Abstract
Studies with reagents that crosslink two thiol groups have shown that it is possible to trap nucleotides at the active site of myosin chymotryptic subfragment 1. Subfragment 1 incorporates nearly stoichiometric quantities of [14C]ATP or [14C]ADP in a manner that depends linearly on the extent of inactivation by either N,N'-p-phenylenedimaleimide or Co(II)phenanthroline/[Co(III)(phenanthroline)2CO3]+ complexes. The incorporated radioactive nucleotide is retained after gel filtration, even when the enzyme derivatives are stored in the presence of EDTA or nonradioactive nucleotides (t 1/2 approximately 5 days). The nucleotide incorporated is not covalently bound because HClO4 denaturation allows immediate release of bound nucleotide. The nucleotide retained is ADP because the gamma-phosphate of [gamma-32P]ATP is lost after trapping. Subfragment 1 inactivated as above does not bind the competitive inhibitor adenosine 5'-[beta, gamma-imido]triphosphate, indicating that the active site is blocked. It is proposed that a jawlike nucleotide cleft closes on MgADP or MgATP, which can be locked shut by crosslinking two thiol groups by reaction with N,N'-p-phenylenedimaleimide or cobalt phenanthroline complexes.
MeSH Terms
Adenosine Diphosphate/metabolism
Adenosine Triphosphatases/metabolism
Adenosine Triphosphate/metabolism
Ammonia/pharmacology
Animals
Binding Sites
Cross-Linking Reagents
Edetic Acid/pharmacology
Kinetics
Maleimides
Muscles/enzymology
Myosins/metabolism
Phenanthrolines
Protein Binding
Rabbits
Chemicals
Cross-Linking Reagents
Maleimides
Phenanthrolines
Adenosine Diphosphate
Ammonia
Adenosine Triphosphate
Edetic Acid
Adenosine Triphosphatases
Myosins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wells J A
Yount R G
References (24)
24 references, click to expand
-
Stoichiometry of labeling of myosin's proteolytic fragments by a purine disulfide analog of adenosine triphosphate.
Biochemistry. 1975 May 6;14(9):1900-7
PMID: 123760
-
Separation of subfragment-1 isoenzymes from rabbit skeletal muscle myosin.
Nature. 1975 Sep 4;257(5521):54-6
PMID: 125854
-
Effect of bridging the two essential thiols of myosin on its spectral and actin-binding properties.
Biochemistry. 1976 May 4;15(9):1923-7
PMID: 1268201
-
Conformational differences in myosin, IV.[1-3] Radioactive labeling of specific thiol groups as influenced by ligand binding.
Hoppe Seylers Z Physiol Chem. 1975 Mar;356(3):325-39
PMID: 126941
-
Time-dependent fluorescence depolarization and lifetime studies of myosin subfragment-one in the presence of nucleotide and actin.
J Supramol Struct. 1975;3(2):162-8
PMID: 127886
-
Myosin structure. Proximity measurements by fluorescence energy transfer.
J Supramol Struct. 1975;3(4):338-47
PMID: 127888
-
EFFECT OF ATP ON THE BINDING OF N-ETHYLMALEIMIDE TO SH GROUPS IN THE ACTIVE SITE OF MYOSIN ATPASE.
J Biochem. 1963 Aug;54:196-8
PMID: 14065261
-
Effect of nucleotide binding on the proximity of the essential sulfhydryl groups of myosin. Chemical probing of movement of residues during conformational transitions.
Biochemistry. 1977 Dec 13;16(25):5559-63
PMID: 144522
-
Location of SH-1 and SH-2 in the heavy chain segment of heavy meromyosin.
Arch Biochem Biophys. 1978 Oct;190(2):793-9
PMID: 152606
-
Investigations of equilibrium complexes of myoxin subfragment 1 with the manganous ion and adenosine diphosphate using magnetic resonance techniques.
J Biol Chem. 1976 Apr 10;251(7):1975-83
PMID: 178650
-
Kinetic analysis of ATPase mechanisms.
Q Rev Biophys. 1976 May;9(2):217-81
PMID: 183232
-
Space-filling models of kinase clefts and conformation changes.
Science. 1979 Apr 27;204(4391):375-80
PMID: 220706
-
Glucose-induced conformational change in yeast hexokinase.
Proc Natl Acad Sci U S A. 1978 Oct;75(10):4848-52
PMID: 283394
-
Sulfhydryl groups involved in the active site of myosin A adenosine triphosphatase. I. Specific blocking of the SH group responsible for the inhibitory phase in "B phasic response" of the catalytic activity.
J Biochem. 1966 Jan;59(1):24-33
PMID: 4223102
-
Interaction of heavy meromyosin with substrate. I. Difference in ultraviolet absorption spectrum between heavy meromyosin and its Michaelis-Menten complex.
J Biol Chem. 1967 Oct 10;242(19):4501-6
PMID: 4229047
-
Fluorescence studies on heavy meromyosin-substrate interaction.
Biochemistry. 1972 Jul 18;11(15):2872-83
PMID: 4261257
-
Myosin ATP hydrolysis: a mechanism involving a magnesium chelate complex.
Proc Natl Acad Sci U S A. 1973 Dec;70(12):3793-6
PMID: 4272702
-
Spatial proximity of the two essential sulfhydryl groups of myosin.
Biochemistry. 1974 Sep 10;13(19):3837-40
PMID: 4278279
-
The binding of adenosine triphosphate to myosin.
Biochemistry. 1968 Sep;7(9):3206-13
PMID: 4300920
-
Effect of nucleotides and pyrophosphate on spin labels bound to S1 thiol groups of myosin.
Biochemistry. 1970 Aug 4;9(16):3265-72
PMID: 4321371
-
Adenylyl imidodiphosphate, an adenosine triphosphate analog containing a P--N--P linkage.
Biochemistry. 1971 Jun 22;10(13):2484-9
PMID: 4326768
-
Circular dichroism of the adenine and 6-mercaptopurine nucleotide complexes of heavy meromyosin.
Arch Biochem Biophys. 1974 Jul;163(1):290-6
PMID: 4604220
-
Heterogeneity of myosin heavy chains in subfragment-1 isoenzymes rabbit skeletal myosin.
J Mol Biol. 1977 Jan 25;109(3):470-3
PMID: 833852
-
A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding.
Anal Biochem. 1976 May 7;72:248-54
PMID: 942051