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Biomedical subjects

Y Lin

Publications and source records attributed to Y Lin.

At least 487 records · Page 27Linked to original sources

Comparative study on the mechanism of formation of pulse manifestations in coronary heart disease and hematopathic patients.

Most patients suffering from coronary heart disease have string--like pulse due mainly to disorder of cardiac function, lowered arterial compliance and increased total peripheral resistance. The common type of pulse in hematopathy patients is rapid, thready, string--like and slippery, due mainly to increased compensatory pumping action of heart, shortening of ejection time of left ventricle, relatively better vessel compliance and blood rheology as well as low total peripheral resistance.

Adolescent↗

[Evaluation of the manifestations of bronchial lesions on ligular segments in clinical and pathological aspects].

OBJECTIVE: To evaluate the characteristic findings of lesions on lingular bronchus. METHODS: All cases examined by fiberoptic bronchoscopy and (or) bronchial biopsy, during the period of 1979-1994, 4,300 in total, were evaluated retrospectively. RESULTS: Abnormal lesions were found in 173 cases (4%), among them, bronchogenic carcinoma was pathologically documented in 106 cases (61.3%). The incidence of cancer in lingular segment was much higher than that in right middle lobe, in which 34 (28.3%) of 120 cases were proved. CONCLUSIONS: Paying special attention to look for the definite diagnosis on the bronchial lesions was suggested since it is important for early diagnosing malignant illness, and the value of bronchoscopy was also highlighted by the authors.

Adult↗

Corneal topography research of myopia in Chinese.

PURPOSE: To determine corneal topography parameters of myopia in Chinese and help for studies of causes of myopia, distingiush other corneal diseases (such as early keratoconus), further explore the accurateness and safeness of the clinical effects of radil keratotomy (RK) or photorefractive keratectomy (PRK). METHODS: Fifty-eight eyes with mild or moderate myopia were examined by computer-assisted photokeratography. (TMS-1 Computed Anatomy Inc. New York. NY) RESULTS: The corneal topography of most (68%) of the examined eyes showed symmetric bowtie pattern: the corneal surface of most (75%) of the examined eyes showed positive aspheric shape (steeper centrally, flatter peripherally); the refractive power of central cornea is at mean 44.165 +/- 1.429 D; the refractive difference between 1 to 25 ring in keratoscpe was at mean 1.655 +/- 0.785D; the mean SRI was 0.558 +/- 0.768, the mean SAI was 0.296 +/- 0.149; the mean Smik was 44.209 +/- 1.515D. The apex and visual axis were dislocation in all the cornea examined. CONCLUSIONS: The corneal surface refractive characterization of myopia might be relative to the clinical effects of RK or PRK.

Adolescent↗

Telomerase activity in human bladder cancer.

Telomerase can synthesize telomeric DNA repeats onto chromosome ends. Telomere length and telomerase activity have recently been implicated in the control of the proliferative capacity of normal and malignant cells. The expression of telomerase activity is concomitant with the attainment of immortality in tumor tissues and cells. Thus, enzyme activity may indicate a prevalent or even ubiquitous tumor producer. In this report, telomerase activity was analyzed in 40 human bladder cancers, 7 normal tissues, and 2 bladder epithelia with dysplasia using a PCR-based telomeric repeat amplification protocol assay. Telomerase activity was detected in almost all bladder tumors (97.5%); only one sample, which was in an early stage, did not express telomerase activity. None of the normal tissues displayed telomerase activity. One of the two bladder epithelia with dysplasia expressed low telomerase activity. The expression of telomerase activity has a clear association with the pathological grade and clinical stage. Most of the tumors with high telomerase activity were in an advanced grade and had deep invasion. Thus, telomerase activity might be suggested to represent an additional required event in the multigenetic process of tumorigenesis in human bladder cancer.

Humans↗

Cooperative formation of higher order peroxisome proliferator-activated receptor and retinoid X receptor complexes on the peroxisome proliferator responsive element of the rat hydratase-dehydrogenase gene.

Peroxisome proliferator-activated receptor (PPAR) forms a heterodimer with retinoid X receptor (RXR) that binds to the peroxisome proliferator responsive element (PPRE) to regulate the expression of target genes. PPRE of the rat enoyl-CoA hydratase/3-hydroxyacyl-CoA dehydrogenase (HD) gene has previously been shown to consist of three imperfect TGACCT half-sites and form two distinct complexes (C1 and C2) with the nuclear extracts from H4IIEC3 cells. The present study identifies another imperfect TGACCT motif involved in the PPAR/RXR-mediated trans-activation process and demonstrates that these four imperfect TGACCT motifs constitute an unique binding site consisting of two DR1 elements overlapping a DR2 element. PPAR and RXR cooperatively bind the two DR1 elements to form C1 complex or bind DR2 element to form C2 complex with a 1:1 ratio. Saturation of the HD PPRE probes with receptor proteins cannot convert the heterodimeric C2 complex to the higher order C1 complex, suggesting that they are formed independently. Transfection analyses indicate that mutation of any one of these TGACCT motifs or truncation of the entire HD PPRE into a separate DR1 and DR2 element significantly reduced the transcriptional response of HD PPRE to peroxisome proliferators. The rat HD PPRE differentially binds with one or two PPAR/RXR heterodimers providing the peroxisome proliferator signaling pathway with two levels of response.

3-Hydroxyacyl CoA Dehydrogenases↗

Thyroid hormone (T3) inhibits ciprofibrate-induced transcription of genes encoding beta-oxidation enzymes: cross talk between peroxisome proliferator and T3 signaling pathways.

Peroxisome proliferators cause rapid and coordinated transcriptional activation of genes encoding peroxisomal beta-oxidation system enzymes by activating peroxisome proliferator-activated receptor (PPAR) isoform(s). Since the thyroid hormone (T3; 3,3',5-triiodothyronine) receptor (TR), another member of the nuclear hormone receptor superfamily, regulates a subset of fatty acid metabolism genes shared with PPAR, we examined the possibility of interplay between peroxisome proliferator and T3 signaling pathways. T3 inhibited ciprofibrate-induced luciferase activity as well as the endogenous peroxisomal beta-oxidation enzymes in transgenic mice carrying a 3.2-kb 5'-flanking region of the rat peroxisomal enoyl-CoA hydratase/3-hydroxyacyl-CoA dehydrogenase gene fused to the coding region of luciferase. Transfection assays in hepatoma H4-II-E-C3 and CV-1 cells indicated that this inhibition is mediated by TR in a ligand-dependent fashion. Gel shift assays revealed that modulation of PPAR action by TR occurs through titration of limiting amounts of retinoid X receptor (RXR) required for PPAR activation. Increasing amounts of RXR partially reversed the inhibition in a reciprocal manner; PPAR also inhibited TR activation. Results with heterodimerization-deficient TR and PPAR mutants further confirmed that interaction between PPAR and TR signaling systems is indirect. These results suggest that a convergence of the peroxisome proliferator and T3 signaling pathways occurs through their common interaction with the heterodimeric partner RXR.

3-Hydroxyacyl CoA Dehydrogenases↗

Peptide conjugation to an in vitro-selected DNA ligand improves enzyme inhibition.

An in vitro selection technique was used to identify a specific high-affinity DNA ligand targeted to human neutrophil elastase (HNE). 1H NMR data and a comparative analysis of the selected sequences suggest that the DNA folds into a G-quartet structure with duplexed ends. The high-affinity binding DNA alone did not inhibit the enzymatic activity of HNE. The DNA was covalently attached to a tetrapeptide, N-methoxysuccinyl-Ala-Ala-Pro-Val, that is a weak competitive inhibitor of HNE. HNE was inhibited by this DNA-peptide conjugate nearly five orders of magnitude more effectively than by the peptide alone. These results demonstrate that in vitro-selected nucleic acids can be used as a vehicle for molecular delivery.

Amino Acid Sequence↗

The 92-kDa gelatinase B is expressed by advanced stage melanoma cells: suppression by somatic cell hybridization with early stage melanoma cells.

The production and local release of various proteolytic enzymes, either by tumor cells or tumor-associated stromal cells, is thought to facilitate the malignant behavior of solid tumors. Human cutaneous melanoma offers an excellent clinical model to study the possible contribution of such proteases to solid tumor progression because melanoma goes through a series of well defined stages in its pathogenesis; moreover, permanent cell lines have been established from these various stages. As a first step to analyzing the gelatinolytic enzymes in melanoma pathology, we examined cell lines derived from early stage primary melanomas in which patients were cured of their disease and compared the results to those obtained with cell lines established from advanced stage primary lesions or metastases (i.e., from patients who eventually succumbed to the disease). We found that 80% of cell lines examined from early stage lesions constitutively produced only the 72-kDa gelatinase A but never the 92-kDa gelatinase B. In contrast, the majority of advanced stage cell lines examined produced both the 72-kDa gelatinase A and the 92-kDa gelatinase B. Advanced stage cell lines that did not constitutively produce the 92-kDa gelatinase B could be induced to do so with transforming growth factor beta, interleukin 1 beta or 12-O-tetradecanoyl-phorbol-13-acetate. In total, 0 of 5 early stage cell lines constitutively expressed the 92-kDa gelatinase B, and only 2 of 5 could be induced to produce this activity. In contrast, all advanced stage cell lines that were evaluated either constitutively or inducibly produced the 92-kDa gelatinase B. To analyze the mechanism by which 92-kDa gelatinase B production is switched on in the advanced stage melanoma cell lines, somatic cell hybrids were constructed using an advanced stage melanoma cell line as one partner and either one of two early stage cell lines as the other. Constitutive production of the 92-kDa gelatinase B in such hybrids was lost and could not be induced in such hybrids. Coculture of the early and advanced stage cell lines failed to recapitulate what was seen after somatic hybridization, and zymographic analysis of lysates from hybrid cell lines demonstrated no 92-kDa gelatinase B activity. Reverse transcription-PCR analysis demonstrated that the loss of 92-kDa gelatinase B production occurred at the level of steady-state mRNA for the enzyme.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Immunogold localization of actin in the testis and exocrine pancreas: spatial relationship with tight junctional strands.

The fracture-label technique was used in conjunction with a monoclonal antibody to actin and the phospholipase A2-colloidal gold (PLA2-CG) method to examine the spatial distribution of actin filaments in relation to the three-dimensional arrangement of tight junctional strands in rat testes and exocrine pancreatic acinar cells. The intimate association of actin filaments with tight junctional strands in the pancreas and testis was also illustrated by a double-labeling experiment in which freeze-fractured pancreas or testis was labeled with monoclonal antibody-protein A-gold (30 nm gold size) followed by incubation with a PLA2-CG complex (11 nm gold size). Freeze-fracture-exposed tight junctional strands in both testicular and exocrine pancreatic cells labeled by PLA2-CG complex, indicated the presence of phospholipids in these cylindrical membranous structures. Immunolabeling of freeze-fractured testes with a monoclonal antibody to actin revealed a narrow band of gold particles juxtaposed to the cytoplasmic aspect of the protoplasmic membrane halves decorated with parallel linear arrays of cylindrical tight junctional strands. Many of the gold particles representing actin antigenic sites were in direct contact with the cross-fractured tight junctional strands. Fracture-label preparations of exocrine pancreas labeled with the monoclonal anti-actin antibody also exhibited a similar labeling pattern at the apex of acinars cells where the tight junction complex is located. Double-labeling experiments revealed the simultaneous labeling of actin and phospholipids in the same fracture-label preparations. Digestion of testicular and pancreatic tissue samples in a free PLA2 solution prior to labeling with the monoclonal antibody or PLA2-CG complex removed not only the gold labeling previously seen over the tight junctional strands but also reduced drastically the immunolabeling for actin that was previously seen associated with the tight junction complex. Taken together, results of the present study showed that actin filaments are structural components of the tight junction strands and are connected to the cytoplasmic aspect of the latter structures. The interaction between this particular cytoskeletal element and the tight junction may be through the binding of a special domain of the actin filament to the phospholipids that partially make up the tight junctional complex.

Actins↗

Proton NMR and structural features of a 24-nucleotide RNA hairpin.

The three-dimensional conformation of a 24-nucleotide variant of the RNA binding sequence for the coat protein of bacteriophage R17 has been analyzed using NMR, molecular dynamics, and energy minimization. The imino proton spectrum is consistent with base pairing requirements for coat protein binding known from biochemical studies. All 185 of the nonexchangeable protons were assigned using a variety of homonuclear 2D and 3D NMR methods. Measurements of nuclear Overhauser enhancements and two-quantum correlations were made at 500 MHz. New procedures were developed to characterize as many resonances as possible, including deconvolution and path analysis methods. An average of 21 distance constraints per residue were used in molecular dynamics calculations to obtain preliminary folded structures for residues 3-21. The unpaired A8 residue is stacked in the stem, and the entire region from G7 to C15 in the upper stem and loop appears to be flexible. Several of these residues have a large fraction of S-puckered ribose rings, rather than the N-forms characteristic of RNA duplexes. There is considerable variation in the low-energy loop conformations that satisfy the distance constraints at this preliminary level of refinement. The Shine-Dalgarno ribosome binding site is exposed, and only two apparently weak base pairs would have to break for the 16S ribosomal RNA to bind and the ribosome to initiate translation of the replicase gene. Although the loop form must be regarded as tentative, the known interaction sites with the coat protein are easily accessible from the major groove side of the loop.

Base Sequence↗

Differential effects of eicosapentaenoic acid on glycerolipid and apolipoprotein B metabolism in primary human hepatocytes compared to HepG2 cells and primary rat hepatocytes.

We compared the effects of eicosapentaenoic acid (EPA) and oleic acid (OA) on glycerolipid and apolipoprotein B (apoB) metabolism in primary human hepatocytes, HepG2 cells and primary rat hepatocytes. Cells were incubated for 1 to 5 h with 0.25 mM bovine serum albumin in the absence (control) or presence of 1 mM of EPA or OA. Synthesis and secretion of [3H]glycerolipid were determined after 1 h incubation with [3H]glycerol. Cellular and medium apoB abundance was semi-quantitatively estimated in human cells by Western blotting. The following observations were made. (1) Compared to control, OA induced a 7-fold increase in [3H]triacylglycerol (TG) synthesis in human hepatocytes and a 4-fold increase in rat hepatocytes and HepG2 cells. EPA enhanced [3H]TG synthesis about 2-fold in all three cell types although it stimulated [3H]diacylglycerol (DG) synthesis to an extent (i.e., 2.5- to 5-fold) similar to OA. (2) In contrast to OA, which stimulated VLDL-associated [3H]TG secretion 2.5- to 3-fold in the three cell types relative to control, EPA did not alter [3H]TG secretion in HepG2 and rat hepatocytes and suppressed [3H]TG secretion by 75% in primary human hepatocytes. (3) In primary human hepatocytes, both OA and EPA did not alter cellular apoB abundance but EPA decreased apoB secretion by 44% as compared to control. In contrast, both EPA and OA increased cellular and medium apoB abundance 2- to 2.5-fold in HepG2 cells, although medium apoB tended to be lower in EPA-treated cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cloning and characterization of two processed p53 pseudogenes from the rat genome.

We have cloned, by the polymerase chain reaction (PCR), two rat genomic fragments of 1.3 and 1.2 kb, both of which hybridize to a human p53 cDNA probe. Nucleotide sequencing revealed that they are two intronless rat p53 pseudogenes (designated as psi R53-1 and psi R53-2, respectively), representing a start-to-stop-codon-length copy of the processed transcript of the rat p53 gene. Further PCR analysis of DNA from rat organs (skin, kidney, etc.) of two different strains demonstrated that psi R53-1 and psi R53-2 were formed in the germ-line. As psi R53-1 and psi R53-2 share 85 and 83% homology with the rat p53 cDNA, it is thus estimated that psi R53-1 was created approx. 10 million years (Myr) ago and psi R53-2 arose 12 Myr ago. Moreover, GenBank scanning indicated that a 95-bp insert in psi R53-1, as compared with the cDNA, was 90% homologous with a sequence of mouse alternatively spliced p53 mRNA, where the spliced p53 mRNA contains an additional 96 nt derived from intron 10. Although the rat alternatively spliced p53 mRNA has so far not been described, our data suggest that these two processed pseudogenes may have been generated by integration of different mRNA intermediates into germ-line DNA.

Animals↗

Overexpression and characterization of the human peroxisomal acyl-CoA oxidase in insect cells.

Human liver peroxisomes contain two acyl-CoA oxidases, namely, palmitoyl-CoA oxidase and a branched chain acyl-CoA oxidase. The palmitoyl-CoA oxidase (ACOX) oxidizes the CoA esters of straight chain fatty acids and prostaglandins and donates electrons directly to molecular oxygen, thereby producing H2O2. The inducibility of this H2O2-generating ACOX in rat and mouse liver by peroxisome proliferators and the postulated role of the resulting oxidative stress in hepatocarcinogenesis generated interest in characterizing the structure and function of human ACOX. We have constructed a full-length cDNA encoding a 660-amino acid residue human ACOX and produced a catalytically active human ACOX protein at high levels in Spodoptera frugiperda (Sf9) insect cells using the baculovirus vector. Immunoblot analysis demonstrated that the full-length 72-kDa polypeptide (component A) was partially processed into its constituent 51-kDa (component B) and 21-kDa (component C) products, respectively. Recombinant protein (approximately 20 mg/l x 10(9) cells) was purified to homogeneity by a single-step procedure on a nickel-nitrilo-triacetic acid affinity column. Using the purified enzyme, Km and Vmax values for palmitoyl-CoA were found to be 10 microM and 1.4 units/mg of protein, respectively. The maximal activities for saturated fatty acids were observed with C12-18 substrates. The overexpressed human ACOX protein was identified in the cytoplasm of the insect cells by immunocytochemical staining. Individual expression of either the truncated ACOX 51-kDa (component B) or the 21-kDa (component C) revealed lack of enzyme activity, but co-infection of the insect cells with recombinant viruses expressing components B and C resulted in the formation of an enzymatically active heterodimeric B+C complex which could subsequently be inactivated by dissociating with detergent.

Acyl-CoA Oxidase↗

Inhibitory action of nicotinic antagonists on transmitter release at the neuromuscular junction of the rat.

The effects of two nicotinic antagonists, d-tubocurarine (TC) and hexamethonium (HEX) were tested on the rat diaphragm neuromuscular junction during train-of-six stimuli to determine if a second action of these antagonists on evoked release could be demonstrated, in addition to its known impact of blocking the autoreceptor pathway. To minimize the autoreceptor pathway, the preparations were examined under low transmitter release conditions. It was observed that both compounds significantly depressed the end-plate potential amplitudes more than the miniature end-plate potential amplitudes, while also significantly depressing quantal release output. This inhibitory action is contrary to what is observed when transmitter release is high, where feedback regulation via the autoreceptors serves a prominent role. It is concluded that this depressive action on transmitter output contributes to onset of tetanic fade and that when higher concentrations of these antagonists are used this inhibitory action of TC and HEX may override autoreceptor feedback regulation.

Animals↗

Effect of point mutations on the kinetics and the inhibition of human immunodeficiency virus type 1 protease: relationship to drug resistance.

Mutations of human immunodeficiency virus type 1 (HIV-1) protease at four positions, Val82, Asp30, Gly48, and Lys45 were analyzed for the resulting effects on kinetics and inhibition. In these mutants, Val82 was substituted separately by Asn, Glu, Ala, Ser, Asp, and Gln; Asp30 was individually substituted by Phe or Trp; Gly48 by His, Asp, and Tyr, respectively; and Lys45 by Glu. By examination of the inhibition of a single inhibitor, the differences in Ki values between the native and mutant enzymes can range from very large to insignificant even for the mutants with substitutions at the same position. By examination of a single mutant enzyme, the same broad range of Ki changes was observed for a group of inhibitors: Thus, how much the inhibition changes from the wild-type enzyme to a mutant is dependent on both the mutation and the inhibitor. The examination of Ki changes of inhibitors with closely related structures binding to Val82 mutants also reveals that the change of inhibition involves subsites in which Val82 is not in direct contact, indicating a considerable flexibility of the conformation of HIV protease. For the catalytic activities of the mutants, the kcat and Km values of many Val82 mutants and a Lys45 mutant are comparable to the native enzyme. Surprisingly, Gly48 mutations produce enzymes with catalytic efficiency superior to that of the wild-type enzyme by as much as 10-fold. Modeling of the structure of the mutants suggests that the high catalytic efficiency of some substrates is related to an increase of rigidity of the flap region of the mutants. The examination of the relative changes of inhibition and catalysis of mutants suggests that some of the Val82 and Gly48 mutants are potential resistance mutants. However, the resistance is specific with respect to individual inhibitors.

Amino Acid Sequence↗

Human RPB5, a subunit shared by eukaryotic nuclear RNA polymerases, binds human hepatitis B virus X protein and may play a role in X transactivation.

The X gene of human hepatitis B virus encodes the polypeptide HBx which transactivates viral and host genes through a variety of cis-acting enhancer elements present in RNA polymerases I, II and III promoters. To better understand the mechanism of X transactivation, we cloned cDNAs of proteins that bind HBx. Here we demonstrate that one of these cDNAs is a full-length cDNA of human RPB5, a subunit shared by RNA polymerases. The HBx transactivation domain and the central region of human RPB5 were necessary for the specific binding of the two proteins as shown by: (i) in vitro assays using deletion mutants of fusion proteins; (ii) in vivo assays which detect associated proteins by co-immunoprecipitation of the non-fused proteins from transfected HepG2 cells. Over-expressed HBx seemed to associate with assembled forms of endogenous human RPB5 in HBx-transfected cells, since the endogenous RPB5 co-immunoprecipitated with HBx. The HBx binding region of human RPB5 by itself stimulated chloramphenicol acetyltransferase activities from several different reporters having X-responsive element(s). Our results support the idea that the interaction of HBx and human RPB5 can facilitate HBx transactivation and that human RPB5 has a domain which can communicate with transcriptional regulators.

Amino Acid Sequence↗

Interactive effects of alcohol and diabetes during pregnancy on the rat fetus.

To determine the effect of maternal diabetes and alcohol intake, separately and in combination, on fetal growth and development, pregnant rats were divided into four groups: diabetic (D), diabetic plus alcohol (DA), control (C), and control plus alcohol (CA). Diabetes was induced by administration of streptozotocin before mating and alcohol was administered by gavage (2 g/kg body weight/day) on days 6-11 of gestation. Both diabetic groups (D and DA) had significantly lower weight gain during pregnancy compared to the controls (C and CA), despite the fact that the former consumed more food and water. Alcohol treatment resulted in reduced water and food intake and lower weight gain in the diabetic rats (DA), but not in the non-diabetic rats (CA), compared to their respective controls (D and C). On day 21 of gestation fetal body weights were significantly less and placental weights were significantly greater in the diabetic groups (D and DA) compared with the non-diabetic groups (C and CA). Differences in fetal and placental weights between rats exposed and not exposed to alcohol (C vs. CA and D vs. DA) were not significant. The number of fetuses with external malformations was significantly greater in the litters of alcohol exposed diabetic (DA) than non-alcohol exposed (D) animals. No external or skeletal malformations were observed in fetuses of non-diabetic rats regardless of whether or not they received alcohol (C or CA). The skeletal development of fetuses of diabetic rats, judged by the number and size of ossification centers on day 21 of gestation, was retarded when compared with fetuses of non-diabetic rats. Alcohol further retarded skeletal development of fetuses of diabetic animals (DA vs. D), but not of fetuses of non-diabetic rats (CA vs. C). It is concluded that maternal alcohol administration potentiates the effects of maternal diabetes on the incidence of fetal malformations and the retardation of skeletal development.

Abnormalities, Drug-Induced↗