Identification of p115 as a novel ACSL4 interacting protein and its role in regulating ACSL4 degradation

被引:8
|
作者
Sen, Progga [1 ]
Kan, Chin Fung Kelvin [1 ,5 ]
Singh, Amar B. [1 ]
Rius, Monica [1 ]
Kraemer, Fredric B. [1 ,2 ,3 ]
Sztul, Elizabeth [4 ]
Liu, Jingwen [1 ]
机构
[1] Palo Alto Hlth Care Syst, Dept Vet Affairs, Palo Alto, CA USA
[2] Stanford Univ, Dept Med, Sch Med, Stanford, CA 94305 USA
[3] Stanford Diabet Res Ctr, Stanford, CA USA
[4] Univ Alabama Birmingham, Dept Cell Dev & Integrat Biol, Birmingham, AL USA
[5] Univ Queensland, Ochsner Clin Sch, Sch Med, New Orleans, LA USA
关键词
Arachidonic acid; Long-chain fatty acyl CoA synthetase 4; ER-Golgi transport; p115; Ubiquitin-proteasome system; LC-MS/MS; ACYL-COA SYNTHETASE; ARACHIDONIC-ACID METABOLISM; ENDOPLASMIC-RETICULUM; 4; EXPRESSION; CELLS; LIVER;
D O I
10.1016/j.jprot.2020.103926
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Long-chain acyl-CoA synthetase 4 (ACSL4) is an ACSL family member that exhibits unique substrate preference for arachidonic acid. ACSL4 has a functional role in hepatic lipid metabolism, and is dysregulated in non-alcoholic fatty liver disease. Our previous studies demonstrated AA-induced ACSL4 degradation via the ubiquitin-proteasomal pathway (UPP). To characterize this unique mechanism, we applied proteomic approaches coupled with LC-MS/MS and identified the intracellular general vesicular trafficking protein p115 as the prominent ACSL4 interacting protein in HepG2 cells. Importantly, we found that AA greatly enhanced p115-ACSL4 association. Combined AA treatment with p115 knockdown suggested an additive role for p115 in AA-driven ACSL4 degradation. Furthermore, in vivo studies revealed a significant upregulation of p115 protein in the liver of mice fed a high fat diet that has been previously reported to induce downregulation of ACSL4 protein expression. This new finding has revealed a novel inverse correlation between ACSL4 and p115 proteins in the liver. p115 is crucial for ER-Golgi trafficking and Golgi biogenesis. Thus far, p115 has not been reported to interact with UPP proteins nor with FA metabolism enzymes. Overall, our current study provides a novel insight into the connection between ER-Golgi trafficking and UPP machinery with p115 as a critical mediator. Significance: ACSL4 is uniquely regulated by its own substrate AA, and in this study, we have found that AA leads to an enhanced interaction of ACSL4 with a novel interacting partner, the intracellular vesicle trafficking protein p115. The latter is crucial for Golgi biogenesis and ER-Golgi transport and is not known to be associated with the ubiquitin-proteasome machinery or protein stability regulation until now. This study is the first report of a possible coordination of the protein secretion pathway and the UPP in regulating a key metabolic enzyme. Our study lays the foundation to this unique crosstalk between the two major cellular pathwayssecretion and protein degradation and opens up a new avenue to explore this partnership in controlling hepatic lipid metabolism. Overall, the complete elucidation of the AA-mediated ACSL4 regulation will help identify key targets in participating pathways that can be further studied for the development of therapeutics against diseases such as NAFLD, NASH and hepatocarcinoma, which are associated with dysregulated ACSL4 function.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Identification of ACSL4 as a biomarker and contributor of ferroptosis
    Yuan, Hua
    Li, Xuemei
    Zhang, Xiuying
    Kang, Rui
    Tang, Daolin
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2016, 478 (03) : 1338 - 1343
  • [2] ACSL3 and ACSL4, Distinct Roles in Ferroptosis and Cancers
    Yang, Yufei
    Zhu, Ting
    Wang, Xu
    Xiong, Fen
    Hu, Zhangmin
    Qiao, Xuehan
    Yuan, Xiao
    Wang, Deqiang
    [J]. CANCERS, 2022, 14 (23)
  • [3] Ferroptosis execution: Is it all about ACSL4?
    Lee, Hyemin
    Gan, Boyi
    [J]. CELL CHEMICAL BIOLOGY, 2022, 29 (09) : 1363 - 1365
  • [4] ACSL4基因表达的调控机制
    沈子月
    谭理
    [J]. 生命的化学, 2024, (06) - 964
  • [5] THE XLMR GENE ACSL4 PLAYS A ROLE IN DENDRITIC SPINE ARCHITECTURE
    Melon, I.
    Parri, V.
    De Filippis, R.
    Ariani, F.
    Artuso, R.
    Bruttini, M.
    Katzaki, E.
    Longo, I.
    Mari, F.
    Bellan, C.
    Dotti, C. G.
    Renieri, A.
    [J]. NEUROSCIENCE, 2009, 159 (02) : 657 - 669
  • [6] ACSL4 intragenic deletion in a boy with complex phenotype
    Focsa, I. O.
    Bohiltea, L. C.
    Wollnik, B.
    Budisteanu, M.
    [J]. EUROPEAN JOURNAL OF HUMAN GENETICS, 2018, 26 : 936 - 936
  • [7] Berberine as a novel ACSL4 inhibitor to suppress endothelial ferroptosis and atherosclerosis
    Hong, Yang
    Feng, Jing
    Dou, Zijia
    Sun, Xiuxiu
    Hu, Yingying
    Chen, Zhouxiu
    Liu, Ling
    Xu, Henghui
    Du, Menghan
    Tang, Pingping
    Liu, Xin
    Zhang, Yong
    [J]. BIOMEDICINE & PHARMACOTHERAPY, 2024, 177
  • [8] Therapeutic targeting of hepatic ACSL4 ameliorates NASH in mice
    Duan, Jingjing
    Wang, Zhuo
    Duan, Ran
    Yang, Chenxinhui
    Zhao, Ruolin
    Feng, Qi
    Qin, Yuanyuan
    Jiang, Jingwei
    Gu, Shouyong
    Lv, Kaiyan
    Zhang, Libo
    He, Bixia
    Birnbaumer, Lutz
    Yang, Song
    Chen, Zhen
    Yang, Yong
    [J]. HEPATOLOGY, 2022, 75 (01) : 140 - 153
  • [9] An ACSL4 Hemizygous Intragenic Deletion in a Patient With Childhood Stroke
    Chang, Caitlin A.
    Lauzon, Julie
    Kirton, Adam
    Argiropoulos, Bob
    [J]. PEDIATRIC NEUROLOGY, 2019, 100 : 100 - 101
  • [10] Identification of a targeted ACSL4 inhibitor to treat ferroptosis-related diseases
    Huang, Qian
    Ru, Yi
    Luo, Yingli
    Luo, Xianyu
    Liu, Didi
    Ma, Yinchu
    Zhou, Xinru
    Linghu, Maoyuan
    Xu, Wen
    Gao, Fei
    Huang, Yi
    [J]. SCIENCE ADVANCES, 2024, 10 (13)