Enhanced primary ciliogenesis via mitochondrial oxidative stress activates AKT to prevent neurotoxicity in HSPA9/mortalin-depleted SH-SY5Y cells.

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Title: Enhanced primary ciliogenesis via mitochondrial oxidative stress activates AKT to prevent neurotoxicity in HSPA9/mortalin-depleted SH-SY5Y cells.
Authors: Bae, Ji-Eun1 (AUTHOR), Jang, Soyoung2 (AUTHOR), Kim, Joon Bum2 (AUTHOR), Hyung, Hyejin2 (AUTHOR), Park, Na Yeon2 (AUTHOR), Kim, Yong Hwan2 (AUTHOR), Kim, So Hyun2 (AUTHOR), Kim, Seong Hyun2 (AUTHOR), Ha, Jin Min2 (AUTHOR), Oh, Gyeong Seok2 (AUTHOR), Park, Kyuhee3 (AUTHOR), Jeong, Kwiwan3 (AUTHOR), Jang, Jae Seon4 (AUTHOR), Jo, Doo Sin5 (AUTHOR), Kim, Pansoo5 (AUTHOR), Lee, Hyun-Shik2 (AUTHOR), Ryoo, Zae Young2 (AUTHOR), Cho, Dong-Hyung1,2,5 (AUTHOR) chodong02@gmail.com
Source: Molecular Brain. 5/11/2023, Vol. 16 Issue 1, p1-10. 10p.
Database: Academic Search Ultimate
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ISSN:17566606
DOI:10.1186/s13041-023-01029-7