Transmembrane protease serine 2: Difference between revisions

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Although nafamostat potently neutralizes TMPRSS2 activity, it is non-selective and disables trypsin-like serine proteases involved in coagulation such as plasmin, FXa, and FXIIa, as well as other TTSPs through its generic arginine-like engagement with the S1 subsite.<ref>DOI 10.1101/2020.06.23.167544</ref><ref>DOI 10.1159/000215139</ref> Also, it requires continuous intravenous infusion to approach therapeutic concentrations for COVID-19 owing to its short biological half-life of 8 minutes.
Although nafamostat potently neutralizes TMPRSS2 activity, it is non-selective and disables trypsin-like serine proteases involved in coagulation such as plasmin, FXa, and FXIIa, as well as other TTSPs through its generic arginine-like engagement with the S1 subsite.<ref>DOI 10.1101/2020.06.23.167544</ref><ref>DOI 10.1159/000215139</ref> Also, it requires continuous intravenous infusion to approach therapeutic concentrations for COVID-19 owing to its short biological half-life of 8 minutes.


[[Image:ACYL.jpg|thumb|left|500px|Close-up view of the SP catalytic triad residues and the post-activation Asp440:Ile256 salt bridge showing complete maturation of the protease. Nafamostat treatment results in phenylguanidino acylation of Ser441. Polar contacts are shown as yellow dashed lines.]]
[[Image:ACYL.jpg|thumb|left|500px|Close-up view of the SP catalytic triad residues and the post-activation Asp440:Ile256 salt bridge showing complete maturation of the protease. Nafamostat treatment results in phenylguanidino acylation of Ser441. Polar contacts are shown as yellow dashed lines. <ref>DOI 10.1101/2021.06.23.449282</ref>]]


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Revision as of 14:46, 2 December 2021

TMPRSS2 (Transmembrane protease serine 2) is a membrane protein belonging to the type II transmembrane serine protease (TTSP) family. It is functionally classified as a trypsin-like protease (TLP). [1] Serine proteases are known to be involved in many physiological and pathological processes, but the exact function remains unclear. It is involved in two main pathological processes, prostate cancer and viral entry. TMPRSS2 is expressed in several tissues regulated by androgens and undergoes autocatalytic cleavage for its activation.

Crystal structure of human TMPRSS2 in complex with Nafamostat

Drag the structure with the mouse to rotate

References

  1. ↑ Sgrignani J, Cavalli A. Computational Identification of a Putative Allosteric Binding Pocket in TMPRSS2. Front Mol Biosci. 2021 Apr 30;8:666626. doi: 10.3389/fmolb.2021.666626., eCollection 2021. PMID:33996911 doi:https://dx.doi.org/10.3389/fmolb.2021.666626