Literature DB >> 31283017

Different Effects of Knockouts in ALDH2 and ACSS2 on Embryonic Stem Cell Differentiation.

Ryan N Serio1, Changyuan Lu2, Steven S Gross1,2, Lorraine J Gudas1,2.   

Abstract

BACKGROUND: Ethanol (EtOH) is a teratogen that causes severe birth defects, but the mechanisms by which EtOH affects stem cell differentiation are unclear. Our goal here is to examine the effects of EtOH and its metabolites, acetaldehyde (AcH) and acetate, on embryonic stem cell (ESC) differentiation.
METHODS: We designed ESC lines in which aldehyde dehydrogenase (ALDH2, NCBI#11669) and acyl-CoA synthetase short-chain family member 2 (ACSS2, NCBI#60525) were knocked out by CRISPR-Cas9 technology. We selected these genes because of their key roles in EtOH oxidation in order to dissect the effects of EtOH metabolism on differentiation.
RESULTS: By using kinetic assays, we confirmed that AcH is primarily oxidized by ALDH2 rather than ALDH1A2. We found increases in mRNAs of differentiation-associated genes (Hoxa1, Cyp26a1, and RARβ2) upon EtOH treatment of WT and Acss2-/- ESCs, but not Aldh2-/- ESCs. The absence of ALDH2 reduced mRNAs of some pluripotency factors (Nanog, Sox2, and Klf4). Treatment of WT ESCs with AcH or 4-hydroxynonenal (4-HNE), another substrate of ALDH2, increased differentiation-associated transcripts compared to levels in untreated cells. mRNAs of genes involved in retinoic acid (RA) synthesis (Stra6 and Rdh10) were also increased by EtOH, AcH, and 4-HNE treatment. Retinoic acid receptor-γ (RARγ) is required for both EtOH- and AcH-mediated increases in Hoxa1 and Stra6, demonstrating the critical role of RA:RARγ signaling in AcH-induced ESC differentiation.
CONCLUSIONS: ACSS2 knockouts showed no changes in differentiation phenotype, while pluripotency-related transcripts were decreased in ALDH2 knockout ESCs. We demonstrate that AcH increases differentiation-associated mRNAs in ESCs via RARγ.
© 2019 by the Research Society on Alcoholism.

Entities:  

Keywords:  4-HNE; ACSS2; ALDH2; Acetaldehyde; Alcohol; Differentiation; Ethanol; RARγ; Retinoic Acid; Stem Cells

Year:  2019        PMID: 31283017      PMCID: PMC6722009          DOI: 10.1111/acer.14146

Source DB:  PubMed          Journal:  Alcohol Clin Exp Res        ISSN: 0145-6008            Impact factor:   3.455


  63 in total

1.  Involvement of Oct3/4 in the enhancement of neuronal differentiation of ES cells in neurogenesis-inducing cultures.

Authors:  Koji Shimozaki; Kinichi Nakashima; Hitoshi Niwa; Tetsuya Taga
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2.  Differential expression of retinoic acid-synthesizing (RALDH) enzymes during fetal development and organ differentiation in the mouse.

Authors:  Karen Niederreither; Valérie Fraulob; Jean-Marie Garnier; Pierre Chambon; Pascal Dollé
Journal:  Mech Dev       Date:  2002-01       Impact factor: 1.882

3.  Growth inhibition and differentiation induction in murine erythroleukemia cells by 4-hydroxynonenal.

Authors:  M Rinaldi; G Barrera; P Spinsanti; S Pizzimenti; S A Ciafrè; P Parella; M G Farace; E Signori; M U Dianzani; V M Fazio
Journal:  Free Radic Res       Date:  2001-06

4.  Removal of LIF (leukemia inhibitory factor) results in increased vitamin A (retinol) metabolism to 4-oxoretinol in embryonic stem cells.

Authors:  M A Lane; A C Chen; S D Roman; F Derguini; L J Gudas
Journal:  Proc Natl Acad Sci U S A       Date:  1999-11-09       Impact factor: 11.205

5.  Association between aldehyde dehydrogenase gene polymorphisms and the phenomenon of field cancerization in patients with head and neck cancer.

Authors:  Manabu Muto; Mari Nakane; Yoshiaki Hitomi; Shigeru Yoshida; Satoshi Sasaki; Atsushi Ohtsu; Shigeaki Yoshida; Satoshi Ebihara; Hiroyasu Esumi
Journal:  Carcinogenesis       Date:  2002-10       Impact factor: 4.944

6.  Evaluation of the developmental toxicities of ethanol, acetaldehyde, and thioacetamide using FETAX.

Authors:  Douglas J Fort; Daniel W McLaughlin; Robert L Rogers; Brody O Buzzard
Journal:  Drug Chem Toxicol       Date:  2003-02       Impact factor: 3.356

7.  Ethanol- and acetaldehyde-mediated developmental toxicity in zebrafish.

Authors:  Mark J Reimers; Amanda R Flockton; Robert L Tanguay
Journal:  Neurotoxicol Teratol       Date:  2004 Nov-Dec       Impact factor: 3.763

Review 8.  Intracellular metabolism of 4-hydroxynonenal.

Authors:  Werner Siems; Tilman Grune
Journal:  Mol Aspects Med       Date:  2003 Aug-Oct

Review 9.  Role of human aldehyde dehydrogenases in endobiotic and xenobiotic metabolism.

Authors:  Vasilis Vasiliou; Aglaia Pappa; Tia Estey
Journal:  Drug Metab Rev       Date:  2004-05       Impact factor: 4.518

Review 10.  Fetal alcohol syndrome at the cellular level.

Authors:  John W Olney
Journal:  Addict Biol       Date:  2004-06       Impact factor: 4.280

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  3 in total

Review 1.  Modification of stem cell states by alcohol and acetaldehyde.

Authors:  Ryan N Serio; Lorraine J Gudas
Journal:  Chem Biol Interact       Date:  2019-12-14       Impact factor: 5.192

Review 2.  Association of Diabetes Mellitus and Alcohol Abuse with Cancer: Molecular Mechanisms and Clinical Significance.

Authors:  Bao Q Lam; Rashmi Srivastava; Jason Morvant; Sharmila Shankar; Rakesh K Srivastava
Journal:  Cells       Date:  2021-11-08       Impact factor: 6.600

Review 3.  Aldehyde Dehydrogenase 2 as a Therapeutic Target in Oxidative Stress-Related Diseases: Post-Translational Modifications Deserve More Attention.

Authors:  Jie Gao; Yue Hao; Xiangshu Piao; Xianhong Gu
Journal:  Int J Mol Sci       Date:  2022-02-28       Impact factor: 5.923

  3 in total

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