» Authors » Satoshi Naito

Satoshi Naito

Explore the profile of Satoshi Naito including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 71
Citations 1494
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Tsumura T, Hagiwara D, Naito S, Kondo Y, Kawaguchi Y, Miyata T, et al.
Peptides . 2025 Jan; 184:171352. PMID: 39870309
Transient polyuria during pregnancy is reportedly caused by increased arginine vasopressin (AVP) degradation due to vasopressinase produced by the placenta. The mechanism underlying transient polyuria during pregnancy has not been...
2.
Aoyama H, Arae T, Yamashita Y, Toyoda A, Naito S, Sotta N, et al.
Plant J . 2024 Mar; 118(6):1889-1906. PMID: 38494830
Plants have developed the ability to adjust to the day/night cycle through the expression of diel genes, which allow them to effectively respond to environmental changes and optimise their growth...
3.
Imamichi T, Kusumoto N, Aoyama H, Takamatsu S, Honda Y, Muraoka S, et al.
Nucleic Acids Res . 2024 Feb; 52(8):4276-4294. PMID: 38366760
The bZIP60, XBP1 and HAC1 mRNAs encode transcription factors that mediate the unfolded protein response (UPR) in plants, animals and yeasts, respectively. Upon UPR, these mRNAs undergo unconventional cytoplasmic splicing...
4.
Sasaki S, Murakami T, Yasumuro M, Makita A, Oi Y, Hiragori Y, et al.
Plant Biotechnol (Tokyo) . 2024 Jan; 40(1):21-30. PMID: 38213914
Perturbations in ribosome biogenesis cause a type of cellular stress called nucleolar or ribosomal stress, which triggers adaptive responses in both animal and plant cells. The Arabidopsis ANAC082 transcription factor...
5.
Hiragori Y, Takahashi H, Karino T, Kaido A, Hayashi N, Sasaki S, et al.
Plant Mol Biol . 2022 Aug; 111(1-2):37-55. PMID: 36044152
This study identified four novel regulatory non-AUG-initiated upstream ORFs (uORFs) with evolutionarily conserved sequences in Arabidopsis and elucidated the mechanism by which a non-AUG-initiated uORF promotes main ORF translation. Upstream...
6.
Sotta N, Chiba Y, Aoyama H, Takamatsu S, Suzuki T, Miwa K, et al.
Plant Cell Physiol . 2022 Feb; 63(5):592-604. PMID: 35166349
Recent accumulation of genomic and transcriptomic information has facilitated genetic studies. Increasing evidence has demonstrated that translation is an important regulatory step, and the transcriptome does not necessarily reflect the...
7.
Sotta N, Chiba Y, Miwa K, Takamatsu S, Tanaka M, Yamashita Y, et al.
Plant J . 2021 Mar; 106(5):1455-1467. PMID: 33772920
We previously reported that ribosome stalling at AUG-stop sequences in the 5'-untranslated region plays a critical role in regulating the expression of Arabidopsis thaliana NIP5;1, which encodes a boron uptake...
8.
Takahashi H, Miyaki S, Onouchi H, Motomura T, Idesako N, Takahashi A, et al.
Sci Rep . 2020 Oct; 10(1):16289. PMID: 33004976
Upstream open reading frames (uORFs) are present in the 5'-untranslated regions of many eukaryotic mRNAs, and some peptides encoded by these regions play important regulatory roles in controlling main ORF...
9.
Takahashi H, Hayashi N, Hiragori Y, Sasaki S, Motomura T, Yamashita Y, et al.
BMC Genomics . 2020 Apr; 21(1):260. PMID: 32228449
Background: Upstream open reading frames (uORFs) in the 5'-untranslated regions (5'-UTRs) of certain eukaryotic mRNAs encode evolutionarily conserved functional peptides, such as cis-acting regulatory peptides that control translation of downstream...
10.
Takamatsu S, Ohashi Y, Onoue N, Tajima Y, Imamichi T, Yonezawa S, et al.
Nucleic Acids Res . 2019 Dec; 48(4):1985-1999. PMID: 31875230
A number of regulatory nascent peptides have been shown to regulate gene expression by causing programmed ribosome stalling during translation. Nascent peptide emerges from the ribosome through the exit tunnel,...