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This mechanosensitive receptor is a candidate for therapeutic innovation more specifically in the case of cardiovascular and neurodegenerative diseases.
This mechanosensitive receptor is a candidate for therapeutic innovation more specifically in the case of cardiovascular and neurodegenerative diseases.
These new therapies could be based on Piezo1 pharmacological modulators. Recently, several modulators have been found.
These new therapies could be based on Piezo1 pharmacological modulators. Recently, several modulators have been found.
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- [https://en.wikipedia.org/wiki/Receptor_antagonist Antagonists] like peptide GsMTx4 prevent the induction of [https://en.wikipedia.org/wiki/Demyelinating_disease demyelination], playing therefore a neuroprotective role. This peptide is an inhibitor of Piezo1.
- [https://en.wikipedia.org/wiki/Receptor_antagonist Antagonists] like peptide GsMTx4 prevent the induction of [https://en.wikipedia.org/wiki/Demyelinating_disease demyelination], playing therefore a neuroprotective role. This peptide is an inhibitor of Piezo1.
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- [https://en.wikipedia.org/wiki/Agonist Agonists] like [https://en.wikipedia.org/wiki/Yoda1 Yoda1] (a synthetic small molecule) enhance channels opening leading to demyelination and damaging the central nervous system. This molecule can activate the Piezo1 channel without mechanical stimulation. However, it can be useful to suppress the migration of transformed cells like [https://en.wikipedia.org/wiki/Fibroblast fibroblasts]. [https://en.wikipedia.org/wiki/Jedi2 Jedi2] is another chemical activator of Piezo1, but it doesn’t act on the same site as Yoda1.
- [https://en.wikipedia.org/wiki/Agonist Agonists] like [https://en.wikipedia.org/wiki/Yoda1 Yoda1] (a synthetic small molecule) enhance channels opening leading to demyelination and damaging the central nervous system. This molecule can activate the Piezo1 channel without mechanical stimulation. However, it can be useful to suppress the migration of transformed cells like [https://en.wikipedia.org/wiki/Fibroblast fibroblasts]. [https://en.wikipedia.org/wiki/Jedi2 Jedi2] is another chemical activator of Piezo1, but it doesn’t act on the same site as Yoda1.
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- Tubeimoside 1 (TBMS1) is an inhibitor of Yoda1 allowing a decrease of the activity of Piezo 1 channels in endothelial cells. The mechanism is still unclear but according to studies, TBMS1 might be a [https://en.wikipedia.org/wiki/Competitive_inhibition competitive inhibitor], meaning that it fixes itself on the same binding site as Yoda1 and is specific to Piezo1 channels.
- Tubeimoside 1 (TBMS1) is an inhibitor of Yoda1 allowing a decrease of the activity of Piezo 1 channels in endothelial cells. The mechanism is still unclear but according to studies, TBMS1 might be a [https://en.wikipedia.org/wiki/Competitive_inhibition competitive inhibitor], meaning that it fixes itself on the same binding site as Yoda1 and is specific to Piezo1 channels.

Revision as of 14:18, 15 January 2022

Structure of the mechanosensitive Piezo1 channel 1 from PBD

Drag the structure with the mouse to rotate

References

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  3. 3.0 3.1 3.2 Zhou, Z. (2019). Structural Analysis of Piezo1 Ion Channel Reveals the Relationship between Amino Acid Sequence Mutations and Human Diseases. 139–155. DOI 10.4236/jbm.2019.712012
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  5. 5.0 5.1 5.2 5.3 Liang X, Howard J. Structural Biology: Piezo Senses Tension through Curvature. Curr Biol. 2018 Apr 23;28(8):R357-R359. doi: 10.1016/j.cub.2018.02.078. PMID:29689211 doi:http://dx.doi.org/10.1016/j.cub.2018.02.078
  6. 6.0 6.1 Guo YR, MacKinnon R. Structure-based membrane dome mechanism for Piezo mechanosensitivity. Elife. 2017 Dec 12;6. pii: 33660. doi: 10.7554/eLife.33660. PMID:29231809 doi:http://dx.doi.org/10.7554/eLife.33660
  7. 7.0 7.1 7.2 Ge J, Li W, Zhao Q, Li N, Chen M, Zhi P, Li R, Gao N, Xiao B, Yang M. Architecture of the mammalian mechanosensitive Piezo1 channel. Nature. 2015 Nov 5;527(7576):64-9. doi: 10.1038/nature15247. Epub 2015 Sep 21. PMID:26390154 doi:http://dx.doi.org/10.1038/nature15247
  8. 8.0 8.1 Saotome K, Murthy SE, Kefauver JM, Whitwam T, Patapoutian A, Ward AB. Structure of the mechanically activated ion channel Piezo1. Nature. 2017 Dec 20. pii: nature25453. doi: 10.1038/nature25453. PMID:29261642 doi:http://dx.doi.org/10.1038/nature25453
  9. 9.0 9.1 Lin YC, Guo YR, Miyagi A, Levring J, MacKinnon R, Scheuring S. Force-induced conformational changes in PIEZO1. Nature. 2019 Sep;573(7773):230-234. doi: 10.1038/s41586-019-1499-2. Epub 2019 Aug, 21. PMID:31435018 doi:http://dx.doi.org/10.1038/s41586-019-1499-2
  10. 10.0 10.1 10.2 10.3 10.4 Wei L, Mousawi F, Li D, Roger S, Li J, Yang X, Jiang LH. Adenosine Triphosphate Release and P2 Receptor Signaling in Piezo1 Channel-Dependent Mechanoregulation. Front Pharmacol. 2019 Nov 6;10:1304. doi: 10.3389/fphar.2019.01304. eCollection, 2019. PMID:31780935 doi:http://dx.doi.org/10.3389/fphar.2019.01304
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