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B Turk

Publications and source records attributed to B Turk.

47 records · Page 3Linked to original sources

Mutations which affect the inhibition of protein phosphatase 2A by simian virus 40 small-t antigen in vitro decrease viral transformation.

Three independent point mutations within residues 97 to 103 of the simian virus 40-small-t antigen (small-t) greatly reduced the ability of purified small-t to inhibit protein phosphatase 2A in vitro. These mutations affected the interaction of small-t antigen with the protein phosphatase 2A A subunit translated in vitro, and a peptide from the region identified by these mutations released the A subunit from immune complexes. When introduced into virus, the mutations eliminated the ability of small-t to enhance viral transformation of growth-arrested rat F111 cells. In contrast, the mutant small-t antigens were unimpaired in the transactivation of the adenovirus E2 promoter, an activity which was reduced by a double mutation in small-t residues 43 and 45.

Adenovirus E2 Proteins↗

Bovine stefin C, a new member of the stefin family.

Four low M(r) cysteine proteinase inhibitors with different pI values were isolated from bovine thymus using alkaline activation of the gland homogenate, affinity chromatography on carboxymethyl-papain-Sepharose, gel filtration on Sephadex G-50, ion-exchange chromatography on a DEAE-cellulose column and a fast protein liquid chromatography Mono Q column, and hydrophobic chromatography on a TSK Phenyl-5 PW column. One of the inhibitors was identified both as the monomeric and dimeric forms of stefin B. Two others, called cysteine proteinase inhibitor-1 and cysteine proteinase inhibitor-2, were N terminally blocked and most likely belong to the stefin family. The complete amino acid sequence of the last inhibitor, namely bovine stefin C, was determined. The inhibitor consisted of 101 amino acids and its M(r) was calculated to be 11,546. It exhibits considerable sequence homology with other inhibitors from the stefin family. It was identified as the first tryptophane-containing stefin and it had a prolonged N terminus. The four inhibitors had similar inhibitory activities on cysteine proteinases. They were fast-acting inhibitors of papain and cathepsin L (kass > or = 1.8 x 10(6) M-1 s-1) and formed very tight complexes with the enzymes (Ki < or = 180 pM). In contrast, they were relatively poor inhibitors of cathepsin B (Ki > 100 nM).

Amino Acid Sequence↗

Kinetics of the pH-induced inactivation of human cathepsin L.

Cathepsin L is known as the most unstable lysosomal cysteine proteinase at neutral or alkaline pH. The kinetics of inactivation of human cathepsin L was studied by mixing the enzyme with a substrate and recording the release of product. The inactivation was found to be a first-order process, and the rate of the process decreased with the substrate concentration. The substrate-independent inactivation rate constant kinact was found to be 0.15 s-1 at pH 7.4 and 37 degrees C and increased 85-fold between pH 7.0 and 8.0. At pH 7.4, kinact increased 3200-fold between 5 and 37 degrees C with an energy of activation 174.7 kJ/mol. Inactive cathepsin L did not reactivate at pH 5.5. The rate of inhibition of cathepsin L by stefin B or chicken cystatin at pH 7.4 was much faster than the rate of spontaneous inactivation of the enzyme. The stefin B-cathepsin L complex incubated at pH 7.4 released active enzyme at pH 5.5, suggesting that the cysteine proteinase inhibitors might act as extracellular carriers of the cysteine proteinases.

Cathepsin L↗

Simian virus 40 small-t antigen binds two zinc ions.

Six cysteine residues of the simian virus 40 small-t antigen (small-t) are important for stability of the protein. Stability has been shown to be related to the ability of small-t to bind zinc ions in vitro. Purified small-t expressed either in bacteria or from baculovirus vectors binds two molecules of zinc per molecule of protein. Thus, small-t may resemble GAL4, which contains a Zn(II)2Cys6 binuclear cluster.

Antigens, Viral, Tumor↗

[Reference controlled, randomized double-blind study of the effectiveness of a salbutamol/DNCG DA combination in bronchial hyperreactivity in comparison with salbutamol DA alone (parallel group comparison)].

We examined 20 patients in whom bronchial hyperreactivity and positive inhalative methacholine provocation test (dosage-effect curve) had been known for at least 3 months at the time of study. The patients received randomised either DA Salbutamol/DNCG (0.1 mg Salbutamol and 1.0 mg DNCG/puff) or DA Salbutamol alone (0.1 mg Salbutamol puff). In each case the therapy consisted of 4 x 2 puffs daily. The minimum treatment time was 14 days. The average treatment time was 16 days in both groups. The major aim of the study was to find out whether treatment with the combination preparation in the inhalative methacholine test would lead to a higher provocation dose (PD) for the Rt value and/or sGaw and/or FEV1 representing an alleviation of bronchial hyperreactivity, compared with the pre-examination and with the control group with Salbutamol monotherapy. In addition, the effectivity was to be documented by means of peak-flow values to be measured by the patient himself. The results show in both groups a mild but statistically not significant reduction of the provocation reaction in the inhalative methacholine provocation test in the sense of an improvement in bronchial hyperreactivity. No significant difference between the therapy groups, and especially no superiority of the combination treatment, is evident.

Adult↗

The complete primary structure of bovine stefin B.

A new stefin B-type low-Mr CPI was isolated from bovine thymus and subjected to structural analysis. The inhibitor consisted of 98 amino acids and its Mr was calculated to be 11,178. The NH2-terminal amino acid residue was blocked. The sequence was determined by automated sequencing of peptides derived by cleavage with cyanogen bromide and fragments of the inhibitor resulting from enzymatic digestion with beta-trypsin and Staphylococcus aureus V-8 proteinase. The NH2-terminal blocking group was established with mass spectrometry. The inhibitor exhibits considerable sequence homology with inhibitors from the stefin family. Furthermore, a highly conserved QVVAG region within the stefin family is for the first time replaced by the QLVAG sequence.

Amino Acid Sequence↗

Soil as a source of indoor 220Rn.

Two suggestions for sources of indoor 220Rn (thoron) have appeared in the literature: 1) building materials and outside air, and 2) soil beneath the house. Due to the difficulty of 220Rn measurement and limited data, both suggestions lack sufficient supporting evidence. We have investigated sources of indoor 220Rn in seven occupied houses in northern New Mexico, U.S. A two-filter system was used to measure indoor 220Rn levels continuously, and 220Rn progeny were measured with single filters and specialized alpha-track detectors. The amount of 220Rn entry from soil was curtailed by cutting off soil gas flow to the indoor air with subfloor depressurization mitigation systems. Four of the houses showed significant reductions in 220Rn with mitigation systems on. The average effect for these houses was to reduce indoor 220Rn levels by 70%. The other three houses had no clear reductions but in one of these houses, the mitigation system was not effective for stopping soil gas flow. Our results provide some of the most clear evidence to date supporting soil as an important source of indoor 220Rn.

Air Pollution, Indoor↗

Effect of zinc ions on the biochemical behavior of simian virus 40 small-t antigen expressed in bacteria.

The simian virus 40 small-t antigen contains 10 cysteine residues, 6 of which are organized in two CysXCysXXCys clusters. Mutation of individual Cys residues in the two clusters or mutation of specific residues found between these clusters causes pronounced instability of the protein in animal cells. Protein instability correlates with failure of the bacterially expressed mutant proteins to bind zinc ions, an interaction which allows purification of large amounts of small-t antigen in monomeric form.

Amino Acid Sequence↗

Isolation and characterization of bovine stefin B.

A new cysteine proteinase inhibitor (CPI) was isolated from bovine thymus. According to the amino acid sequence it belongs to the stefin family. It appears as a monomer and a dimer with monomer M(r) of 11,178 and pI values 5.6 for the monomer and 5.2 and 5.6 for the dimer. Ki for the interaction with papain was determined to be 0.12 nM. The most interesting feature of bovine stefin B is the replacement of the highly conserved QVVAG region in stefins with the QLVAG sequence without interfering its inhibitory properties.

Amino Acid Sequence↗

Characterization and structure of pineapple stem inhibitor of cysteine proteinases.

The complete amino acid sequence of the inhibitor of cysteine proteinases from pineapple stem acetone powder was determined. The inhibitor consists of 52 amino acids and is composed of two polypeptide chains (41 and 11 amino acids) linked via disulphide bonds. It differs from already known sequences in one to four amino acids. Data from its amino acid sequence analysis clearly show that this inhibitor cannot be a member of the cystatin superfamily. The Ki values for papain, bromelain and cathepsin L were determined.

Amino Acid Sequence↗

Structural and functional aspects of papain-like cysteine proteinases and their protein inhibitors.

Cysteine proteinases are widely distributed among living organisms. According to the most recent classifications (Rawlings and Barrett, 1993, 1994), they can be subdivided on the basis of sequence homology into 14 or even 20 different families, the most important being the papain and the calpain families. The papain-like cysteine proteinases are the most abundant among the cysteine proteinases. The family consists of papain and related plant proteinases such as chymopapain, caricain, bromelain, actinidin, ficin, and aleurain, and the lysosomal cathepsins B, H, L, S, C and K. Most of these enzymes are relatively small proteins with Mr values in the range 20000-35000 (reviewed in Brocklehurst et al., 1987; Polgar, 1989; Rawlings and Barrett, 1994; Berti and Storer, 1995), with the exception of cathepsin C, which is an oligomeric enzyme with Mr approximately 200000 (Metrione et al., 1970; Dolenc et al., 1995). A number of cysteine proteinases are located within lysosomes. Four of them, cathepsins B, C, H and L, are ubiquitous in lysosomes of animals, whereas cathepsin S has a more restricted localisation (Barrett and Kirschke, 1981; Kirschke and Wiederanders, 1994). The enzymes, except cathepsin C, are endopeptidases (reviewed in Kirschke et al., 1995), although cathepsin B was found also to be a dipeptidyl carboxypeptidase (Aronson and Barrett, 1978) and cathepsin H also an aminopeptidase (Koga et al., 1992). Cathepsin C is a dipeptidyl aminopeptidase, but at higher pH it exhibits also dipeptidyl transferase activity (reviewed in Kirschke et al., 1995). Among the lysosomal cysteine proteinases, cathepsin L was found to be the most active in degradation of protein substrates, such as collagen, elastin and azocasein (Barrett and Kirschke, 1981; Maciewicz et al., 1987; Mason et al., 1989), arid cathepsin B the most abundant (Kirschke and Barrett, 1981). All the enzymes are optimally active at slightly acidic pH, although their pH optima for degradation of synthetic substrates vary from 5.5 for cathepsin L to 6.8 for cathepsin H (reviewed in Kirschke et al., 1995). Several other lysosomal cysteine proteinases, such as cathepsins N, T and K, are known, although their properties are less well characterised (reviewed in Kirschke et al., 1995). In particular cathepsin K has attracted recent interest (Bromme et al., 1996; Shi et al., 1995; Bossard et al., 1996; Drake et al., 1996) and was found to be expressed specifically in osteoclasts (Drake et al., 1996) with properties similar to cathepsin L (Bossard et al., 1996).

Animals↗