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  3. Biochemistry and Molecular Biology / 生物化學暨分子生物學研究所
  4. Natural endogenous human matriptase and prostasin undergo zymogen activation via independent mechanisms in an uncoupled manner
 
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Natural endogenous human matriptase and prostasin undergo zymogen activation via independent mechanisms in an uncoupled manner

Journal
PLoS ONE
Journal Volume
11
Journal Issue
12
Date Issued
2016
Author(s)
Su H.C.
Liang Y.A.
Lai Y.-J.J.
Chiu Y.-L.
Barndt R.B.
Shiao F.
Chang H.-H.D.
Lu D.D.
Huang N.
Tseng C.-C.
Wang J.-K.
MING-SHYUE LEE  
Johnson M.D.
Huang S.-M.
Lin C.-Y.
DOI
10.1371/journal.pone.0167894
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85003890219&doi=10.1371%2fjournal.pone.0167894&partnerID=40&md5=45d633339b9620b7b155393f7cd62249
https://scholars.lib.ntu.edu.tw/handle/123456789/454723
Abstract
The membrane-associated serine proteases matriptase and prostasin are believed to function in close partnership. Their zymogen activation has been reported to be tightly coupled, either as a matriptase-initiated proteolytic cascade or through a mutually dependent mechanism involving the formation of a reciprocal zymogen activation complex. Here we show that this putative relationship may not apply in the context of human matriptase and prostasin. First, the tightly coupled proteolytic cascade between matriptase and prostasin might not occur when modest matriptase activation is induced by sphingosine 1-phospahte in human mammary epithelial cells. Second, prostasin is not required and/or involved in matriptase autoactivation because matriptase can undergo zymogen activation in cells that do not endogenously express prostasin. Third, matriptase is not required for and/or involved in prostasin activation, since activated prostasin can be detected in cells expressing no endogenous matriptase. Finally, matriptase and prostasin both undergo zymogen activation through an apparently un-coupled mechanism in cells endogenously expressing both proteases, such as in Caco-2 cells. In these human enterocytes, matriptase is detected primarily in the zymogen form and prostasin predominantly as the activated form, either in complexes with protease inhibitors or as the free active form. The negligible levels of prostasin zymogen with high levels of matriptase zymogen suggests that the reciprocal zymogen activation complex is likely not the mechanism for matriptase zymogen activation. Furthermore, high level prostasin activation still occurs in Caco-2 variants with reduced or absent matriptase expression, indicating that matriptase is not required and/or involved in prostasin zymogen activation. Collectively, these data suggest that any functional relationship between natural endogenous human matriptase and prostasin does not occur at the level of zymogen activation.
SDGs

[SDGs]SDG3

[SDGs]SDG17

Publisher
Public Library of Science
Type
journal article

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