상세 보기
Synphilin-1 regulates mechanotransduction in rigidity sensing through interaction with zyxin
- Kim, Seok Gi;
- Li, Jinyan;
- Hwang, Ji Su;
- Hassan, Muhammad Anwar Ul;
- Sim, Ye Eun;
- ... Kim, Myeong Ok;
- 외 4명
WEB OF SCIENCE
1SCOPUS
0초록
BackgroundSynphilin-1 has been studied extensively in the context of Parkinson's disease pathology. However, the biophysical functions of synphilin-1 remain unexplored. To investigate its novel functionalities herein, cellular traction force and rigidity sensing ability are analyzed based on synphilin-1 overexpression using elastomeric pillar arrays and substrates of varying stiffness. Molecular changes are analyzed using RNA sequencing-based transcriptomic and liquid chromatography-tandem mass spectrometry-based proteomic analyses.ResultsSynphilin-1 overexpression reduces cell area, with a decline of local contraction on elastomeric pillar arrays. Cells overexpressing synphilin-1 exhibit an impaired ability to respond to substrate rigidity; however, synphilin-1 knockdown restores rigidity sensing abilities. Integrated omics analysis and in silico prediction corroborate the phenotypic alterations induced by synphilin-1 overexpression at a biophysical level. Zyxin emerges as a novel synphilin-1 binding protein, and synphilin-1 overexpression reduces the nuclear translocation of yes-associated protein.ConclusionThese findings provide novel insights into the biophysical functions of synphilin-1, suggesting a potential protective role to the altered extracellular matrix, which may be relevant to neurodegenerative conditions such as Parkinson's disease.
키워드
- 제목
- Synphilin-1 regulates mechanotransduction in rigidity sensing through interaction with zyxin
- 저자
- Kim, Seok Gi; Li, Jinyan; Hwang, Ji Su; Hassan, Muhammad Anwar Ul; Sim, Ye Eun; Lee, Ju Yeon; Mo, Jung-Soon; Kim, Myeong Ok; Lee, Gwang; Park, Sungsu
- 발행일
- 2025-05
- 유형
- Article
- 권
- 23
- 호
- 1