto Nishihara; Haruka Takanashi; Saishu Yoshida; Takako Kato; Yukio Kato

The gonadotropins, luteinizing hormone (LH) and follicle-stimulating hormone (FSH), are important hormones in vertebrate reproduction. The isolation of gonadotropins from the pituitary gland is sub-optimal, as the cross-contamination of one hormone with another is common and often results in the variation in the measured activity of LH and FSH. The production of recombinant hormones is, therefore, a viable approach to solve this problem. This study aimed to express recombinant rat, mouse, and mastomys FSH and LH in Chinese hamster ovary (CHO) cells. Their common α-subunits along with their hormone-specific β-subunits were encoded in a single mammalian expression vector. FSH from all three species was expressed, whereas expression was achieved only for the mouse LH. Immunohistochemistry for rat alpha subunit of glycoprotein hormone (αGSU) and LHβ and FSHβ subunits confirmed the production of the dimeric hormone in CHO cells. The recombinant rodent gonadotropins were confirmed to be biologically active; estradiol production was increased by recombinant FSH in granulosa cells, while recombinant LH increased testosterone production in Leydig cells.


Cell and Tissue Research | 2017

Correction to: Cell type-specific localization of Ephs pairing with ephrin-B2 in the rat postnatal pituitary gland

Saishu Yoshida; Takako Kato; Naoko Kanno; Naoto Nishimura; Hiroto Nishihara; Kotaro Horiguchi; Yukio Kato

The published online version contains mistakes in Table 1, Table 2 and Fig. 2. See below for the corrected Tables and Figure.


Cell and Tissue Research | 2017

Cell type-specific localization of Ephs pairing with ephrin-B2 in the rat postnatal pituitary gland

Saishu Yoshida; Takako Kato; Naoko Kanno; Naoto Nishimura; Hiroto Nishihara; Kotaro Horiguchi; Yukio Kato

Sox2-expressing stem/progenitor cells in the anterior lobe of the pituitary gland form two types of micro-environments (niches): the marginal cell layer and dense cell clusters in the parenchyma. In relation to the mechanism of regulation of niches, juxtacrine signaling via ephrin and its receptor Eph is known to play important roles in various niches. The ephrin and Eph families are divided into two subclasses to create ephrin/Eph signaling in co-operation with confined partners. Recently, we reported that ephrin-B2 localizes specifically to both pituitary niches. However, the Ephs interacting with ephrin-B2 in these pituitary niches have not yet been identified. Therefore, the present study aims to identify the Ephs interacting with ephrin-B2 and the cells that produce them in the rat pituitary gland. In situ hybridization and immunohistochemistry demonstrated cell type-specific localization of candidate interacting partners for ephrin-B2, including EphA4 in cells located in the posterior lobe, EphB1 in gonadotropes, EphB2 in corticotropes, EphB3 in stem/progenitor cells and EphB4 in endothelial cells in the adult pituitary gland. In particular, double-immunohistochemistry showed cis-interactions between EphB3 and ephrin-B2 in the apical cell membranes of stem/progenitor cell niches throughout life and trans-interactions between EphB2 produced by corticotropes and ephrin-B2 located in the basolateral cell membranes of stem/progenitor cells in the early postnatal pituitary gland. These data indicate that ephrin-B2 plays a role in pituitary stem/progenitor cell niches by selective interaction with EphB3 in cis and EphB2 in trans.


Journal of Reproduction and Development | 2016

Transcription of follicle-stimulating hormone subunit genes is modulated by porcine LIM homeobox transcription factors, LHX2 and LHX3

Saishu Yoshida; Takako Kato; Naoto Nishimura; Naoko Kanno; Mo Chen; Hiroki Ueharu; Hiroto Nishihara; Yukio Kato


The Molecular Biology Society of Japan | 2016

Regulatory of pituitary specific transcription factor Prop1 by retinoic acid signaling

Hiroto Nishihara; Saishu Yoshida; Ken Fujiwara; Naoko Kanno; Hiroki Ueharu; Takako Kato; Takashi Yashiro; Yukio Kato


The Molecular Biology Society of Japan | 2015

Spatiotemporal localization and characterization of SOX10-positive cells in the pituitary gland.

Hiroki Ueharu; Naoto Nishimura; Saishu Yoshida; Naoko Kanno; Hiroto Nishihara; Takako Kato; Yukio Kato

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Ken Fujiwara

Jichi Medical University

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