Background: To establish the physiological role of calpain, it is necessary to define how the protease can escape from the effect of its natural inhibitor calpastatin, since both proteins co-localize into the cell cytosol. Methods: To answer this question, we have overexpressed four fluorescent calpastatin constructs, differing in the composition of their XL- and L-domains, and the intracellular trafficking of this protein inhibitor has been followed by single cell fluorescence imaging. Results and conclusions: By the use of these calpastatin forms differing in the type of exon-derived sequences contained in the XL- and L-domains, we have demonstrated that the sequence coded by exon 6, containing multiple phosphorylation sites, is directly ...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
ii The calpain family of intracellular Ca2+-dependent cysteine proteases is involved in a number of ...
AbstractCalpain is an intracellular Ca2+-dependent cysteine protease (EC 3.4.22.17; Clan CA, family ...
It is generally accepted that the Ca2-dependent interaction of calpain with calpastatin is the most ...
It is generally accepted that the Ca2-dependent interaction of calpain with calpastatin is the most...
Calpastatin (CST), the natural inhibitor of calpain (CALP), is a protein composed by four repetitive...
Several human acute and chronic diseases involve calpain over-activation. However, the mechanistic l...
Calpains, Ca2+-activated cysteine proteases are essential for early embryonic development and functi...
Here we demonstrate that the presence of the L-domain in calpastatins induces biphasic interaction w...
Autoproteolysis of human erythrocyte calpain-1 proceeds in vitro at high [Ca2+], through the convers...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
AbstractHere we demonstrate that the presence of the L-domain in calpastatins induces biphasic inter...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
ii The calpain family of intracellular Ca2+-dependent cysteine proteases is involved in a number of ...
AbstractCalpain is an intracellular Ca2+-dependent cysteine protease (EC 3.4.22.17; Clan CA, family ...
It is generally accepted that the Ca2-dependent interaction of calpain with calpastatin is the most ...
It is generally accepted that the Ca2-dependent interaction of calpain with calpastatin is the most...
Calpastatin (CST), the natural inhibitor of calpain (CALP), is a protein composed by four repetitive...
Several human acute and chronic diseases involve calpain over-activation. However, the mechanistic l...
Calpains, Ca2+-activated cysteine proteases are essential for early embryonic development and functi...
Here we demonstrate that the presence of the L-domain in calpastatins induces biphasic interaction w...
Autoproteolysis of human erythrocyte calpain-1 proceeds in vitro at high [Ca2+], through the convers...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
AbstractHere we demonstrate that the presence of the L-domain in calpastatins induces biphasic inter...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
International audienceThe calcium-dependent proteolytic system is a large family of well-conserved u...
ii The calpain family of intracellular Ca2+-dependent cysteine proteases is involved in a number of ...
AbstractCalpain is an intracellular Ca2+-dependent cysteine protease (EC 3.4.22.17; Clan CA, family ...