Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027960 (mole)
21,279 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We report measurements of the reactivity (degree of labeling, as mole of ligand per mole of protein, at constant exposure time) of the reactive thiol, "SH1", of a subfragment of myosin (S-1), and of Cys-10 of F-actin under various conditions, using N-iodo-[3H]acetyl-N-(1-sulfo-5-naphthyl)ethylenediamine, a fluorescent radioactive iodoacetamide analog. When either ADP or adenyloyl imidodiphosphate (simulating unhydrolyzed ATP) is bound to the enzymatic site of S-1, the reactivity of "SH1" is slightly enhanced, but when active ATPase is going on, reactivity is reduced by about a third, presumably due to the species, (S-1) ADP,Pi. The reactivity of Cys-10 alone is very low. When the complex, (S-1)-F-actin, is formed, the reactivity of SH1 is strongly decreased, and the reactivity of Cys-10 is strongly increased. The foregoing results explain our further observation (on glycerol-treated rabbit psoas fibers) that when fibers labeled in relaxation solution are compared with fibers labeled in rigor solution, myosin is more reactive and actin is less reactive, in the former case; alpha-actinin and C-protein are also less reactive in the former case.
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PMID:Reciprocal reactivities of specific thiols when actin binds to myosin. 106 Nov 33

Calpactin I, a calcium-binding protein associated with the membrane cytoskeleton, has been reported to bind to a calcium-dependent manner to fodrin, to certain phospholipids, and to F-actin. We have investigated the interaction between calpactin I and fodrin. Using a gel filtration assay, we observed one or more calpactin I molecules were bound calcium-dependently only at high concentrations of calpactin (greater than 1 microM), indicating that the interaction is of only moderate affinity. At higher concentrations of calpactin I, the calpactin coprecipitated with fodrin in a calcium-dependent manner. The molar ratio of calpactin to fodrin tetramer in the precipitate was greater than 25:1, indicating that the calpactin binds to a large number of sites. Moreover, the monomeric form of calpactin I (p36), which did not induce precipitation of fodrin, showed no evidence of saturation in its binding to fodrin even when more than 30 mol of p36 were bound per mole of fodrin tetramer. Several proteins other than fodrin, including clathrin, alpha-actinin, and neurofilament-H, also interacted calcium-dependently with calpactin I in the gel filtration assay. These results demonstrate that the interaction between calpactin and fodrin is not of high affinity, is not readily saturated, and is not specific for fodrin. Our results suggest that calpactin's interaction with fodrin is a particular example of a calcium-dependent, but promiscuous, binding of calpactin to proteins.
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PMID:Characterization of the interaction between calpactin I and fodrin (non-erythroid spectrin). 253 Feb 19

Integrin alpha 2 beta 1 is a transmembrane protein receptor for collagen and laminin previously reported as a melanoma tumor progression antigen. alpha-Actinin is an actin-binding protein reported to interact with the cytoplasmic domain of the beta 1-integrin chain of alpha 2 beta 1. In vitro, both alpha 2 beta 1 and alpha-actinin play a role in melanoma cell motility. In turn, increased melanoma cell line motility (measured as mean migration rates), correlates with metastasis. To determine the in situ distribution of these proteins, we used monoclonal antibodies directed against the alpha 2-integrin subunit of alpha 2 beta 1 and alpha-actinin on frozen sections of 33 melanocytic proliferations, which included dermal nevi, primary melanomas, and metastatic melanomas. We found that the superficial portion of all of the melanocytic proliferations tested stained for alpha-actinin. In benign nevi and superficial spreading melanoma, there was a notable loss of staining for alpha-actinin in the cells in the deep reticular dermis. In contrast, alpha-actinin was present on almost all of the tumor cells in the nodular melanomas and the melanoma metastases. Tumors stained either uniformly positive or uniformly negative for alpha 2 beta 1; the expression of this protein correlated with the later stages of melanoma progression. Our findings suggest that alpha-actinin protein levels initially decrease and then increase during melanocytic tumor progression, whereas the alpha 2 subunit protein appears in the later stages of melanoma progression. The variable distribution of these proteins is evidence for the differential adhesive and motile properties of subpopulations of cells in melanocytic proliferations.
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PMID:In situ distribution of integrin alpha 2 beta 1 and alpha-actinin in melanocytic proliferations. 887 27