Nobuaki Yoshida
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Explore the profile of Nobuaki Yoshida including associated specialties, affiliations and a list of published articles.
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82
Citations
3595
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Recent Articles
1.
Shibata T, Sato R, Taoka M, Saitoh S, Komine M, Yamaguchi K, et al.
J Exp Med
. 2023 Jul;
220(9).
PMID: 37462944
Loss-of-function mutations in the lysosomal nucleoside transporter SLC29A3 cause lysosomal nucleoside storage and histiocytosis: phagocyte accumulation in multiple organs. However, little is known about the mechanism by which lysosomal nucleoside...
2.
Goto F, Kiyama Y, Ogawa I, Okuno H, Ichise T, Ichise H, et al.
Mol Psychiatry
. 2022 Jan;
27(3):1694-1703.
PMID: 34997193
The amygdala, a critical brain region responsible for emotional behavior, is crucially involved in the regulation of the effects of stress on emotional behavior. In the mammalian forebrain, gastrin-releasing peptide...
3.
Yamanashi Y, Hitoosa K, Yoshida N, Kano F, Ikkatai Y, Sakamoto H
Am J Primatol
. 2021 Nov;
84(10):e23343.
PMID: 34762313
Environmental enrichment is essential for the well-being of zoo animals. Recent advances in sensor and video technologies may contribute to improvements in enrichment in terms of their flexibilities and time...
4.
Takeuchi Y, Kimura N, Murayama T, Machida Y, Iejima D, Nishimura T, et al.
Proc Natl Acad Sci U S A
. 2021 Oct;
118(43).
PMID: 34663724
Although it is held that proinflammatory changes precede the onset of breast cancer, the underlying mechanisms remain obscure. Here, we demonstrate that FRS2β, an adaptor protein expressed in a small...
5.
Liu K, Sato R, Shibata T, Hiranuma R, Reuter T, Fukui R, et al.
Int Immunol
. 2021 Jun;
33(9):479-490.
PMID: 34161582
RNase T2, a ubiquitously expressed RNase, degrades RNAs in the endosomal compartments. RNA sensors, double-stranded RNA (dsRNA)-sensing Toll-like receptor 3 (TLR3) and single-stranded RNA (ssRNA)-sensing TLR7, are localized in the...
6.
Omori S, Wang T, Johmura Y, Kanai T, Nakano Y, Kido T, et al.
Cell Metab
. 2020 Sep;
32(5):814-828.e6.
PMID: 32949498
Cell senescence plays a key role in age-associated organ dysfunction, but the in vivo pathogenesis is largely unclear. Here, we generated a p16-Cre-tdTomato mouse model to analyze the in vivo...
7.
Horie K, Kato T, Kudo T, Sasanuma H, Miyauchi M, Akiyama N, et al.
Sci Rep
. 2019 Dec;
9(1):19866.
PMID: 31882694
The environment experienced during spaceflight may impact the immune system and the thymus appears to undergo atrophy during spaceflight. However, molecular aspects of this thymic atrophy remain to be elucidated....
8.
Horie K, Sasanuma H, Kudo T, Fujita S, Miyauchi M, Miyao T, et al.
Sci Rep
. 2019 May;
9(1):7654.
PMID: 31114014
Secondary lymphoid organs are critical for regulating acquired immune responses. The aim of this study was to characterize the impact of spaceflight on secondary lymphoid organs at the molecular level....
9.
Poh B, Koso H, Momota H, Komori T, Suzuki Y, Yoshida N, et al.
Neuro Oncol
. 2019 Apr;
21(8):993-1004.
PMID: 30976792
Background: Embryonal tumors in the central nervous system (CNS) are primary, aggressive, and poorly differentiated pediatric brain tumors. We identified forkhead box R2 (Foxr2) as an oncogene for medulloblastoma through...
10.
Ichise T, Yoshida N, Ichise H
J Pathol
. 2019 Apr;
249(1):39-51.
PMID: 30953353
CREB-binding protein (CBP) and p300 have oncogenic properties; both co-operate with pro-oncogenic transcription factors downstream of Ras-Erk signalling to support cell proliferation. By contrast, missense, truncating and in-frame mutations of...