Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:Q07644 (polypeptide)
72,197 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Fibronectin mRNA has been partially purified by guanidine extraction, oligo-(dT)-cellulose chromatography and sucrose density gradient centrifugation. We obtain a fraction which programs a wheat germ in vitro translation system to synthesize a polypeptide species which co-electrophoreses with fibronectin in SDS-polyacrylamide gels and which is immunoprecipitated with affinity purified fibronectin-specific IgG. Analysis of this RNA fraction by methyl mercury hydroxide-agarose gel electrophoresis reveals the presence of a band accounting for 30 percent to 50 percent of the ethidium bromide-staining material in the fraction. The RNA of this band has an estimated molecular weight of about 3 million daltons and is greatly reduced in the corresponding RNA fraction from RSV transformed CEF. This RNA has been tentatively identified as fibronectin mRNA.
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PMID:Partial purification and characterization of the messenger RNA for cell fibronectin. 57 88

Human thyroglubulin labelled in vivo by 125I was purified from eight different thyroid glands including normal thyroid tissue, thyrotoxic goitre and euthyroid multinodular goitre. The purified protein was cleaved with cyanogen bromide (CNBr) and the resulting peptides were separated by column chromatography and ion exchange chromatography. Reproducible elution profiles of both protein and iodine were obtained. However, the distribution of iodine depended on the iodine content of the intact thyroglobulin. Small CNBr peptides seemed to be preferentially iodinated, but with a limited capacity. With higher degrees of iodination, larger peptides became richer in iodine. This suggests sequential iodination of the thyroglobulin molecule. The mixture of small peptides was digested by trypsin. Two iodopeptides were identified in this material by peptide mapping and they had identical migration in thyroglobulins of different origin. One of them was purified by ion exchange chromatography and high voltage electrophoresis. Analogous amino acid composition was obtained for the iodopeptide purified from two different thyroglobulins. The data indicates that thyroglobulin iodination occurs in specific portions of the polypeptide chain and probably in a sequential manner.
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PMID:Iodopeptides from human thyroglobulin. 57 57

The complete amino acid sequence of bovine phospholipase A2 (EC 3.1.1.4) was determined. This enzyme has a molecular weight of 13 782 and consists of a single polypeptide chain of 123 amino acids cross-linked by seven disulfide bridges. The main fragmentation of the polypeptide chain was accomplished by digesting the reduced and thialaminated derivative of the protein with trypsin, staphylococcal protease and cyanogen bromide. A number of chymotryptic peptides were used for alignment and to obtain overlaps of at least two residues. The sequence of the peptides was determined by Edman degradation by means of direct phenylthiohydantoin identification in combination with identification as dansyl amino acids. Although 71% of all residues of phospholipase A2 from bovine, porcine and equine sources are conserved, bovine phospholipase A2 differs from the others by the total number of residues and by substitutions at 20 (porcine) and 33 (equine) positions.
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PMID:The primary structure of bovine pancreatic phospholipase A2. 62 Jun 74

Amino acid sequence analysis of the large cyanogen bromide fragment (residues 142 to 281) derived from the COOH-terminal half of the mixed tropomyosin population of rabbit skeletal muscle has been carried out. The isolation and sequence analysis of peptides derived from chymotryptic digests and from tryptic digests of the maleylated fragment permitted the alignment of the complete sequence except for the assignment of acids or amides at residues 142, 144, and 145. Selected peptides from a Myxobacter 495 alpha-lytic protease digest have confirmed certain overlaps. Based on previously published data the sequence can be extended to residue 284, the COOH-terminal end of the protein. In fourteen positions, amino acid substitutions have been observed. In one of these (residue 199) the sequence evidence indicates a minimum of four different polypeptide chains in the mixed tropomyosin population. The assignment of particular amino acid residues to these positions for the major alpha-component of rabbit skeletal tropomyosin has been based on the relative recoveries of peptides containing different residues in these positions.
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PMID:Amino acid sequence of rabbit skeletal muscle alpha-tropomyosin. The COOH-terminal half (residues 142 to 284). 62 23

The complete amino acid sequence of carboxamidomethylated anthranilate synthetase component II (AS II) from Pseudomonas putida has been determined by analysis of cyanogen bromide fragments, tryptic peptides from the citraconylated protein, and by analysis of subdigests of these peptides. AS II is a single polypeptide chain of 197 residues having a calculated molecular weight of 21,684. Previous studies (Goto, Y., Keim, P. S., Zalkin, H., and Heinrikson, R. L. (1976) J. Biol. Chem, 251, 941-949) identified a cysteine residue required for the formation of an acyl-enzyme intermediate. The protein has 3 cysteine residues at positions 54, 79, and 140. Cysteine-79 was alkylated selectively by iodoacetamide and by the glutamine affinity analogue L-2-amino-4-oxo-5-chloropentanoic acid. Based on this evidence cysteine-79 is the active site residue involved in formation of the acyl-enzyme intermediate. Comparison of the P. putida AS II sequence with that of the NH2-terminal 60 residues of the enzyme from Escherichia coli shows 38% sequence identity.
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PMID:Anthranilate synthetase component II from Pseudomonas putida. Covalent structure and identification of the cysteine residue involved in catalysis. 65 39

Freshly excised rat incisors were immediately cleaned and demineralized in 0.5 M ethylene diaminetetracetic acid at pH 7.5. The extracts were freed of calcium, diffusible phosphate and low molecular weight polypeptide components by dialysis in membranes with cut-off of 3500 molecular weight. The extract was resolved into at least 7 protein components by chromatography on DEAE-cellulose at pH 8.2. The composition of each protein component was determined. Two proteins, rich in serine, phosphorous and aspartic acid were unlike any proteins attributed to enamel, and hence were considered to be components of incisor dentin. These were the principal non-collagenous components of the teeth. Further purification was carried out under dissociative conditions on Sepharose CL-6B gel filtration columns in 3.0 M guanidine hydrochloride. The two phosphoproteins have mol wts, by this method, of 71,000 and 65,000, respectively, and differ in content of apolar amino acids, although both contain greater than 70 residue % of seryl (or phosphoseryl) and aspartyl residues. The name "phosphophoryns" is proposed to describe these dentinal proteins. The insoluble collagenous matrix remaining after the original demineralizing extraction was degraded with cyanogen bromide. Several non-collagenous protein components were released as well as the typical collagen derived peptides. Two collagen phosphoprotein complex peptides were also isolated, demonstrating as in bovine dentin, the probable direct covalent interaction of a dentin phosphoprotein with hte collagen of the mineralized matrix.
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PMID:Phosphophoryns-major noncollagenous proteins of rat incisor dentin. 66 64

Treatment of basic pancreatic trypsin inhibitor (BPTI) with cyanogen bromide smoothly cleaves the polypeptide chain at the single methionyl residue. The newly formed homoserine lactone and alpha-amino functions are held in proximity by a disulfide linkage, and in neutral aqueous solution react together spontaneously to re-form the peptide chain. The resulting analog, [52-homoserine]-BPTI is very similar to the native molecule in most properties measured. The rate of formation of this analog from the chain-cleaved intermediate has been determined. It is apparent that the facility of analog synthesis is due in large part to the retention of the native protein conformation in the cyanogen bromide-cleaved intermediate.
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PMID:[52-Homoserine]-basic pancreatic trypsin inhibitor. Preparation and properties of a protein analog. 66 83

The level of cross-linking between the polypeptide chains of the collagen molecules in bovine tendons of different ages has been assessed by measuring quantitatively through densitometry the changes in the ratios of individual cyanogen bromide peptides separated on polyacrylamide gels. An increase in the number of cross-links in mature, as compared to young, tendons correlates with a depletion in the proportion of the free, COOH-terminal peptides alpha1-CB6 and alpha2-CB3,5 and with an increase in a broad distribution of peptides moving slowly in the gels: these peptides are not seen in digests of acid-soluble collagen. Some of these peptides which are presumably cross-linked migrate more slowly than beta components and collagen alpha chains and are apparently of a higher molecular weight. No increase in cross-linked peptides is detectable beyond the age of maturation; this analysis refutes, at least in this tissue, the common presumption that progressive cross-linking occurs in collagen through an animal's lifetime.
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PMID:Bovine tendons. Aging and collagen cross-linking. 67 Feb 17

The structure of rabbit transferrin was investigated with regard to number, size, and composition of the heteropolysaccharide units and their relative location on the polypeptide chain. The composition and molecular weight of the Pronase glycopeptides revealed that rabbit transferrin contains two heteropolysaccharide units, each composed of 2 sialic acid residues, 2 galactose residues, 3 mannose residues, and 4-N-acetylglucosamine residues. The composition and molecular weight of the tryptic glycopeptides further substantiated the existence of two identical heteropolysaccharide units and revealed that both units have identical amino acid residues in the immediate vicinity of the carbohydrate attachment sites to the polypeptide chain, suggesting a sequence homology surrounding the two glycosylation sites. Characterization of the cyanogen bromide fragments from rabbit transferrin indicated that both heteropolysaccharide units are located within a single polypeptide fragment representing approximately one-third of the molecule.
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PMID:Structural studies on rabbit transferrin: isolation and characterization of the glycopeptides. 68 92

A [3H]bisazido derivative of ethidium bromide was synthesized to identify sites of interaction of ethidium with the acetylcholine receptor from Torpedo californica and to aid in localization of ligand binding sites. For purified solubilized acetylcholine receptor it was shown (a) that the photolabel was competitive with ethidium bromide, (b) dodecyl sulfate--polyacrylamide gel electrophoresis revealed that all four polypeptide components were labeled with [3H]ethidium azide, and (c) alpha-bungarotoxin inhibited the labeling of the 40 000-dalton subunit. Photolabeling of acetylcholine--receptor enriched membrane fragments led to the following conclusions: (a) the photochemical reaction was more selective than for purified acetylcholine receptor, since the 40 000-dalton subunit was preferentially labeled; this result demonstrated differences in the topography of receptor subunits depending on whether the molecule was in detergent solution or in a membrane-bound state, (b) alpha-bungarotoxin inhibited labeling of the 40 000-dalton subunit, (c) ligand-induced conformational changes resulted in different subunit labeling patterns. The results imply that conformational changes generated at the 40 000 molecular weight subunit upon cholinergic ligand interaction cause further intermolecular structural changes that involve subunits of higher molecular weight. These higher molecular weight subunits therefore belong to a supramolecular complex of polypeptides associated with the postsynaptic membrane.
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PMID:Ligand binding sites and subunit interactions of Torpedo californica acetylcholine receptor. 68 1


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