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Biomedical subjects

J Ye

Publications and source records attributed to J Ye.

At least 271 records · Page 15Linked to original sources

Inhibition of tumor promoter-mediated processes in mouse skin and bovine lens by caffeic acid phenethyl ester.

Caffeic acid phenethyl ester (CAPE) was isolated from propolis (a product of honeybee hives) that has been used in folk medicine as a potent antiinflammatory agent. CAPE is cytotoxic to tumor and virally transformed but not to normal cells. Our main goal was to establish whether CAPE inhibits the tumor promoter (12-O-tetradecanoylphorbol-13-acetate)-induced processes associated with carcinogenesis. Topical treatment of SENCAR mice with very low doses (0.1-6.5 nmol/topical treatment) of CAPE strongly inhibits the following 12-O-tetradecanoylphorbol-13-acetate-mediated oxidative processes that are considered essential for tumor promotion: (a) polymorphonuclear leukocyte infiltration into mouse skin and ears, as quantified by myeloperoxidase activity; (b) hydrogen peroxide (H2O2) production; and (c) formation of oxidized bases in epidermal DNA, as measured by 5-hydroxymethyluracil and 8-hydroxylguanine. A 0.5-nmol dose of CAPE suppresses the oxidative burst of human polymorphonuclear leukocytes by 50%. At higher doses (1-10 mumol), CAPE inhibits edema and ornithine decarboxylase induction in CD-1 and SENCAR mice. Interestingly, we discovered that 12-O-tetradecanoylphorbol-13-acetate-induced H2O2 production in bovine lenses also is inhibited by CAPE. Cumulatively, these findings point to CAPE as being a potent chemopreventive agent, which may be useful in combating diseases with strong inflammatory and/or oxidative stress components, i.e., various types of cancer and possibly cataract development.

Animals↗

Isolation of oligomannose-type glycans from bean glycoproteins.

We have isolated individual oligosaccharyl-asparagine derivatives from the total soluble glycoproteins from kidney beens (Phaseolus vulgaris) and from lima beans (Phaseolus limensis). The protein/glycoprotein mixture was digested exhaustively by pronase, and the glycan-containing fractions were separated from free amino acids and peptides by gel filtration. The oligosaccharyl-asparagine derivatives were finally fractionated on Dowex 50 (C. C. Huang, H.E. Meyer, and R. Montgomery, Carbohydr. Res. 13, 127-137, 1970), and the individual fractions were characterized by mass spectrometry, NMR, and ion exchange chromatography. With the procedures described, only oligomannose derivatives were obtained from the beans. In the case of kidney beans, six different derivatives were observed and characterized, Man9GlcNAc2Asn, two positional isomers of Man8GlcNAc2Asn, two positional isomers of Man7GlcNAc2Asn, and Man6GlcNAc2Asn. Under identical conditions the lima beans yielded primarily the Man9GlcNAc2Asn derivative along with a small amount of the two Man8GlcNAc2Asn derivatives. The oligomannose structures can be isolated in reasonable quantities (2-20 mg) from about 200 g of dry beans.

Asparagine↗

The chondroitin sulfate moiety of thrombomodulin binds a second molecule of thrombin.

The role of the chondroitin sulfate moiety of thrombomodulin (TM) in the binding of thrombin to TM has been examined using fluorescent derivatives of thrombin. An anilinonaphthalene-6-sulfonic acid (ANS) dye was attached covalently to the active site histidine of thrombin via a D-Phe-Pro-Arg (FPR) linkage to form ANS-FPR-thrombin. When ANS-FPR-thrombin was titrated with TM lacking the chondroitin sulfate moiety (csf-TM), a monotonic and saturable increase in ANS emission intensity was observed that was consistent with the formation of a high affinity 1:1 thrombin-csf-TM complex. In contrast, titration of ANS-FPR-thrombin with intact TM containing the chondroitin sulfate resulted in a biphasic change in ANS-FPR-thrombin emission intensity that was consistent with each molecule of TM binding at least two molecules of ANS-FPR-thrombin with different affinities. This suggested that the second thrombin binds to TM via the chondroitin sulfate moiety. A direct interaction between thrombin and chondroitin sulfate was demonstrated by showing that chondroitin sulfate, cleaved and purified from TM, caused a saturable increase in ANS emission intensity upon addition to an ANS-FPR-thrombin sample. This spectral change was reversed by adding an excess of unmodified thrombin. The minimum Kd for the ANS-FPR-thrombin-chondroitin sulfate complex was approximately 20 nM, consistent with chondroitin sulfate being the lower affinity binding site on TM for thrombin. The titration of chondroitin sulfate into ANS-FPR-thrombin samples in the absence and presence of a TM fragment containing the fifth and sixth growth factor-like domains (GF5-6) showed that GF5-6 did not block chondroitin sulfate binding and that a GF5-6-thrombin-chondroitin sulfate ternary complex was formed. Thus, the chondroitin sulfate binds to thrombin somewhere other than anion-binding exosite I, and in doing so, alters the structure and/or environment of the active site more than 15A from the active site serine without detectably changing the conformation near Ser-195. Since excess TM and excess csf-TM increased the ANS emission intensity of ANS-FPR-thrombin to different extents (approximately 15 and approximately 80%, respectively), the chondroitin sulfate also influences the environment of the active site probe even when thrombin is bound to the higher affinity site on TM (GF5-6).

Antithrombin III↗

A Na+/Ca2+ exchange mechanism in apical membrane vesicles of the retinal pigment epithelium.

The retinal pigment epithelium (RPE) lying between the neural retina and the choroid, performs as a transport organ for solutes and water between the choriocapillaries and the subretinal space. It also has the function to maintain the microenvironment of photoreceptors including the regulation of calcium ions during light or dark adaptation. In order to further elucidate the transport functions of the RPE, apical membranes were isolated from RPE by differential precipitation with divalent ions. In this work bovine tissues were used as well as elasmobranch tissues. For the latter, we have already purified and characterized membrane vesicles in a previous paper. Na(+)-K(+)-ATPase, alkaline phosphatase, and 5'-nucleotidase, which are marker enzymes of the apical membrane, were highly enriched in the final membrane fraction. The majority of the fraction consists of right side out vesicles. The fluorescent indicator for sodium, SBFI, or the calcium specific indicator, Fura-2, were pre-loaded into the apical membrane vesicles of RPE of either dogfish eyes or bovine eyes. When an outwardly-directed Ca2+ gradient was formed across the vesicular membranes, the Ca2+ influx was also enhanced by 136% for dogfish RPE and 167% for bovine RPE. This Na+ gradient dependent Ca2+ influx was blocked by bepridil, an antiarrhythmic agent which is a Na+/Ca2+ exchanger inhibitor. These results indicate that a Na+/Ca2+ exchanger is present in the apical membrane of bovine and dogfish RPE.

Animals↗

Allotransplantation of rabbit retinal pigment epithelial cells double-labelled with 5-bromodeoxyuridine (BrdU) and natural pigment.

To facilitate identification of transplanted retinal pigment epithelial (RPE) cells, we sought to double-label the cells with 5-bromodeoxyuridine (BrdU) and with natural pigment. The BrdU is not lost during cell division but does require immunohistochemical methods for visualization; the pigment, on the other hand, allows immediate, obvious identification, but is gradually lost with cell division. Together they provide a convenient, long-term double label. Herein we report the successful allotransplantation of double-labelled RPE cells onto Bruch's membrane of albino rabbits. The labelled cells were localized by anti-BrdU antibody and the avidin biotin-alkaline phosphatase complex (ABC-AP) method, and by visible inclusions of pigment. Using this double-label method, allotransplanted RPE cells could be readily and reliably identified on the recipient Bruch's membrane eight months after transplantation. The cells had distinct basal and apical morphology, and were in close contact with the photoreceptor outer segments of the host. This successful allotransplantation raises the possibility that the subretinal space of the rabbit might enjoy some degree of immunologic privilege.

Animals↗

The fifth and sixth growth factor-like domains of thrombomodulin bind to the anion-binding exosite of thrombin and alter its specificity.

The domain of thrombomodulin that binds to the anion-binding exosite of thrombin was identified by comparing the binding of fragments of thrombomodulin to thrombin with that of Hirugen, a 12-residue peptide of hirudin that is known to bind to the anion-binding exosite of thrombin. Three soluble fragments of thrombomodulin, containing (i) the six repeated growth factor-like domains of thrombomodulin (GF1-6), (ii) one-half of the second through the sixth growth factor-like repeats (GF2.5-6), or (iii) the fifth and sixth such domains (GF5-6), were examined. Hirugen was a competitive inhibitor for either GF1-6 or GF2.5-6 stimulation of thrombin activation of protein C. GF5-6, which binds to thrombin without altering its ability to activate protein C, competed with fluorescein-labeled Hirugen for binding to thrombin. Therefore, all three thrombomodulin fragments, each of which lacked the chondroitin sulfate moiety, competed with Hirugen for binding to thrombin. To determine whether GF5-6 and Hirugen were binding to overlapping sites on thrombin or were interfering allosterically with each other's binding to thrombin, the effects of each thrombomodulin fragment and of Hirugen on the active site conformation of thrombin were compared using two different approaches: fluorescence-detected changes in the structure of the active site and the hydrolysis of chromogenic substrates. The GF5-6 and Hirugen peptides affected these measures of active site conformation very similarly, and hence GF5-6 and Hirugen contact residues on the surface of thrombin that allosterically alter the active site structure to a similar extent. Full-length thrombomodulin and GF1-6 alter the active site structure to comparable extents, but the amidolytic activity of thrombin complexed to thrombomodulin or GF1-6 differs significantly from that of thrombin complexed to GF5-6 or Hirugen. Taken together, these results indicate that the GF5-6 domain of thrombomodulin binds to the anion-binding exosite of thrombin. Furthermore, the binding of GF5-6 to the anion-binding exosite alters thrombin specificity, as evidenced by GF5-6-dependent changes in both the kcat and Km of synthetic substrate hydrolysis by thrombin. The contact sites on thrombin for the GF4 domain and the chondroitin sulfate moiety of thrombomodulin are still unknown.

Amino Acid Sequence↗

Study of the Ca2+/Na+ exchange mechanism in vesicles isolated from apical membranes of lens epithelium of spiny dogfish (Squalus acanthias) and bovine eye.

Apical membrane vesicles of dogfish and bovine lens epithelium were prepared by differential centrifugation and Mg2+ precipitation. Enrichment of the apical enzyme markers, for Na+,K(+)-ATPase was achieved. Na+,K(+)-ATPase was enriched 25.9-fold and 23.6-fold for dogfish and bovine lens epithelia, respectively, and acid phosphatase was enriched 10.4-fold and 12.6-fold, respectively. There was no enrichment of the cytoplasmic marker, NADH reductase. The majority of the apical membrane vesicles isolated from both dogfish and bovine lens epithelia were oriented right-side out. Electron micrographs of the purified vesicles show the presence of circular sealed vesicles with an average size of approximately 0.2-0.5 microns. Incubation of the vesicles with either the acetoxymethyl ester of SBFI, a new indicator for sodium, or with Fura-2, the calcium-specific indicator, leads to a large accumulation of the de-esterified SBFI or Fura-2 in the lens epithelial apical vesicles as determined by fluorescence measurements. When an outwardly direct Ca2+ gradient is formed across the vesicular membranes, the influx of Na+ is stimulated 77.8 and 63.0% for dogfish and bovine lens epithelia, respectively. When an outwardly directed Na+ gradient is formed across the vesicular membranes, the Ca2+ influx is also greatly enhanced. Both cases indicate that there is a bidirectional Ca2+/Na+ exchanger present in the apical side of the lens epithelial cell. The exchanger is inhibited by 50 microM bepridil or by 200 microM La3+. The stimulatory effects are also observed in membrane vesicles that are 'short-circuited' with valinomycin and high concentrations of K+.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Influence of medicinal herbs on phagocytosis by bovine neutrophils.

Twenty-six herbal preparations made from 24 medicinal herbs, categorized as antipyretics in Chinese materia medica, were tested in vitro to determine their effects upon phagocytosis of 32P-labelled Staphylococcus aureus by neutrophils isolated from bovine blood and milk. The percentage of phagocytosis was determined after incubating (1 hour at 37 degrees C) 1.25 x 10(7) neutrophils, 1 x 10(8) 32P-labelled S. aureus and 10% skimmed milk with herbal solutions. Concentrations of herbal preparations tested were 100%, 10% and 1% (v/v). When compared with PBSS (0.01 M phosphate buffered saline solution) controls, most of the herbs at high concentrations inhibited phagocytosis while at lower concentrations phagocytosis was increased. All 26 herbal preparations significantly increased blood neutrophil activity at their proper concentrations. The most active herbs in promoting blood neutrophil phagocytosis were observed for Herba verbenae, Flos chrysanthemi, Flos lonicerae, Radix sophorae flavescentis, Herba houttuyniae, Radix isatidis, Herba patriniae, Berberini sulfatis at the lowest concentration and for Folium hibisci at the high concentration with the increased percentage of more than 40.0% in comparison with PBSS control. Of the 19 herbal preparations tested with milk neutrophils, 18 herbs greatly increased phagocytosis at suitable concentrations. The most active preparations in stimulating milk neutrophil functions included Folium hibisci, Flos chrysanthemi, Radix bupleuri, Radix stellariae, Herba houttuyniae, Herba senecionis scandentis, Caulis lonicerae and Flos lonicerae which increased phagocytosis by over 35.0%.

Animals↗

[Computerized image analysis for retinal nerve fiber layer: a preliminary report].

The principle and method for analysing the white-black photographs of retinal nerve fiber layer (RNFL) by using the technique of computerized image analysis were introduced. An objective and quantitative result of RNFL on the white-black photograph was initially obtained, and using the technique of fulse colour, each of the RNFL could be showed, which seem to have more advantages than observing RNFL on a white-black photograph.

Anthropometry↗

Volatile N-nitrosamines in salted fish samples from high- and low-risk areas for NPC in China.

Four carcinogenic volatile nitrosamines (N-dimethylnitrosamine, NDMA; N-diethylnitrosamine, NDEA; N-nitrosopyrroline, NPYR; and N-nirosopiperilidine, NPIP) were screened in twenty specimens of salted fish collected from areas in China with different nasopharyngeal carcinoma (NPC) mortality rates. The highest NDMA, NDEA and total N-nitrosamine contents (322.92, 50.27 and 373.19 micrograms/kg, respectively) were found in the samples from Sihui, one of the areas with highest NPC mortality. The lowest contents (12.64, 7.65 and 20.29 micrograms/kg, respectively) were seen in the samples from Shanghai, the area with the lowest mortality from NPC in the study. These results confirm that there are appreciable levels of nitrosamines in the salted fishes consumed by residents in high-risk areas of NPC in China.

Animals↗

Detection of point mutations of the phenylalanine hydroxylase gene and prenatal diagnosis of phenylketonuria.

The known mutant alleles of the human phenylalanine hydroxylase (PAN) gene were analyzed in 25 phenylketonuria (PKU) families from North China by using polymerase chain reaction and allele-specific oligonucleotide dot blot hybridization techniques. The results showed that the six mutations analyzed accounted for 62% of all PKU genes. The three most frequent mutations were R243Q, R413P and Y204C. Seven prenatal gene diagnoses were carried out in 6 PKU families and were confirmed after birth or by examination of aborted materials.

Base Sequence↗

[The study of DNA fingerprint using probe directly labelled with horseradish peroxidase and enhanced chemiluminescence in forensic science application].

We describe here the technique of DNA probe directly labelled with horseradish peroxidase (HRP) and enhanced chemiluminescence (ECL) detection for determining DNA fingerprints. The patterns of DNA fingerprint were clear and with high distinction. The sensitivity of DNA fingerprint was 0.8 microgram, similar to the method of 32P labelling. The DNA fingerprints of 150 unrelated individuals were studied and showed that the probability of chance association of DNA fragments between random individuals was 3.7 x 10(-14). The method is stable, simple and quick, and can be used in individual identification and paternity test.

DNA Fingerprinting↗

Proteolytic formation of either of the two prothrombin activation intermediates results in formation of a hirugen-binding site.

Hirugen, a synthetic dodecapeptide corresponding to the carboxyl-terminal amino acids 53-64 of hirudin, binds within a deep groove in thrombin that contains a cationic region referred to as the anion-binding exosite. This region is important in many of the binary interactions of thrombin with macromolecular substrates and cofactors. Fluorescein-labeled hirugen was used to probe which steps in the prothrombin activation process generate this anion-binding exosite. Two activation cleavage sites exist in bovine prothrombin. Cleavage at Arg274-Thr275 releases the activation fragments to generate the thrombin precursor, prethrombin 2. Cleavage of prothrombin within a disulfide loop at Arg323-Ile324 leads to formation of meizothrombin with no loss of peptide material but with formation of amidolytic activity. Cleavage of the same bond in prethrombin 2 generates thrombin. Hirugen, labeled at the amino terminus with fluorescein isothiocyanate, does not bind to prothrombin but does bind to thrombin (Kd = 9.6 +/- 1.2 x 10(-8) M), prethrombin 2 (Kd = 1.3 +/- 0.1 x 10(-7) M), thrombin-fragment-2 complex (Kd = 1.1 +/- 0.2 x 10(-6) M), and meizothrombin (Kd = 1.6 +/- 0.5 x 10(-8) M). Prothrombin fragment-2 and hirugen both bind independently to thrombin. A ternary complex can form with hirugen and fragment-2 and either thrombin or prethrombin 2, suggesting that fragment-2 and hirugen bind to discrete sites. Hirugen also alters the active site conformation of thrombin as detected by modulation of synthetic substrate hydrolytic activity. These studies suggest that conformational changes, rather than alleviating steric hindrance, are responsible for the formation of the hirugen-binding site during prothrombin activation. Furthermore, this conformational change can be effected by the cleavage of either of the two bonds required for activation of prothrombin.

Amino Acid Sequence↗

The active site of thrombin is altered upon binding to thrombomodulin. Two distinct structural changes are detected by fluorescence, but only one correlates with protein C activation.

The association of thrombin with thrombomodulin, a non-enzymatic endothelial cell surface receptor, alters the substrate specificity of thrombin. Complex formation converts thrombin from a procoagulant to an anticoagulant enzyme. Structure-function analysis of this change in specificity is facilitated by the availability of two soluble proteolytic derivatives of thrombomodulin, one consisting of the six repeated growth factor-like domains of thrombomodulin (GF1-6) and the other containing only the fifth and sixth such domains (GF5-6). Both derivatives can bind to thrombin and block fibrinogen clotting activity, though only the larger GF1-6 can stimulate the activation of protein C. To ascertain whether the substrate specificity change from fibrinogen to protein C is accompanied by structural changes in the active site of the enzyme, fluorescent dyes were positioned at different locations within the active site. A 5-dimethylaminonaphthalene-1-sulfonyl (dansyl) dye was covalently attached to the active site serine to form dansyl-thrombin, while either a fluorescein or an anilinonaphthalene-6-sulfonic acid (ANS) dye was attached covalently to the active site histidine of thrombin via a D-Phe-Pro-Arg linkage. The environment of the dansyl dye was altered in a similar fashion when either GF1-6 or GF5-6 bound to thrombin, since a similar reduction in dansyl emission intensity was elicited by these two thrombomodulin derivatives (25 and 32%, respectively). These spectral changes, and all others in this study, were saturable and reached a maximum when the ratio of thrombomodulin derivative to thrombin was close to 1. The environments of the fluorescein and ANS dyes were also altered when GF1-6 bound to thrombin because binding resulted in emission intensity changes of -13% and +18%, respectively. In contrast, no fluorescence changes were observed when the fluorescein and ANS thrombin derivatives were titrated with GF5-6. Thus, the structure of the active site was altered by thrombomodulin both immediately adjacent to the active site serine and also more than 15 A away from it. However, the structural change far from Ser-195 was only elicited by thrombomodulin species that stimulate thrombin-dependent activation of protein C.

Amino Acid Sequence↗