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Biomedical subjects

A Filipek

Publications and source records attributed to A Filipek.

At least 19 recordsLinked to original sources

[The fat and fatty acids content in selected sea fish].

The fat content as well as fatty acids in baltic herring, mackerel and salmon from Norway has been determined. The fat content was 7%, 11.6% and 13.2% respectively. Both fat extracted from mackerel and salmon contained much more of polyunsaturated fatty acids in comparison to that extracted from herring. PUFA content in herring fat was 15% whereas mackerel and salmon 29% and 25% respectively. PUFA represented mostly of omega-3 family.

Animals↗

Characterization of the interaction of calcyclin (S100A6) and calcyclin-binding protein.

Calcyclin (S100A6) is an S100 calcium-binding protein whose expression is up-regulated in proliferating and differentiating cells. A novel 30-kDa protein exhibiting calcium-dependent calcyclin-binding (calcyclin-binding protein, CacyBP) had been identified, purified, and cloned previously (Filipek, A., and Kuznicki, J. (1998) J. Neurochem. 70, 1793-1798). Here, we have defined the calcyclin binding region using limited proteolysis and a set of deletion mutants of CacyBP. A fragment encompassing residues 178-229 (CacyBP-(178-229)) was capable of full binding to calcyclin. CacyBP-(178-229) was expressed in Escherichia coli as a glutathione S-transferase fusion protein and purified. The protein fragment cleaved from the glutathione S-transferase fusion protein was shown by CD to contain 5% alpha-helix, 15% beta -sheet, and 81% random coil. Fluorescence spectroscopy was used to determine calcyclin dissociation constants of 0.96 and 1.2 microm for intact CacyBP and CacyBP-(178-229), respectively, indicating that the fragment can be used for characterization of calcyclin-CacyBP interactions. NMR analysis of CacyBP-(178-229) binding-induced changes in the chemical shifts of (15)N-enriched calcyclin revealed that CacyBP binding occurs at a discrete site on calcyclin with micromolar affinity.

Amino Acid Sequence↗

Calcyclin (S100A6) binding protein (CacyBP) is highly expressed in brain neurons.

The expression of a novel calcyclin (S100A6) binding protein (CacyBP) in different rat tissues was determined by Western and Northern blotting. Polyclonal antibodies against recombinant CacyBP purified from E. coli exhibited the highest reaction in the brain and weaker reaction in liver, spleen, and stomach. CacyBP immunoreactivity was also detected in lung and kidney. Densitometric analysis showed that the concentration of CacyBP in the soluble fractions of total brain and cerebellum is approximately 0.17 and 0. 34 ng/microg protein, respectively. Northern blotting with a specific cDNA probe confirmed the high level of CacyBP expression in the rat brain and lower levels in other tissues examined. Immunohistochemistry and in situ hybridization of rat brain sections revealed strong expression of CacyBP in neurons of the cerebellum, hippocampus, and cortex. The in situ hybridization detected CacyBP in hippocampus as early as P7 (postnatal day 7) and a peak of expression at P21, and the expression signal was preserved until adulthood. In the entorhinal cortex, the peak of expression was observed at P7, whereas in the cerebellum it was seen at P21. The results presented here show that CacyBP is predominantly a neuronal protein. (J Histochem Cytochem 48:1195-1202)

Animals↗

[Fatty acids in confectionery products].

The content of fat and fatty acids in 144 different confectionery products purchased on the market in Warsaw region during 1997-1999 have been investigated. In examined confectionery products considerable variability of both fat and fatty acids content have been found. The content of fat varied from 6.6% (coconut cookies) up to 40% (chocolate wafers). Saturated fatty acids were present in both cis and trans form. Especially trans fatty acids reach (above 50%) were fats extracted from nut wafers, coconuts wafers.

Candy↗

[Fatty acids in chocolate and chocolate products].

Fat content as well as fatty acids composition in 46 chocolate both stuffed and hard type as well as 14 chocolate related products from the market in Warsaw area in the years of 1997-1999 has been analysed. As the result of above investigations the considerable difference in fat content (from 6.6 to 40.0%) as well as fatty acids groups has been detected, in particular in stuffed chocolates and chocolate products.

Cacao↗

Molecular cloning and expression of a mouse brain cDNA encoding a novel protein target of calcyclin.

A protein target of mouse calcyclin, p30, which we call calcyclin-binding protein (CacyBP), was identified in mouse brain and Ehrlich ascites tumor (EAT) cells. The amino acid sequence of the CacyBP chymotryptic peptide was used to prepare synthetic oligonucleotides that served as a probe to screen the mouse brain cDNA library. A 1.4-kb positive clone was detected, isolated, and sequenced. The analyzed clone contains an open reading frame encoding a protein of a molecular mass of approximately 26 kDa. The nucleotide and predicted amino acid sequences indicate that CacyBP is a novel protein. The results obtained from northern blots show that the CacyBP gene is expressed predominantly in mouse brain and EAT cells. Using a pGEX vector the recombinant CacyBP was expressed in Escherichia coli, and its properties were analyzed. The recombinant protein interacts with calcyclin at a physiologically relevant range of Ca2+ in solution during affinity chromatography and on blots. Because CacyBP, like calcyclin, is present in the brain, the interaction of these two proteins might be involved in calcium signaling pathways in neuronal tissue.

Amino Acid Sequence↗

p30, a novel protein target of mouse calcyclin (S100A6).

A novel protein target of mouse calcyclin (S100A6) was detected by a gel overlay method with 125I-labelled calcyclin. Interaction of calcyclin with its 30 kDa target protein (p30) present in Ehrlich ascites tumour (EAT) cells depended on the presence of Ca2+ ions. The binding of p30, evidenced by the reaction with 125I-labelled calcyclin, was found to be of higher affinity than the binding between mouse calcyclin and annexin II or glyceraldehyde-3-phosphate dehydrogenase. Examination of tissue extracts by the gel overlay method has shown that p30 is present not only in the EAT cells but also in mouse brain and spleen. This novel target protein of mouse calcyclin was purified to homogeneity from EAT cells by means of Phenyl-Sepharose chromatography, affinity chromatography and CM-cellulose chromatography. Purified p30 was digested with alpha-chymotrypsin and a partial amino acid sequence of one of the resulting peptides was established. A database search analysis revealed that the sequence is unique, with a similarity of less than 55% to any other known protein sequence.

Amino Acid Sequence↗

Chicken gizzard calcyclin--distribution and potential target proteins.

The distribution of calcyclin in some chicken tissues was studied by Western blotting using polyclonal antibodies raised against calcyclin purified from chicken gizzard. The protein was found in gizzard muscle and in a lesser amount in skeletal and cardiac muscle. No immunological reaction was observed in chicken liver. Immunohistochemical studies of chicken gizzard tissue revealed the presence of calcyclin only in muscle fibers. Ca(2+)-dependent interaction of chicken gizzard calcyclin with potential protein targets was also examined. By gel overlay method it was found that calcyclin bound to three proteins with molecular masses of approximately 35 kDa, 25 kDa and 15 kDa present in the cytosolic fraction derived from chicken gizzard muscle. The chicken gizzard calcyclin was also shown to interact with lysozyme.

Animals↗

Ca2+-dependent interaction of calcyclin with membrane.

The presence of calcyclin in the microsomal fraction of Ehrlich ascites tumor cells was detected using polyclonal antibodies. Association of calcyclin with the microsomes depended on the presence of calcium ions in the buffer used for cell fractionation. The interaction of calcylcin with Ehrlich ascites tumor cells microsomes was confirmed in the in vitro conditions by cosedimentation assay using exogenous calcyclin. It was shown that phospholipids extracted from natural membranes and purified phosphatydylserine or phosphatydylcholine were not involved in the binding. Instead, several low molecular weight polypeptides in the Triton X-100 resistant membrane fraction were found to interact with calcyclin.

Animals↗

Characterization of chicken gizzard calcyclin and examination of its interaction with caldesmon.

Using a procedure developed to purify calcyclin from mouse Ehrlich ascites tumor cells calcyclin was purified from smooth muscle of chicken gizzard. Chicken gizzard calcyclin bound to phenyl-Sepharose in a calcium dependent manner as did mouse EAT cells and rabbit lung calcyclin but appeared to be more acidic than its mammalian counterparts as revealed by ion exchange chromatography on Mono Q. Chicken gizzard calcyclin bound 45Ca2+ on nitrocellulose filters and exhibited a shift in electrophoretic mobility on urea-PAGE depending on Ca2+ concentration. Crosslinking experiments with BS3 showed that chicken gizzard calcyclin was able to form noncovalent dimers. As indicated by a decrease in maximum tryptophan fluorescence emission of caldesmon (about 14% at 1:1 molar ratio) and displacement of calmodulin from its complex with caldesmon, chicken gizzard calcyclin binds caldesmon. This binding was, however, much weaker than that of calmodulin and could not influence the interaction of caldesmon with actin. In consequence, calcyclin was unable to reverse the inhibitory effect of caldesmon on actin-activated Mg(2+)-ATPase activity of myosin in the presence of Ca2+.

Actins↗

Interaction of calcyclin and its cyanogen bromide fragments with annexin II and glyceraldehyde 3-phosphate dehydrogenase.

The structural properties of calcyclin protein are quite well characterized but its function remains obscure. To help elucidate the biological role of calcyclin we have performed the in vitro studies of the Ca(2+)-dependent interaction of Ehrlich ascites tumor cells calcyclin and its cyanogen bromide fragments with two potential calcyclin targets: annexin II and glyceraldehyde 3-phosphate dehydrogenase (GAPDH). The binding of annexin II, evidenced by the reaction with 125I-calcyclin, was found to be very weak and occurred only for intact calcyclin. On the other hand the interaction between calcyclin and GAPDH was of high affinity and could be assigned to the N-terminal region of calcyclin. Intact calcyclin and its N-terminal fragment bound to GAPDH in the gel overlay and affinity chromatography assay. When examined in the presence of a crosslinking agent the interaction resulted in the formation of 46K covalent adduct between calcyclin monomer and GAPDH subunit. Fluorescence of 5-iodoacetamido-fluorescein-labelled calcyclin was efficiently quenched by GAPDH in the presence of Ca2+. Titration experiments revealed the stoichiometry of one calcyclin monomer binding to each of GAPDH subunits with a binding constant of 10(8) M-1. The results of this work suggest that the binding between calcyclin and GAPDH may have bearing on calcyclin function.

Amino Acid Sequence↗

Identification of an autoinhibitory domain in the insulin receptor tyrosine kinase.

We have tested the hypothesis that activation of the insulin receptor tyrosine kinase is due to autophosphorylation of tyrosines 1146, 1150 and 1151 within a putative autoinhibitory domain. A synthetic peptide corresponding to residues 1134-1162, with tyrosines substituted by alanine or phenylalanine, of the insulin receptor beta subunit was tested for its inhibitory potency and specificity towards the tyrosine kinase activity. This synthetic peptide gave inhibition of the insulin receptor tyrosine kinase autophosphorylation and phosphorylation of the exogenous substrate poly(Glu, Tyr) with an approximate IC50 of 100 microM. Inhibition appeared to be independent of the concentrations of insulin or the substrate poly(Glu, Tyr) but was decreased by increasing concentrations of ATP. This same peptide also inhibited the EGF receptor tyrosine kinase but not a serine/threonine protein kinase. These results are consistent with the hypothesis that this autophosphorylation domain contains an autoinhibitory sequence.

Adenosine Triphosphate↗

Calcyclin--Ca(2+)-binding protein homologous to glial S-100 beta is present in neurones.

The aim of this work was to confirm the presence of calcylin in brain and to identify calcyclin positive cells. Calcyclin was identified in brain soluble proteins that were bound to phenyl-sepharose in a calcium dependent fashion. Specific antibodies against calcylin were found to stain subsets of brain neurones such as neurones in Ammons horn of hippocampus, granule cells in cerebellum, and neurones in brain stem. Glial cells which contain large amounts of S-100 beta protein were calcyclin negative. These results indicate that calcyclin is present in neurones, but not in glial cells.

Animals↗