1994
DOI: 10.1021/bi00209a012
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Mechanism of2-Chloro-(.epsilon.-amino-Lys75)-[6-[4-(N,N-diethylamino)phenyl]-1,3,5-triazin-4-yl]calmodulin Interactions with Smooth Muscle Myosin Light Chain Kinase and Derived Peptides

Abstract: The mechanism of the interactions of 2-chloro-(epsilon-amino-Lys75)-[6-[4-(N,N-diethylamino)phenyl]- 1,3,5-triazin-4-yl]calmodulin (TA-calmodulin) with smooth muscle myosin light-chain kinase (MLCK) and two 17-residue peptides, Ac-R-R-K-W-Q-K-T-G-H-A-V-R-A-I-G-R-L-CONH2 (Trp peptide) and Tyr peptide, in which W is replaced by Y, were studied by measurements of equilibrium and transient fluorescence changes in the nanomolar range. Most reactions were carried out in 100 microM CaCl2 at ionic strength 0.15 M, pH … Show more

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Cited by 110 publications
(113 citation statements)
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“…Under conditions in which the two observed kinetic phases are separated by rate as in Fig. 4, the fast phase approximates k Ϫ1 (36). Furthermore, the slow phase approximates the net rate for product dissociation from E*⅐MANT-ADP (k reverse ϭ 0.7 s Ϫ1 ).…”
Section: Dissociation Rate Constant For Mant-adp: Stopped-flow Fluorementioning
confidence: 89%
“…Under conditions in which the two observed kinetic phases are separated by rate as in Fig. 4, the fast phase approximates k Ϫ1 (36). Furthermore, the slow phase approximates the net rate for product dissociation from E*⅐MANT-ADP (k reverse ϭ 0.7 s Ϫ1 ).…”
Section: Dissociation Rate Constant For Mant-adp: Stopped-flow Fluorementioning
confidence: 89%
“…The same workers also measured the corresponding rates for a 17-residue peptide whose sequence was taken from the calmodulin-binding domain of myosin light chain kinase. For this peptide, k 1 was more than 13,000 times faster at 5.3 ϫ 10 10 M Ϫ1 min Ϫ1 and k -1 was too slow to measure, being less than 0.6 min Ϫ1 (16). Comparison of the myosin light chain kinase peptide with the intact enzyme indicates that occlusion of the calmodulinbinding domain plays an important role in determining both the rate at which calmodulin binds and its affinity for the enzyme.…”
Section: Slow Activation Of Pmca By Calmodulinmentioning
confidence: 95%
“…For unphosphorylated Ca 2ϩ -calmodulin-dependent protein kinase, k 1 was about 600 times faster at 2.4 ϫ 10 9 M Ϫ1 min Ϫ1 and k -1 was 130 min Ϫ1 (15). For myosin light chain kinase, k 1 was about 1700 times faster at 6.6 ϫ 10 9 M Ϫ1 min Ϫ1 and k -1 was 34 min Ϫ1 (16). The same workers also measured the corresponding rates for a 17-residue peptide whose sequence was taken from the calmodulin-binding domain of myosin light chain kinase.…”
Section: Slow Activation Of Pmca By Calmodulinmentioning
confidence: 99%
“…These In the two known cases, calmodulin has about a 25-40-fold higher affinity for the peptide than for the full-length enzyme. These cases used peptides representing the calmodulin-binding domains of myosin light chain kinase (28) and PMCA (16). The K d for the myosin light chain kinase peptide is 0.006 nM, whereas that for full-length myosin light chain kinase is 0.10 -0.22 nM.…”
Section: Discussionmentioning
confidence: 99%