Literature DB >> 33791443

Determinants of Ion-Transporter Cancer Cell Death.

Sang-Hyun Park1, Seong-Hyun Park1, Ethan N W Howe2, Ji Young Hyun1, Li-Jun Chen2, Inhong Hwang3, Gabriela Vargas-Zuñiga3, Nathalie Busschaert4, Philip A Gale2, Jonathan L Sessler3, Injae Shin1,5.   

Abstract

Recently, we showed that synthetic anion transporters DSC4P-1 and SA-3 had activity related to cancer cell death. They were found to increase intracellular chloride and sodium ion concentrations. They were also found to induce apoptosis (DSC4P-1) and both induce apoptosis and inhibit autophagy (SA-3). However, determinants underlying these phenomenological findings were not elucidated. The absence of mechanistic understanding has limited the development of yet-improved systems. Here, we show that three synthetic anion transporters, DSC4P-1, SA-3, and 8FC4P, induce osmotic stress in cells by increasing intracellular ion concentrations. This triggers the generation of reactive oxygen species via a sequential process and promotes caspase-dependent apoptosis. In addition, two of the transporters, SA-3 and 8FC4P, induce autophagy by increasing the cytosolic calcium ion concentration promoted by osmotic stress. However, they eventually inhibit the autophagy process as a result of their ability to disrupt lysosome function through a transporter-mediated decrease in a lysosomal chloride ion concentration and an increase in the lysosomal pH.

Entities:  

Year:  2019        PMID: 33791443      PMCID: PMC8009298          DOI: 10.1016/j.chempr.2019.05.001

Source DB:  PubMed          Journal:  Chem            Impact factor:   22.804


  82 in total

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9.  Synthetic ion transporters can induce apoptosis by facilitating chloride anion transport into cells.

Authors:  Sung-Kyun Ko; Sung Kuk Kim; Andrew Share; Vincent M Lynch; Jinhong Park; Wan Namkung; Wim Van Rossom; Nathalie Busschaert; Philip A Gale; Jonathan L Sessler; Injae Shin
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Review 3.  Ion Channels and Transporters as Therapeutic Agents: From Biomolecules to Supramolecular Medicinal Chemistry.

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4.  Photomodulation of Transmembrane Transport and Potential by Stiff-Stilbene Based Bis(thio)ureas.

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5.  CLN7 is an organellar chloride channel regulating lysosomal function.

Authors:  Yayu Wang; Wenping Zeng; Bingqian Lin; Yichuan Yao; Canjun Li; Wenqi Hu; Haotian Wu; Jiamin Huang; Mei Zhang; Tian Xue; Dejian Ren; Lili Qu; Chunlei Cang
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6.  Measuring anion binding at biomembrane interfaces.

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7.  Synthesis and mechanism of biological action of morpholinyl-bearing arylsquaramides as small-molecule lysosomal pH modulators.

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8.  Dynamic Covalent Self-Assembly of Chloride- and Ion-Pair-Templated Cryptates.

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Review 9.  The crosstalk effect between ferrous and other ions metabolism in ferroptosis for therapy of cancer.

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  10 in total

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