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Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis

BACKGROUND: Hydrogen Sulfide (H(2)S), a third member of gasotransmitter family along with nitric oxide (NO) and carbon monoxide (CO), exerts a wide range of cellular and molecular actions in our body. There is a large body of evidence suggesting that H(2)S plays an important role in cancer metastasi...

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Autores principales: Wang, Rui, Tao, Beibei, Fan, Qilin, Wang, Shengyue, Chen, Li, Zhang, Junjie, Hao, Yinfang, Dong, Shuang, Wang, Zhe, Wang, Wei, Cai, Yixi, Li, Xutong, Bao, Tuvshin, Wang, Xiaohui, Qiu, Xiaoming, Wang, Kekun, Mo, Xinyu, Kang, Yuqi, Wang, Zhirong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642364/
https://www.ncbi.nlm.nih.gov/pubmed/31262715
http://dx.doi.org/10.1016/j.ebiom.2019.06.037
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author Wang, Rui
Tao, Beibei
Fan, Qilin
Wang, Shengyue
Chen, Li
Zhang, Junjie
Hao, Yinfang
Dong, Shuang
Wang, Zhe
Wang, Wei
Cai, Yixi
Li, Xutong
Bao, Tuvshin
Wang, Xiaohui
Qiu, Xiaoming
Wang, Kekun
Mo, Xinyu
Kang, Yuqi
Wang, Zhirong
author_facet Wang, Rui
Tao, Beibei
Fan, Qilin
Wang, Shengyue
Chen, Li
Zhang, Junjie
Hao, Yinfang
Dong, Shuang
Wang, Zhe
Wang, Wei
Cai, Yixi
Li, Xutong
Bao, Tuvshin
Wang, Xiaohui
Qiu, Xiaoming
Wang, Kekun
Mo, Xinyu
Kang, Yuqi
Wang, Zhirong
author_sort Wang, Rui
collection PubMed
description BACKGROUND: Hydrogen Sulfide (H(2)S), a third member of gasotransmitter family along with nitric oxide (NO) and carbon monoxide (CO), exerts a wide range of cellular and molecular actions in our body. There is a large body of evidence suggesting that H(2)S plays an important role in cancer metastasis; however, the molecular mechanisms of H(2)S-mediated acceleration of cancer metastasis remain unknown. METHODS: We examined the promote effects of H(2)S on phenotype of gastric cancer (GC) cells (including those of express wild type CD36 and mutant CD36) in vitro and in vivo. GC patients' samples were used for clinical translational significance evaluation. FINDINGS: H(2)S triggered lipid metabolism reprogramming by significantly up-regulating the expression of the fatty-acid receptor CD36 (CD36) and directly activating CD36 in GC cells. Mechanistically, a disulfide bond located between cysteine (Cys)333 and Cys272 within the CD36 protein structure that was labile to H(2)S-mediated modification. The long chain-fatty acid (LC-FA) binding pocket was capped by a turn in the CD36 protein, located between helical and sheet structures that were stabilized by the Cys333-Cys272. This limited the secondary binding between LC-FAs and lysine (Lys)334. Breaking the Cys333-Cys272 disulfide bond restored the second LC-FA binding conformation of CD36. Targeting CD36 in vivo blocked H(2)S-promoted metastasis and improved animal survival. INTERPRETATION: These findings identify that the Cys333-Cys272 disulfide bond disrupted the integrity of the second LC-FA binding conformation of CD36. Therefore, CD36 can directly activate LC-FA access to the cytoplasm by acting as a direct target molecule for H(2)S.
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spelling pubmed-66423642019-07-23 Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis Wang, Rui Tao, Beibei Fan, Qilin Wang, Shengyue Chen, Li Zhang, Junjie Hao, Yinfang Dong, Shuang Wang, Zhe Wang, Wei Cai, Yixi Li, Xutong Bao, Tuvshin Wang, Xiaohui Qiu, Xiaoming Wang, Kekun Mo, Xinyu Kang, Yuqi Wang, Zhirong EBioMedicine Research paper BACKGROUND: Hydrogen Sulfide (H(2)S), a third member of gasotransmitter family along with nitric oxide (NO) and carbon monoxide (CO), exerts a wide range of cellular and molecular actions in our body. There is a large body of evidence suggesting that H(2)S plays an important role in cancer metastasis; however, the molecular mechanisms of H(2)S-mediated acceleration of cancer metastasis remain unknown. METHODS: We examined the promote effects of H(2)S on phenotype of gastric cancer (GC) cells (including those of express wild type CD36 and mutant CD36) in vitro and in vivo. GC patients' samples were used for clinical translational significance evaluation. FINDINGS: H(2)S triggered lipid metabolism reprogramming by significantly up-regulating the expression of the fatty-acid receptor CD36 (CD36) and directly activating CD36 in GC cells. Mechanistically, a disulfide bond located between cysteine (Cys)333 and Cys272 within the CD36 protein structure that was labile to H(2)S-mediated modification. The long chain-fatty acid (LC-FA) binding pocket was capped by a turn in the CD36 protein, located between helical and sheet structures that were stabilized by the Cys333-Cys272. This limited the secondary binding between LC-FAs and lysine (Lys)334. Breaking the Cys333-Cys272 disulfide bond restored the second LC-FA binding conformation of CD36. Targeting CD36 in vivo blocked H(2)S-promoted metastasis and improved animal survival. INTERPRETATION: These findings identify that the Cys333-Cys272 disulfide bond disrupted the integrity of the second LC-FA binding conformation of CD36. Therefore, CD36 can directly activate LC-FA access to the cytoplasm by acting as a direct target molecule for H(2)S. Elsevier 2019-06-28 /pmc/articles/PMC6642364/ /pubmed/31262715 http://dx.doi.org/10.1016/j.ebiom.2019.06.037 Text en © 2019 The Authors. Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Wang, Rui
Tao, Beibei
Fan, Qilin
Wang, Shengyue
Chen, Li
Zhang, Junjie
Hao, Yinfang
Dong, Shuang
Wang, Zhe
Wang, Wei
Cai, Yixi
Li, Xutong
Bao, Tuvshin
Wang, Xiaohui
Qiu, Xiaoming
Wang, Kekun
Mo, Xinyu
Kang, Yuqi
Wang, Zhirong
Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title_full Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title_fullStr Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title_full_unstemmed Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title_short Fatty-acid receptor CD36 functions as a hydrogen sulfide-targeted receptor with its Cys333-Cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
title_sort fatty-acid receptor cd36 functions as a hydrogen sulfide-targeted receptor with its cys333-cys272 disulfide bond serving as a specific molecular switch to accelerate gastric cancer metastasis
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642364/
https://www.ncbi.nlm.nih.gov/pubmed/31262715
http://dx.doi.org/10.1016/j.ebiom.2019.06.037
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