Two aldehyde clearance systems are essential to prevent lethal formaldehyde accumulation in mice and humans FA Dingler, M Wang, A Mu, CL Millington, N Oberbeck, S Watcham, ... Molecular cell 80 (6), 996-1012. e9, 2020 | 141 | 2020 |
Neurotransmitter Transporter Family Including SLC 6 A 6 and SLC 6 A 13 Contributes to the 5‐Aminolevulinic Acid (ALA)‐Induced Accumulation of Protoporphyrin IX and Photodamage … TT Tran, A Mu, Y Adachi, Y Adachi, S Taketani Photochemistry and photobiology 90 (5), 1136-1143, 2014 | 128 | 2014 |
Continuous de novo biosynthesis of haem and its rapid turnover to bilirubin are necessary for cytoprotection against cell damage T Takeda, A Mu, TT Tai, S Kitajima, S Taketani Scientific reports 5 (1), 10488, 2015 | 53 | 2015 |
Analysis of disease model iPSCs derived from patients with a novel Fanconi anemia–like IBMFS ADH5/ALDH2 deficiency A Mu, A Hira, A Niwa, M Osawa, K Yoshida, M Mori, Y Okamoto, K Inoue, ... Blood, The Journal of the American Society of Hematology 137 (15), 2021-2032, 2021 | 36 | 2021 |
p53 directly regulates the transcription of the human frataxin gene and its lack of regulation in tumor cells decreases the utilization of mitochondrial iron R Shimizu, NN Lan, TT Tai, Y Adachi, A Kawazoe, A Mu, S Taketani Gene 551 (1), 79-85, 2014 | 35 | 2014 |
SLFN11 promotes stalled fork degradation that underlies the phenotype in Fanconi anemia cells Y Okamoto, M Abe, A Mu, Y Tempaku, CB Rogers, AL Mochizuki, ... Blood, The Journal of the American Society of Hematology 137 (3), 336-348, 2021 | 33 | 2021 |
Imaging of heme/hemeproteins in nucleus of the living cells expressing heme-binding nuclear receptors R Itoh, K Fujita, A Mu, DHT Kim, TT Tai, I Sagami, S Taketani FEBS letters 587 (14), 2131-2136, 2013 | 14 | 2013 |
Enhancements of the production of bilirubin and the expression of β‐globin by carbon monoxide during erythroid differentiation A Mu, M Li, M Tanaka, Y Adachi, TT Tai, PH Liem, S Izawa, K Furuyama, ... FEBS letters 590 (10), 1447-1454, 2016 | 8 | 2016 |
Mouse Slfn8 and Slfn9 genes complement human cells lacking SLFN11 during the replication stress response E Alvi, AL Mochizuki, Y Katsuki, M Ogawa, F Qi, Y Okamoto, M Takata, ... Communications Biology 6 (1), 1038, 2023 | 6 | 2023 |
A simple and highly sensitive method of measuring heme oxygenase activity PH Liem, A Mu, S Kikuta, K Ohta, S Kitajima, S Taketani Biological Chemistry 396 (11), 1265-1268, 2015 | 6 | 2015 |
The ribonuclease domain function is dispensable for SLFN11 to mediate cell fate decision during replication stress response F Qi, E Alvi, M Ogawa, J Kobayashi, A Mu, M Takata Genes to Cells 28 (9), 663-673, 2023 | 5 | 2023 |
Aldehyde degradation deficiency (ADD) syndrome: discovery of a novel fanconi anemia-like inherited BMF syndrome due to combined ADH5/ALDH2 deficiency A Mu, A Hira, K Matsuo, M Takata [Rinsho Ketsueki] The Japanese Journal of Clinical Hematology 62 (6), 547-553, 2021 | 5 | 2021 |
Fanconi anemia and Aldehyde Degradation Deficiency Syndrome: Metabolism and DNA repair protect the genome and hematopoiesis from endogenous DNA damage A Mu, A Hira, M Mori, Y Okamoto, M Takata DNA repair 130, 103546, 2023 | 4 | 2023 |
Lack of impact of the ALDH2 rs671 variant on breast cancer development in Japanese BRCA1/2‐mutation carriers T Mori, Y Okamoto, A Mu, Y Ide, A Yoshimura, N Senda, ... Cancer Medicine 12 (6), 6594-6602, 2023 | 4 | 2023 |
The role of SLFN11 in DNA replication stress response and its implications for the Fanconi anemia pathway A Mu, Y Okamoto, Y Katsuki, M Takata DNA repair, 103733, 2024 | 1 | 2024 |
Effects of the major formaldehyde catalyzer ADH5 on phenotypes of fanconi anemia zebrafish model A Mu, Z Cao, D Huang, H Hosokawa, S Maegawa, M Takata Molecular Biology Reports 50 (10), 8385-8395, 2023 | 1 | 2023 |
Mouse Slfn8 and Slfn9 genes complement human cells lacking SLFN11 during the replication stress E Alvi, AL Mochizuki, Y Katsuki, M Ogawa, F Qi, Y Okamoto, M Takata, ... | | |