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Keywords: ectodomain shedding
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Biochem J (2017) 474 (9): 1467–1479.
Published: 13 April 2017
... commonly employed activators of ADAM-dependent ectodomain shedding: phorbol esters, pervanadate or calcium ionophores. With respect to the inhibitor profile, we found that ADAM9 was inhibited by the hydroxamate-based metalloprotease inhibitors marimastat, TAPI-2, BB94, GM6001 and GW280264X, and by 10 nM...
Includes: Supplementary data
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Biochem J (2009) 424 (1): 79–88.
Published: 23 October 2009
... Biochemical Society 2009 disintegrin ectodomain shedding enzyme specificity metalloproteinase peptide library tumour necrosis factor 7 4 2009 26 8 2009 28 8 2009 28 8 2009 ADAM (a disintegrin and metalloproteinase) proteases are a family of type I transmembrane...
Includes: Supplementary data
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Biochem J (2009) 420 (1): 105–113.
Published: 28 April 2009
... was not stimulated by phorbol esters or calcium ionophores, two commonly used activators of ectodomain shedding. Moreover, ADAM15-dependent processing of FGFR2iiib was inhibited by the hydroxamate-based metalloproteinase inhibitors marimastat, TAPI-2 and GM6001, and by 50 nM TIMP-3 (tissue inhibitor...
Includes: Supplementary data
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Biochem J (2006) 393 (3): 609–618.
Published: 13 January 2006
...Alexander Stoeck; Sascha Keller; Svenja Riedle; Michael P. Sanderson; Steffen Runz; Francois Le Naour; Paul Gutwein; Andreas Ludwig; Eric Rubinstein; Peter Altevogt Ectodomain shedding is a proteolytic mechanism by which transmembrane molecules are converted into a soluble form. Cleavage...
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Biochem J (2003) 371 (2): 437–442.
Published: 15 April 2003
... 24 1 2003 The Biochemical Society, London ©2003 2003 angiotensin I-converting enzyme (ACE) crystallization ectodomain shedding glycosylation Abbreviations used: ACE, angiotensin I-converting enzyme; tACE, testicular ACE; tACE-wt, wild-type tACE; tACEΔ36, tACE lacking N...