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DHCR7 links cholesterol synthesis with neuronal development and axonal integrity

  • Shuya Miyazaki
  • , Nobuyuki Shimizu
  • , Hiroaki Miyahara
  • , Hitoshi Teranishi
  • , Ryohei Umeda
  • , Shinji Yano
  • , Tatsuo Shimada
  • , Hiroshi Shiraishi
  • , Kosaku Komiya
  • , Akira Katoh
  • , Akihiko Yoshimura
  • , Reiko Hanada
  • , Toshikatsu Hanada

研究成果: Article査読

抄録

The DHCR7 enzyme converts 7-DHC into cholesterol. Mutations in DHCR7 can block cholesterol production, leading to abnormal accumulation of 7-DHC and causing Smith–Lemli–Opitz syndrome (SLOS). SLOS is an autosomal recessive disorder characterized by multiple malformations, including microcephaly, intellectual disability, behavior reminiscent of autism, sleep disturbances, and attention-deficit/hyperactivity disorder (ADHD)-like hyperactivity. Although 7-DHC affects neuronal differentiation in ex vivo experiments, the precise mechanism of SLOS remains unclear. We generated Dhcr7 deficient (dhcr7−/−) zebrafish that exhibited key features of SLOS, including microcephaly, decreased neural stem cell pools, and behavioral phenotypes similar to those of ADHD-like hyperactivity. These zebrafish demonstrated compromised myelination, synaptic anomalies, and neurotransmitter imbalances. The axons of the dhcr7−/− zebrafish showed increased lysosomes and attenuated autophagy, suggesting that autophagy-related neuronal homeostasis is disrupted.

本文言語English
論文番号149932
ジャーナルBiochemical and Biophysical Research Communications
712-713
DOI
出版ステータスPublished - 18 6月 2024

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