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Dicarbonyl/L-xylulose reductase (DCXR) producing xylitol regulates egg retention through osmolality control in Caenorhabditis elegansopen access

Authors
Kim, Yuh-NamKim, Seung HyunSon, Le ThoAhnn, JoohongLee, Sun-Kyung
Issue Date
Sep-2022
Publisher
TAYLOR & FRANCIS LTD
Keywords
Dicarbonyl; L-xylulose reductase (DCXR); dhs-21; xylitol; osmoregulation; egg retention
Citation
ANIMAL CELLS AND SYSTEMS, v.26, no.5, pp.223 - 231
Indexed
SCIE
SCOPUS
KCI
Journal Title
ANIMAL CELLS AND SYSTEMS
Volume
26
Number
5
Start Page
223
End Page
231
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/173108
DOI
10.1080/19768354.2022.2126886
ISSN
1976-8354
Abstract
To support life, the osmolality of the cellular fluid is tightly regulated by various means, including osmolyte control. Dicarbonyl/L-xylulose reductase (DCXR) is a highly conserved enzyme reducing L-xylulose to xylitol, which serves as an effective osmolyte in various mammalian and human tissues such as lung epithelium, sperm, and lens. DHS-21 is the only DCXR ortholog in Caenorhabditis elegans, and DCXR null mutant worms accumulate eggs in the uterus. However, it has been unknown how and why the mutant worms impair egg retention. In this study, we tested whether the egg-retention in dhs-21 (jh129), the DCXR null mutant worm, is sensitive to changes in osmolarity. Low osmolality reverted the egg retention phenotype of dhs-21(jh129), while high osmolarity aggravated it. Also, knock-down of either one of osr-1, osm-7, or osm-11, osmoregulatory genes, also rescued egg-retention phenotypes of the null mutants. The study indicates that DCXR functions in fluid homeostasis by regulating cellular osmolality in C. elegans and provides insights into DCXR-involved clinical conditions, such as congenital cataracts and malfunctioning lung and kidney.
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서울 자연과학대학 > 서울 생명과학과 > 1. Journal Articles
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