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Query: UNIPROT:Q07644 (
polypeptide
)
72,197
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Myosin purified from the abdominal flexor muscle of the lobster, Homarus americanus, has a number average length of 1559 +/- 218 A, a rod like tail 1335 A long and a globular head 225 X 45 A as determined from electron microscopic observations on platinum shadowed preparations. The mass of the molecule was determined to be ca. 486,000 daltons from high speed equilibrium centrifugation studies at neutral and alkaline pH, and by SDS-acrylamide gel electrophoresis. Both sedimentation equilibrium centrifuge studies at alkaline pH and SDS-acrylamide gel electrophoresis experiments, indicate that the molecule contains a heavy chain core (two
polypeptide
chains weighing ca. 210,000 daltons each) and ca. four light chains of two weight classes (ca. 16,000 and 20,000 daltons). The amino acid composition of the
myosin
was determined. The specific activities of the Mg2+ -activated, K+/EDTA-activated, and Ca2+ -activated ATPases of the
myosin
were determined. Kinetic analysis of the digestion of lobster
myosin
with trypsin suggests that lobster
myosin
contains three classes of lysine and arginine residues; slowly split (k = 2.07 +/- 0.31 X 10(-2) moles/min2), rapidly split (k = 11.0 +/- 1.83 X 10(-2) moles/min2) and trypsin insensitive. There are 187 +/- 22 slowly split residues, 280 +/- 35 rapidly split residues, and 144 +/- 41 trypsin insensitive bonds per molecule. Comparison of these molecular parameters with those for the vertebrate skeletal muscle
myosin
indicates that the two myosins are similar in terms of mass, shape and overall
polypeptide
chain composition but may be considerably different in terms of local
polypeptide
chain conformation or composition.
...
PMID:Comparative studies on the structure and aggregative properties of the myosin molecule. I. The structure of the lobster myosin molecule. 13 6
Actin,
myosin
, and a high molecular weight actin-binding protein were purified from chronic myelogenous leukemia (CML) leukocytes. CML leukocyte actin resembled skeletal muscle and other cytoplasmic actins by its subunit molecular weight, by its ability to polymerize in the presence of salts, and to activate the Mg2+-ATPase activity of rabbit skeletal muscle
myosin
. CML leukocyte
myosin
was similar to other vertebrate cytoplasmic myosins in having heavy chains and two light subunits. However, its apparent heavy-chain molecular weight and Stokes radius suggested that it was variably degraded during purification. Purified CML leukocyte
myosin
had average specific EDTA- AND Ca2+-activated ATPase activities of 125 and 151 nmol Pi released/mg protein per min, respectively and low specific Mg2+-ATPase activity. The Mg2+-ATPase activity of CML
myosin
was increased 200-fold by rabbit skeletal muscle F-actin, but the specific activity relative to that of actin-activated rabbit skeletal muscle
myosin
was low. CML leukocyte
myosin
, like other vertebrate cytoplasmic myosins, formed filaments in 0.1 M KCl solutions. Reduced and denatured CML leukocyte-actin-binding protein had a single high molecular weight subunit like a recently described actin-binding protein of rabbit pulmonary macrophages which promotes the polymerization and gelation of actin. Cytoplasmic extracts of CML leukocytes prepared with ice-cold 0.34-M sucrose solutions containing Mg2+-ATP, dithiothreitol, and EDTA at pH 7.0 underwent rapid gelation when warmed to 25 degrees C. Initially, the gel could be liquified by cooling to ice-bath temperature. With time, warmed cytoplasmic extract gels shrunk ("contracted") into aggregates. The following findings indicated that CML leukocyte actin-binding protein promoted the temperature-dependent gelation of actin in the cytoplasmic extracts and that CML leukocyte
myosin
was involved in the contraction of the actin gels: (a) Cytoplasmic extract gels initially contained actin as their major
polypeptide
component and consistent of tangled thin filaments; (b) Contracted aggregates of cytoplasmic extract gels contained by large quantities of
myosin
as well as actin; (c) Purified actin-binding protein underwent a temperature-dependent, reversible aggregation and caused low concentrations of purified muscle or CML leukocyte actins to gel in sucrose solutions; (d) The gels formed from purified actin plus purified actin-binding protein slowly contracted in the presence but not in the absence of purified CML leukocyte
myosin
; (e) Rabbit antiserum against purified CML leukocyte actin-binding protein but not against purified CML leukocyte
myosin
inhibited the gelation of warmed CML leukocyte extracts. Antiserum against CML leukocyte
myosin
had no effect on the gelation of CML leukocyte extracts but partially curtailed the contraction of the CML leukocyte extract gels and of gels formed from purified CML leukocyte actin-binding protein plus rabbit skeletal muscle actin.
...
PMID:Interactions of actin, myosin, and an actin-binding protein of chronic myelogenous leukemia leukocytes. 13 21
Actin can be cleaved by trypsin or chymotrypsin into a large, autonomous fragment with approximately 80% of the mass of the undegraded
polypeptide
. The protease-resistant cores obtained with either enzyme are very similar. Although the fragment does not bind calcium ions and fails to polymerize to the filamentous form of actin or to stimulate
myosin
adenosine triphosphatase (ATP phosphohydrolase, EC 3.6.1.3) activity, it retains the full capacity to bind ATP. This observation suggests that it represents an independent functional unit. Cleavage of globular actin with either trypsin or chymotrypsin occurs with half-times of 3 min, while that of filamentous actin proceeds with reaction half-times of 20 min for trypsin and nearly 2 hr for chymotrypsin. Denaturation and renaturation of the trypsin-resistant core shows that approximately 20% of the molecules refold to functional forms which indicates that the fragment can be considered as an independent unit of folding as well.
...
PMID:ATP binding to a protease-resistant core of actin. 13 74
Heavy meromyosin subfragment-1 (HMM S-1) was prepared by papain digestion of arterial
myosin
or actomyosin and was purified by agarose-ATP affinity chromatography. Proteolysis of crude arterial
myosin
suspensions was preceded by solubilization. HMM-S-1 thus obtained consisted mainly of a 90,000 dalton
polypeptide
and fully retained the K+- and Ca2+-ATPase of the parent
myosin
. Its affinity to agarose-ATP was comparable to that of skeletal muscle HMM S-1.
...
PMID:Affinity chromatographic preparation of arterial heavy meromyosin subfragment-1. 13 7
From Acanthamoeba castellanii, we have purified four proteins each of which alone causes a solution of F-actin to gel. The four active proteins have subunit molecular weights of about 23,000, 28,000, 32,000 and 38,000, respectively; the last three may be dimers in their native proteins. Together, these four proteins account for about 97% of the gelation activity of the whole extract; not more than about 3% of the total activity of the unfractionated extract can be due to a 250,000-dalton
polypeptide
. Another protein fraction, purified by agarose chromatography, induces shrinking (syneresis) of gels formed from F-actin and any of the gelation factors. That fraction contains a high Ca2+-, low (K+,EDTA)-ATPase and a major
polypeptide
of 170,000 daltons both of which bind to actin in the shrunken gel pellet. The active fraction does not contain the previously described Acanthamoeba
myosin
(Pollard, T. D., and Korn, E. D. (1973) J. Biol. Chem. 248, 4682-4690).
...
PMID:Purification from Acanthamoeba castellanii of proteins that induce gelation and syneresis of F-actin. 13 99
Myosin and paramyosin have been purified from the nematode, Caenorhabditis elegans. The properties of the
myosin
in general resemble those of other myosins. The native molecule is a dimer of heavy (210,000 dalton)
polypeptide
chains and contains 18,000 and 16,000 dalton light chains. When rapidly precipitated from solution, it forms small, bipolar aggregates, about 150 nm long, consistent with the expected molecular structure of a rigid rod with a globular head region at one end. Its ATPase activity is stimulated by Ca2+ and EDTA. The
myosin
binds to F actin in a polar and ATP-sensitive manner, and the Mg2+-ATPase is activated by either F actin or nematode thin filaments. Dialysis of
myosin
to low ionic strength produces very long filaments. When a
myosin
-paramyosin mixture is dialyzed under the same condtions, co-filaments form which consist of a
myosin
cortex, surrounding a paramyosin core. Some properties of
myosin
from the mutants E675 and E190, which have functionally and structurally altered body wall muscles, are compared with those of wild-type
myosin
. These myosins of these results are discussed in terms of the myosin heavy chain composition.
...
PMID:Myosin and paramyosin of Caenorhabditis elegans: biochemical and structural properties of wild-type and mutant proteins. 14 Jul 64
Heavy meromyosin prepared from rabbit skeletal
myosin
by chymotryptic digestion was separated into two different heavy meromyosins by Sepharose 4B-6 aminohexyl PPi column chromatography. SDS-gel electrophoresis of one fraction of heavy meromyosin, which was eluted with 75 mM ammonium acetate, showed that it contained the small
polypeptide
chains, g3 and g2, as well as the large chains. The other fraction of heavy meromyosin, which was eluted with 85 mM ammonium acetate, contained g1 and g2. We concluded that the two heavy meromyosins arose from two different populations (isozymes) of
myosin
. No significant difference in Ca2+-ATPase activity was detected between the two heavy meromyosins.
...
PMID:Separation of two different heavy meromyosins. Evidence for the presence of myosin isozymes in rabbit skeletal muscle. 14 38
Porcine aortic
myosin
is a smooth muscle contractile protein similar to its striated muscle counterpart. Electrophoresis in sodium dodecyl sulfate indicates that the molecule consists of three classes of subunits with
polypeptide
chain molecular weights of 192,000, 19,000, and 15,000. At 277 nm the absorption spectrum gives an extinction coefficient for aortic
myosin
of 0.558 cm2/mg; the circular dichroism spectrum of the protein indicates that aortic
myosin
contains about 70% of its residues in the alpha-helical configuration. Amino acid analysis shows that the smooth muscle
myosin
has significantly more arginine and leucine and significantly less valine and isoleucine than rabbit skeletal muscle
myosin
. Other studies yielded these data: Vapp = 0.716 mL/g [eta] = 0.213 mL/mg, S20, w = 5.84 x 10(-13)S. Similar studies with rabbit skeletal muscle
myosin
indicate that Vapp = 0.711 mL/g and S20, w = 6.36 x 10(-13)S. These properties suggest that aortic
myosin
, like skeletal muscle
myosin
, behaves hydrodynamically like a rigid rod.
...
PMID:Physical properties of myosin from aortic smooth muscle. 15 70
Proteins of apparent molecular weights between 10 000 and 250 000 could be solubilized from guinea pig epidermis using a Tris/sucrose/ATP buffer. When the ionic concentration of the solubilized extract was made 75 mM with respect to KCl and 2 mM with respect to MgCl2, a protein complex precipitated which on SDS-polyacrylamide gel electrophoresis resolved into bands corresponding in migration to
myosin
, actin and a number of low molecular weight proteins. Myosin was dissociated from the complex with 0.6 M KI and purified by gel filtration chromatography on an agarose column. The purified epidermal
myosin
fraction contained a
polypeptide
of 200 000 molecular weight andtwo low molecular weight polypeptides of 16 500 and 13 000. The amino acid composition of the epidermal myosin heavy chain was similar to that of muscle
myosin
. At high ionic strength epidermal
myosin
had high specific (K+ + Ca2+)- and (K+ + EDTA)-ATPase activities and low specific (K+ + Mg2+)-ATPase activity. The pH activity curves of the (K+ + Ca2+)- and (K+ + EDTA)-ATPase were different. ATP was hydrolyzed faster than other nucleoside triphosphates. At low ionic strength, the (K+ + Mg2+)-ATPase activity of epidermal
myosin
was stimulated two fold by skeletal muscle actin. The
myosin
formed bipolar filaments in 50 mM KCl in the presence of 5 mM Mg2+.
...
PMID:Contractile proteins in epidermis. Isolation and properties of guinea-pig epidermal myosin. 22 13
Lymphocytes were assessed for the presence of surface actin and
myosin
by lactoperoxidase-catalyzed iodination and indirect immunofluorescence using antisera against purified pig skeletal muscle actin and pig smooth muscle
myosin
. Sodium dodecyl sulfate/polyacrylamide gel electrophoresis of 125I-labeled pig, mouse, and human B lymphocytes revealed an intense radioactive band of 43,000 molecular weight, whereas pig and mouse T lymphocytes gave a much less intense band. This band comigrated with actin, was nonglycosylated as judged by lack of binding to lentil lectin-Sepharose, was bound specifically by
myosin
fibers, and could be distinguished from a
polypeptide
of similar mobility derived from the major histocompatibility antigens. These results suggest that actin is present on the surface of B lymphocytes and, to a lesser extent, on T lymphocytes. Pig, mouse, and human Ig-bearing cells were stained by antiactin and antimyosin antisera, as judged by indirect immunofluorescence, whereas non-Ig-bearing cells were not stained. Antibody binding, however, was depleted by adsorbing the antisera with Ig-Sepharose. It was concluded that the immunofluorescence results are misleading and reflect the presence of antibodies that crossreact with Ig.
...
PMID:Actin may be present on the lymphocyte surface. 30 33
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