RRC ID 64682
著者 Mu A, Hira A, Niwa A, Osawa M, Yoshida K, Mori M, Okamoto Y, Inoue K, Kondo K, Kanemaki MT, Matsuda T, Ito E, Kojima S, Nakahata T, Ogawa S, Tanaka K, Matsuo K, Saito MK, Takata M.
タイトル Analysis of disease model iPSCs derived from patients with a novel Fanconi anemia-like IBMFS ADH5/ALDH2 deficiency.
ジャーナル Blood
Abstract We have recently discovered Japanese children with a novel Fanconi anemia-like inherited bone marrow failure syndrome (IBMFS). This disorder is likely caused by the loss of a catabolic system directed toward endogenous formaldehyde due to biallelic variants in ADH5 combined with a heterozygous ALDH2*2 dominant-negative allele (rs671), which is associated with alcohol-induced Asian flushing. Phytohemagglutinin-stimulated lymphocytes from these patients displayed highly increased numbers of spontaneous sister chromatid exchanges (SCEs), reflecting homologous recombination repair of formaldehyde damage. Here, we report that, in contrast, patient-derived fibroblasts showed normal levels of SCEs, suggesting that different cell types or conditions generate various amounts of formaldehyde. To obtain insights about endogenous formaldehyde production and how defects in ADH5/ALDH2 affect human hematopoiesis, we constructed disease model cell lines, including induced pluripotent stem cells (iPSCs). We found that ADH5 is the primary defense against formaldehyde, and ALDH2 provides a backup. DNA repair capacity in the ADH5/ALDH2-deficient cell lines can be overwhelmed by exogenous low-dose formaldehyde, as indicated by higher levels of DNA damage than in FANCD2-deficient cells. Although ADH5/ALDH2-deficient cell lines were healthy and showed stable growth, disease model iPSCs displayed drastically defective cell expansion when stimulated into hematopoietic differentiation in vitro, displaying increased levels of DNA damage. The expansion defect was partially reversed by treatment with a new small molecule termed C1, which is an agonist of ALDH2, thus identifying a potential therapeutic strategy for the patients. We propose that hematopoiesis or lymphocyte blastogenesis may entail formaldehyde generation that necessitates elimination by ADH5/ALDH2 enzymes.
巻・号 137(15)
ページ 2021-2032
公開日 2021-4-15
DOI 10.1182/blood.2020009111
PII S0006-4971(21)00056-2
PMID 33512438
MeSH Aldehyde Dehydrogenase, Mitochondrial / genetics* CRISPR-Cas Systems Cell Line Cells, Cultured Congenital Bone Marrow Failure Syndromes / diagnosis Congenital Bone Marrow Failure Syndromes / genetics* Congenital Bone Marrow Failure Syndromes / pathology DNA Damage Fanconi Anemia / diagnosis Fanconi Anemia / genetics* Fanconi Anemia / pathology Gene Deletion Humans Induced Pluripotent Stem Cells / metabolism Induced Pluripotent Stem Cells / pathology* Mutation
IF 17.794
リソース情報
ヒト・動物細胞 OP9(RCB1124)