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Palmitate impairs autophagic degradation via oxidative stress/perilysosomal Ca2+overload/mTORC1 activation pathway in pancreatic β cells
- Nguyen, Ha Thu;
- Ly, Luong Dai;
- Ngo, Thuy Thi Thanh;
- Lee, Soo Kyung;
- Polo, Carlos Noriega;
- ... Cho, Kae Won;
- 외 8명
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5초록
Saturated fatty acids impose lipotoxic stress on pancreatic R cells, leading to R cell failure and diabetes. In this study, we investigate the critical role of organellar Ca2+ disturbance on defective autophagy and R cell lipotoxicity. Palmitate, a saturated fatty acid, induced perilysosomal Ca2+ elevation, sustained mTOR complex 1 (mTORC1) activation on the lysosomal membrane, suppression of the lysosomal transient receptor potential mucolipin 1 (TRPML1) channel, and accumulation of undigested autophagosomes in R cells. These Ca2+ aberrations with autophagy defects by palmitate were prevented by an mTORC1 inhibitor or a mitochondrial superoxide scavenger. To alleviate perilysosomal Ca2+ overload, strategies such as lowering extracellular Ca2+, employing voltage-gated Ca2+ channel blocker or ATP-sensitive K+ channel opener, effectively abrogated mTORC1 activation and preserved autophagy. Furthermore, redirecting perilysosomal Ca2+ into the endoplasmic reticulum (ER), with an ER Ca2+ ATPase activator, restored TRPML1 activity, promoted autophagic flux, and improved survival of R cells exposed to palmitate-induced lipotoxicity. Our findings suggest oxidative stress/Ca2+ overload/mTORC1 pathway involvement in TRPML1 suppression and defective autophagy during R cell lipotoxicity. Restoring perilysosomal Ca2+ homeostasis emerges as a promising therapeutic strategy for metabolic diseases.
키워드
- 제목
- Palmitate impairs autophagic degradation via oxidative stress/perilysosomal Ca2+overload/mTORC1 activation pathway in pancreatic β cells
- 저자
- Nguyen, Ha Thu; Ly, Luong Dai; Ngo, Thuy Thi Thanh; Lee, Soo Kyung; Polo, Carlos Noriega; Lee, Subo; Lee, Taesic; Cha, Seung-Kuy; Yasasilka, Xaviera Riani; Cho, Kae Won; Lee, Myung-Shik; Wiederkehr, Andreas; Wollheim, Claes B.; Park, Kyu-Sang
- 발행일
- 2025-12
- 유형
- Article
- 저널명
- JCI Insight
- 권
- 10
- 호
- 24