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1.
《Biochimica et Biophysica Acta (BBA) - Enzymology》1978,522(1):267-269
There are three types of staphylokinase of different isoelectric points (6.7, 6.1 and 5.7). Staphylokinase of pI 6.7 was converted to that of pI 6.1 and then to that of pI 5.7 by the treatment with trypsin.Heterogeneity of staphylokinase might be the result of post-translational modification by proteolytic enzyme. 相似文献
2.
Denis Crane Roger Holmes Colin Masters 《Biochemical and biophysical research communications》1982,104(4):1567-1572
When catalase was immunoprecipitated from different subfractions of mouse liver homogenates, the enzyme which was obtained from extracts of the large granular fraction exhibited a lower molecular weight than that from either the cytosol or purified peroxisomal fractions, as judged by sodium dodecyl sulphate polyacrylamide gel electrophoresis. This modification of the enzyme could be prevented by the addition of proteolytic inhibitors to extraction buffers; and consequently, unmodified catalase was able to be purified in the presence of 5 mM iodoacetamide. Electrophoretic comparison of the catalases against standards of known molecular sizes indicated that the unmodified enzyme had a subunit mass approximately 2,000 daltons larger than the modified enzyme. The significance of these proteolytic modifications has been discussed in relation to the involvements of catalase and peroxisome turnover. 相似文献
3.
The susceptibility of a monodeamidated RNAaseA (RNAaseAa1) towards carboxypeptidaseA , alpha-chymotrypsin and pepsin has been studied. Similar to RNAaseA, the C-terminal of RNAaseAa1 is not available for carboxypeptidaseA hydrolysis. The thermal stability of RNAaseAa1 as probed through chymotryptic digestion is found to be less than that of RNAaseA. Preliminary chromatographic analysis of the digested material, however, suggests that the nature of thermal transition might be the same in the two proteins. Pepsin inactivates RNAaseAa1 more slowly than does RNAaseA. Accordingly, less peptide bonds, almost half that of RNAaseA, are cleaved by pepsin in RNAaseAa1. The accumulation of RNAase-P type intermediates is not evident during peptic digestion of RNAaseAa1. Reaction with O-benzoquinone at low pH shows that methionines of the deamidated protein seem to have higher reactivities. These observations indicate a different structure for RNAaseAa1 at elevated temperature and low pH. 相似文献
4.
Proteolytic modification of the native alkaline phosphatase dimer is restricted to sites in the amino-terminal portion of the sequence. Complementing previous studies of the product of trypsin cleavage at the R-11, A-12 bond (Roberts, C. H., and Chlebowski, J. F. (1984) J. Biol. Chem. 259, 729-733; Roberts, C. H., and Chlebowski, J. F. (1984) J. Biol. Chem. 260, 7557-7561) circular dichroic spectroscopy indicates that cleavage at this site results in a rearrangement of secondary structure and change in tertiary structure as monitored in the far and near UV regions, respectively. Under more vigorous reaction conditions, trypsin cleaves at the R-35, D-36 bond. The deletion of an additional 24 residues yields a species whose functional and structural properties are similar to the initial product of trypsin cleavage. Treatment of the enzyme with Protease V-8 results in cleavage at the E-9, N-10 bond. In contrast to the products of trypsin treatment, this truncated enzyme is similar to the native enzyme. These results indicate that the residues at the N-10 and R-11 positions play a unique role in maintaining the structural integrity and catalytic potency of the enzyme although this locus is distant from the enzyme active centers. These observations are discussed in terms of the three-dimensional structure of the enzyme. 相似文献
5.
During phytohemagglutinin and concanavalin A-induced transformation of human lymphocytes, phosphoglycerate kinase (PGK) exhibits new electrophoretic forms (pI = 8.5–8.9). Electrophoresis and electrofocusing showed that the new forms are not due to expression of the autosomally linked isozyme found in sperm (PGK-B; pI = 9.7). The multiple electrophoretic forms are the result of protease modification of the sex-linked PGK-A isozyme. 相似文献
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8.
Proteolytic modification of the beta nerve growth factor protein 总被引:8,自引:0,他引:8
9.
Proteolytic modification of swelling-activated Cl- current in LNCaP prostate cancer epithelial cells
Vitko YV Pogorelaya NH Prevarskaya N Skryma R Shuba YM 《Journal of bioenergetics and biomembranes》2002,34(4):307-315
The effects of intracellular application of trypsin on the Cl– current induced by hypotonic cell swelling (I
Cl,swell) in human prostate cancer epithelial cells (LNCaP) was studied using the patch-clamp technique. In cells predialyzed with 1 mg/mL trypsin, I
Cl,swell developed and diminished in response to the application and withdrawal of hypotonic solution about three times faster than that in control cells. In trypsin-infused cells, I
Cl,swell also had about twofold higher current density and displayed considerably slowed voltage-dependent inactivation, which was quite pronounced in control cells at potentials above +60 mV. Trypsin-induced modification of I
Cl,swell could be prevented by coinfusion of 10 mg/mL soybean trypsin inhibitor, suggesting that proteolytic cleavage of essential intracellular structural domains of the I
Cl,swell-carrying volume-regulated anion channel (VRAC) was responsible for this functional modification. The effect of trypsin was not dependent on the presence of intracellular ATP. We conclude that VRACs, similarly to voltage-gated Na+, K+, and Cl– channels, possess intracellular inactivation domain(s) subjected to proteolytic cleavage that may function in conformity with the classical ball-and-chain inactivation model. 相似文献
10.
Proteolytic modification of the amino-terminal and carboxyl-terminal regions of rat hepatic phenylalanine hydroxylase 总被引:10,自引:0,他引:10
Activation of rat liver phenylalanine hydroxylase by limited proteolysis catalyzed by chymotrypsin was investigated with the use of sodium dodecyl sulfate-polyacrylamide gel electrophoresis and high pressure gel filtration. Both activation and proteolysis were decreased by the addition of the natural cofactor, (6R)-tetrahydrobiopterin. From chymotryptic digests of the hydroxylase carried out in the presence and absence of (6R)-tetrahydrobiopterin, several different enzyme species were isolated by high pressure gel filtration. One species (subunit Mr = 47,000) with unchanged hydroxylase activity was isolated from the chymotryptic digest in the presence of (6R)-tetrahydrobiopterin; it was derived from the native enzyme (Mr = 52,000) by cleavage of the COOH-terminal Mr = 5,000 portion of the native enzyme. In the absence of (6R)-tetrahydrobiopterin, another species (subunit Mr = 36,000) was isolated. In addition to modification at the COOH-terminal end of the molecule, this species also had lost a Mr = 11,000 fragment from the NH2-terminal end of the hydroxylase. The Mr = 11,000 fragment was shown to include the phosphorylation site of the enzyme. This Mr = 36,000 species was 30-fold more active than the native phenylalanine hydroxylase when assayed in the presence of tetrahydrobiopterin. These results suggest that the regulatory domain that inhibits hydroxylase activity in the basal state may be located at the NH2 terminus of the phenylalanine hydroxylase subunit. 相似文献
11.
It has been found that the bovine vitreous--humour did not digest in vitro collagen at physiological and acidic pH. A proteolytic activity against haemoglobin in acid pH was found both in bovine and human vitreous-humours. The activity of human vitreous-humour increased significantly in endophtalmitis and glaucoma. In all pathological conditions studied the pH optima were at more acidic values than in control. 相似文献
12.
D E Croall 《Biochemistry》1989,28(17):6882-6888
In vitro, limited proteolytic cleavage of the subunits of the purified calcium-dependent proteases [also known as calpains (EC 3.4.22.17) or calcium-activated neutral proteinases (CANPs)] appears to be required for enzyme activity. It has not yet been demonstrated if similar processing of the protease subunits occurs in vivo. To directly assess proteolytic modification of these proteases in cells, we have measured the loss of the proenzyme form of the regulatory subunit (a 26-kDa protein) and/or the appearance of the modified regulatory subunit (a 17-kDa protein) by densitometric analysis of immunoblots. In rat erythrocytes, proteolytic modification of the endogenous calcium-dependent protease (calcium-dependent protease 1, mu CANP) occurs in vivo in response to ionomycin and calcium. The extent of enzyme modification was dependent on time, ionomycin concentration, and calcium concentration, suggesting that in this cellular model Ca2+ regulates proteolytic modification of the enzyme. 相似文献
13.
Proteolytic modification of rat prolactin by subcellular fractions of the lactating rat mammary gland 总被引:1,自引:0,他引:1
The current study explored prolactin proteolysis by rat lactating mammary gland. 125I-labelled rat prolactin was incubated with tissue fractions of lactating mammary gland and the extent of prolactin degradation and fragment formation was visualized and densitometrically quantitated from autoradiographs derived from SDS-polyacrylamide gel electrophoresis under reducing conditions. At pH 4.5, the 25 000 X g pellet of mammary gland converted intact prolactin (23 kDa band) to proteolytic fragments (8-16 kDa bands) in a time- and tissue concentration-dependent fashion similar to that reported previously for rat ventral prostate. The prolactin-degrading and -fragmenting activity in lactating mammary gland was 5-10-times that observed for ventral prostate, the most active male tissue. This activity at acid pH was also demonstrable in other fractions of mammary gland but appeared to predominate in the cytosol. The above activities in mammary gland virtually disappeared at pH 7.4, appeared sensitive to aspartate and sulfhydryl proteinase inhibitors, and insensitive to serine and metalloenzyme proteinase inhibitors. The distribution of this activity could not be correlated with a particular enzyme marker. These characteristics of mammary gland activity differed significantly from those reported previously for prostate. When electrophoresis was conducted under non-reducing conditions, prolactin proteolysis in prostate and mammary gland was primarily associated with the formation of a more slowly migrating product (24 kDa band) with little spontaneous 8-16 kDa fragment formation. Re-electrophoresis of the 24 kDa band under reducing conditions resulted in the appearance of the 8 and 16 kDa fragments. In conclusion, prolactin is proteolytically modified by prostate and lactating mammary gland to a variant of intact hormone (24 kDa band) with a cleavage site in its large loop, by two or more widely distributed, acid-dependent proteinases. Lactating mammary gland, the principal target for prolactin, has the capacity to cleave the hormone in its loop at rates higher than any other tissue examined to date. 相似文献
14.
R H Doi 《Current opinion in biotechnology》1991,2(5):682-684
Major advances have been made in understanding the regulation of expression of Bacillus subtilis protease genes. A phosphorelay mechanism as well as a two-component regulatory system allow conditions of the growth medium to be transmitted to the gene level resulting in expression of extracellular protease genes. 相似文献
15.
Proteolytic processing and regulation. 总被引:3,自引:0,他引:3
Many proteins, particularly proteolytic enzymes, protein hormones and neuropeptides are synthesized as inactive precursors that undergo posttranslational processing by proteolytic enzymes. The roots of current knowledge go back to the early observations of the activation of zymogens. A major advance followed the discovery of the polypreprotein, pre-pro-opiomelanolcortin and of proinsulin, and the characterization of the mammalian processing prohormone enzyme as members of the multidomain yeast kexin family. More recent applications of methods of molecular biology have greatly advanced our understanding of the nature and mode of action of these proteases. 相似文献
16.
V N Luzikov 《Cell biology reviews》1991,25(4):265-94, 335-7
The data on proteolytic control of protein topogenesis and of cell organelles assembly are critically reviewed. There are grounds to suggest that the slow conformational maturation of polypeptide chains, the defects in their modification (i. e., glycosylation) and the delay in some subcellular compartments on the exocytic pathway are responsible for the enhanced proteolytic degradation of proteins. The same holds true for the miscompartmentalized proteins. Another aspect of proteolytic control is the assembly of the multisubunit protein complexes in a cell. The cases of nonstoichiometric subunits synthesis, followed by the degradation of unassembled subunits, are summarized. Stoichiometric ratios of subunits in a cell are supposed to be established by this means. Such a mechanism is especially important when these subunits are synthesized asynchronously or when they are encoded by different genomes and are produced by different protein-synthesizing systems. Most probably, proteolytic control is operative at all stages of the respiratory competent mitochondria formation: (i) when protein precursors are imported from the cytosol, (ii) when the individual polypeptides are assembled into complexes, and (iii) when functioning multienzyme ensembles are formed. From this point of view, a pleiotropic character of mutations in individual proteins of mitochondria and chloroplasts is considered. Thus proteolytic systems of a cell play an important role in protein topogenesis and in the biogenes of cell organelles. 相似文献
17.
Human keratinocytes express a particulate transglutaminase that can be released from the membrane by limited proteolysis with trypsin or plasmin to yield a form that is congruent to 80 kDa. The enzyme from cultured cells was also releasable by endogenous proteolysis to yield a catalytically active fragment of congruent to 80 kDa. Endogenous release was strongly dependent upon temperature and Ca2+ concentration and was inhibited by iodoacetate, but not by leupeptin, antipain or phenylmethanesulphonyl fluoride. These phenomena raise the possibility of partial translocation of transglutaminase activity to the cytoplasm by proteolysis to which the enzyme is subject during terminal differentiation. In addition, hydrodynamic measurements showed that the endogenously released enzyme was monomeric in solution (79 kDa), whereas that solubilized by hydroxylamine without proteolysis appeared dimeric (190 kDa). The latter dimeric state may reflect either an altered conformation of the enzyme or post-translational modification beyond fatty acid esterification. 相似文献
18.
The physiochemical characteristics of the intracellular proteolytic enzymes of Oidiodendron kalari, a neuropathogenic fungus, were studied. The organism in the yeast phase was grown in a semisynthetic medium containing 1% tryptone, at 37 degrees C for 48 hr, on a gyrotory shaker. The crude extract was prepared by breaking the cells in a French pressure cell and the proteolytci activity was tested against biological substrates. The cell-free extract hydrolyzed casein, hemoglobin, lactalbumin, gelatin, elastin, collagen and purified rabbit renal basement membrane to various degrees. Optimal proteolytic activity was observed at pH 6 and at 32 degrees C. Calcium and EDTA did not affect the enzymatic activity; however, activity was partially inhibited by sulfhydryl-blocking agents and by heat-inactivated horse, calf, and human serum. The extract was totally inactivated by exposure to a temperature of 70 degrees C for 60 min. Storage at -76 degrees C or -15 degrees C for 6 months or at 4 degrees C for 4 weeks did not affect protease activity. 相似文献
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Proteolytic modification of acidic and basic keratins during terminal differentiation of mouse and human epidermis 总被引:7,自引:0,他引:7
P E Bowden R A Quinlan D Breitkreutz N E Fusenig 《European journal of biochemistry》1984,142(1):29-36
Keratins from the living cell layers of human and neonatal mouse epidermis (prekeratins) have been compared to those from the stratum corneum (SC keratins). Human and mouse epidermis contained four prekeratins, two of each keratin subfamily: type II basic (pI 6.5-8.5; human 68 kDa, 60.5 kDa and mouse 67 kDa, 60 kDa) and type I acidic (pI 4.7-5.7; human 57 kDa, 51 kDa and mouse 58 kDa, 53 kDa,). While all four were present in equal amounts in adult human epidermis, two (67 kDa basic, 58 kDa acidic) were more prominent in neonatal mouse epidermis. Preliminary results with cell fractions (basal, spinous and granular) indicated that quantitative differences were a function of morphology, basal cells containing the smaller member of each subfamily and granular cells the larger. Mouse stratum corneum extracts contained four keratins (three in human): type II neutral-acidic (pI 5.7-6.7; human 65 kDa and mouse 64 kDa, 62 kDa) and type I acidic (pI 4.9-5.4; human 57.5 kDa, 55 kDa and mouse 58.5 kDa, 57.5 kDa). In both species, one-dimensional and two-dimensional peptide mapping (with V8 protease and trypsin respectively) indicated that while all four prekeratins were distinct gene products, similarities existed in the type II basic and the type I acidic keratin subfamilies. A strong homology also existed between type II SC keratins and the larger basic (type II) prekeratin (human 68 kDa and mouse 67 kDa) and between type I SC keratins and the larger acidic (type I) prekeratin (human 57 kDa and mouse 58 kDa). These results indicate a precursor-product relationship within each keratin subfamily, between SC keratins and the prekeratins abundant in the adjacent granular layer. This differentiation-related keratin processing was similar in mouse and human epidermis, and may represent a widespread phenomenon amongst keratinising epithelia. 相似文献