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Biomedical subjects

Y Yang

Publications and source records attributed to Y Yang.

At least 379 records · Page 21Linked to original sources

Characterization of the mouse and human PRSS17 genes, their relationship to other serine proteases, and the expression of PRSS17 in developing mouse incisors.

The human PRSS17 (serine protease 17) gene, which is located on chromosome 19q in a cluster of genes encoding serine proteases, has been variously designated enamel matrix serine proteinase 1 (EMSP1), prostase, KLK4, and KLK-L1. We have cloned and characterized the mouse and human PRSS17 genes. Both have six exons and five introns. The mouse PRSS17 gene sequence is 10134bp; the human sequence is 7115bp. Computer analysis of the mouse PRSS17 gene sequence upstream of the translation initiation codon identified two potential transcription initiation sites, at nucleotides 2878 and 2336. The first nucleotide of the reported mouse PRSS17 cDNA sequence corresponds to position 2352 on the gene, only 16 bases downstream from one of the putative transcription initiation sites. Repetitive DNA sequences from the MSR1 family are found in both the mouse and human PRSS17 genes. Additionally, the human PRSS17 gene contains Tigger2, MER8, and Alu repetitive sequences. Phylogenetic analyses of human and rodent proteases suggest that the PRSS17 protein is not a member of the kallikrein family of serine proteases but that the PRSS17 gene may have originated prior to the divergence of the kallikrein and trypsin families of proteases. To better characterize the timing of PRSS17 expression in developing teeth, we performed in-situ hybridization on postnatal day 3 developing mouse mandibular incisors. PRSS17 mRNA was not detected in secretory stage ameloblasts but could be detected in odontoblasts, while transition-stage and maturation-stage ameloblasts were strongly positive. This pattern supports a role for the PRSS17 protein in the degradation of enamel proteins.

Amino Acid Sequence↗

Three novel TBX5 mutations in Chinese patients with Holt-Oram syndrome.

Holt-Oram syndrome (HOS) is an autosomal dominant syndrome that comprises upper limb and cardiac defects. The gene responsible for HOS, TBX5, was isolated and many mutations have been identified in HOS patients. We analyzed 11 Chinese HOS patients (7 from three families and 4 sporadic cases) for TBX5 mutation by single strand conformation polymorphisms (SSCPs). Three SSCP changes were detected in two of the three familial cases and one sporadic case. Sequence analysis identified three novel, heterozygous mutations in TBX5: a frameshift mutation caused by one base deletion [C416del] in one family, a mis-sense mutation (Gln49Lys) induced by a base substitution (C145A) in another family, and the other mis-sense mutation (Ile54Thr) by T161C in one sporadic case. The patients with the frameshift mutations had severer clinical manifestations that involved aplasia/hypoplasia of the arm and thumbs, while those with the mis-sense mutations presented with milder anomalies such as absent or hypoplastic thumbs but without arm abnormalities. These observations may support a genotype-phenotype correlation in HOS patients with TBX5 mutation.

Amino Acid Substitution↗

Pre- and postsynaptic actions of serotonin on rat suprachiasmatic nucleus neurons.

Serotoninergic transmission is implicated in the photic and non-photic regulation of circadian rhythms. 5-HT (1-100 microM), carboxamidotryptamine (5-CT 0.1-10 microM) and (+)-8-hydroxy-dipropylaminotetraline (8-OH-DPAT, 1-30 microM) dose-dependently activated an outward current (5-100 pA) in 30% of neurons voltage-clamped at -60 mV in the suprachiasmatic nucleus (SCN) in vitro slice. EC(50) values were 7.0 microM for 5-HT and 0.2 microM for 5-CT. Serotonin-induced outward current was associated with an increase in input conductance, and the current was blocked by Ba(2+) (1 mM). The amplitude of the current was enhanced by depolarization, reduced by hyperpolarization, and reversed its polarity during a hyperpolarization beyond the potassium equilibrium potential. Mean amplitudes of the 5-HT outward current changed with time of the subjective circadian day. The value near CT2 (23.8 pA) was about 4 times greater than that around CT14 (6.7 pA). Cells that responded with an outward current showed four types of morphology: monopolar, simple bipolar, curly bipolar and radial shaped; they were localized in all parts of the SCN. The EPSC evoked by retino-hypothalamic-tract (RHT) stimulation was inhibited 26% but the inward current induced by exogenously applied glutamate or NMDA was not affected by serotonin agonists. Focal stimulation-induced and spontaneous IPSC but not the exogenous GABA-induced outward current were inhibited by 5-HT agonists in a subpopulation of cells. In conclusion, 5-HT regulates SCN neurons by both pre- and post-synaptic inhibitory mechanisms; the latter may play a key role in modulating SCN circadian rhythm by activation of 5-HT receptors and opening of a potassium channel.

Animals↗

[Determination of trichlosan in cosmeticy by high-performance liquid chromatography].

A method was developed for the determination of an antiseptic-trichlosan in cosmeticy by HPLC followed by diode-array detection. The chromatographic separation was performed on C18 column with a mobile phase of acetonitrile-water(60: 40, V/V) which was adjusted to pH3.0 by glacialacetic acid. The UV wavelength was 280 nm. Retention time as well as UV spectrum were used for the qualitation of trichlosan, and peak area or peak height for quantitation. The method showed good accuracy and precision average recovery of trichlosan from different cosmetics was between 91.86% and 98.83%. Relative standard deviation was between 0.72% and 2.75%.

Anti-Infective Agents, Local↗

Survival and histological evaluation of therapeutic window of post-ischemia treatment with magnesium sulfate in embolic stroke model of rat.

The neuroprotective window of magnesium for up to 8 h after ischemic insult was evaluated in a clinically relevant model of focal cerebral ischemia subjected to embolization of the right middle cerebral artery (MCA) with an autologous thrombus. The animals were treated with either vehicle or 5% magnesium sulfate (90 mg/kg) intravenously at 2, or 6, or 8 h after ischemic insult. Survival rate significantly increased only in animals treated with magnesium sulfate in treatment groups at 2 h after MCA embolization but improvement in neurological outcome was observed in all medicated groups. Compared with animals in control group, post-ischemia treatment with magnesium sulfate significantly reduced brain infarct volume (P<0.01) except the 8 h group. These data indicate that the therapeutic window for neuroprotection of magnesium can be extended up to 6 h in the focal cerebral ischemia model of this study. The long window of opportunity for effective dosing may be explained with the proposed multiple mechanisms of actions for magnesium.

Animals↗

Regulation of tissue factor expression in human microvascular endothelial cells by nitric oxide.

BACKGROUND: Tissue factor (TF) is a critical determinant of thrombin generation in normal hemostasis and in atherothrombotic disease. Nitric oxide has both antithrombotic and antiatherosclerotic actions in the vasculature, yet its role in the regulation of TF expression has not been examined. METHODS AND RESULTS: To study the effect of endogenous endothelium-derived nitric oxide on TF expression and activity, we induced TF in human microvascular endothelial cells with lipopolysaccharide or interleukin-1beta and observed a dose- and time-dependent increase in TF activity and expression by Northern and Western blotting. L-Arginine, the principal substrate for nitric oxide synthases, added to the media suppressed the induction of TF activity significantly (by 66% for lipopolysaccharide induction and by 59% for interleukin-1beta induction) at 24 hours. These changes in activity were accompanied by correlative changes in TF protein and steady-state mRNA. D-Arginine had no effect, and inhibition of endogenous nitric oxide production failed to increase TF expression. CONCLUSIONS: These data suggest that enhanced production of endothelium-derived nitric oxide reduces endotoxin- and cytokine-induced expression of TF and, thereby, the prothrombotic phenotype of the endothelial cell.

Arginine↗

Ubiquitin protein ligase activity of IAPs and their degradation in proteasomes in response to apoptotic stimuli.

To determine why proteasome inhibitors prevent thymocyte death, we examined whether proteasomes degrade anti-apoptotic molecules in cells induced to undergo apoptosis. The c-IAP1 and XIAP inhibitors of apoptosis were selectively lost in glucocorticoid- or etoposide-treated thymocytes in a proteasome-dependent manner before death. IAPs catalyzed their own ubiquitination in vitro, an activity requiring the RING domain. Overexpressed wild-type c-IAP1, but not a RING domain mutant, was spontaneously ubiquitinated and degraded, and stably expressed XIAP lacking the RING domain was relatively resistant to apoptosis-induced degradation and, correspondingly, more effective at preventing apoptosis than wild-type XIAP. Autoubiquitination and degradation of IAPs may be a key event in the apoptotic program.

Animals↗

[Effect of peritoneal dialysis in elderly patients].

OBJECTIVE: To evaluate the effects of peritoneal dialysis in elderly patients. METHOD: One hundred and fifty-five patients were divided into two groups(elder-aged group > or = 60 years, 59 cases; medium aged group < 60 years, 96 cases). The changes of blood pressure, Hb and renal function between the two groups were compared after six months of peritoneal dialysis. The data were processed by SPSS 7.0 software. RESULTS: Primary disease analysis showed 47.4% hypertension and 28.8% diabetes in elder-aged group and 72.9% chronic glomerulonephritis in medium-aged group. The changes of Bp and Hb was not significant in both groups after dialysis. Renal function was improved in both groups. Concentration of total protein and albumin was decreased in elder-aged group and remained nearly unchanged in medium-aged group after dialysis. The survival rates of the two groups had no difference. CONCLUSION: As a simple, safe and effective method, peritoneal dialysis is especially suitable to elderly patients for continuous treatment.

Age Factors↗

Surface and interface beta-chain residues synergistically affect hemoglobin assembly.

Homo- and heterotetramer formations of beta112 variants (beta(112Cys-->Asp), beta(112Cys-->Ser), beta(112Cys-->Thr), and beta(112Cys-->Val)) of hemoglobin were characterized in the presence and absence of beta(16Gly-->Asp) in vitro. In all cases an alteration in overall surface charge (beta(16Gly-->Asp)) decreased the beta(4) homotetramer stability (association constants as determined by gel-permeation chromatography) albeit to differing extents. In contrast, competition experiments of hemoglobin subunits showed that heterotetramer formation was promoted by this substitution. Order of increase in tetramer formation by the additional negative surface charge in the beta112 variants was as follows: Hb betaG16D, C112D > Hb betaG16D, C112S > Hb betaG16D > Hb G16D, C112T > Hb betaG16D, C112V. Thus, the overall surface charge of the beta chain and its contribution to electrostatic interaction in these instances appear to act in synergy with alpha(1)beta(1) interface residues to affect the assembly of hemoglobin molecules.

Amino Acid Substitution↗

An epidermal plakin that integrates actin and microtubule networks at cellular junctions.

Plakins are cytoskeletal linker proteins initially thought to interact exclusively with intermediate filaments (IFs), but recently were found to associate additionally with actin and microtubule networks. Here, we report on ACF7, a mammalian orthologue of the Drosophila kakapo plakin genetically involved in epidermal-muscle adhesion and neuromuscular junctions. While ACF7/kakapo is divergent from other plakins in its IF-binding domain, it has at least one actin (K(d) = 0.35 microM) and one microtubule (K(d) approximately 6 microM) binding domain. Similar to its fly counterpart, ACF7 is expressed in the epidermis. In well spread epidermal keratinocytes, ACF7 discontinuously decorates the cytoskeleton at the cell periphery, including microtubules (MTs) and actin filaments (AFs) that are aligned in parallel converging at focal contacts. Upon calcium induction of intercellular adhesion, ACF7 and the cytoskeleton reorganize at cell-cell borders but with different kinetics from adherens junctions and desmosomes. Treatments with cytoskeletal depolymerizing drugs reveal that ACF7's cytoskeletal association is dependent upon the microtubule network, but ACF7 also appears to stabilize actin at sites where microtubules and microfilaments meet. We posit that ACF7 may function in microtubule dynamics to facilitate actin-microtubule interactions at the cell periphery and to couple the microtubule network to cellular junctions. These attributes provide a clear explanation for the kakapo mutant phenotype in flies.

Actin Cytoskeleton↗

Purification, identification, and characterization of an osmotic response element binding protein.

Kidney cells, especially the epithelial cells lining the collecting tubules in the inner medulla, are constantly exposed to concentrated urine. They are protected from the osmotic effect of high levels of sodium ion and urea by accumulating compatible osmolytes such as sorbitol, betaine, and myo-inositol. These osmolytes are involved in maintaining cell volume and electrolyte contents because they do not perturb the protein structure and function over a wide range of concentrations. Sorbitol is produced via the reduction of glucose by aldose reductase (AR), while betaine and myo-inositol are transported into the cells through specific transporters. Under hyperosmotic stress, transcriptions of genes encoding these proteins are highly induced. The induction of transcription was found to be mediated through the osmotic response elements (OREs) located in the 5' flanking sequences of these genes. We had earlier identified the OREs in human AR gene. In this study we purified and identified the osmotic response element binding protein (OREBP). OREBP is a transcription factor of approximately 200 kDa in size, characterized by a Rel-like DNA binding domain and a glutamine-rich transactivation domain. Dominant negative OREBP significantly diminished hyperosmotic AR gene induction. Immunohistochemical analysis showed that this transcription factor is rapidly translocated into the nucleus upon hyperosmotic stress.

Aldehyde Reductase↗

Quantitative effects of functional bundle branch block in patients with atrioventricular reentrant tachycardia.

Changes in the retrograde conduction time (ventriculoatrial [VA]) interval during functional bundle branch block (BBB) have been used to separate septal from free wall accessory pathways (APs), but different values of the VA interval prolongation (deltaVA) have been described in different reports. A total of 95 patients with single nondecremental APs who developed BBB during atrioventricular reentrant tachycardia were studied. Free wall APs were found in 60 patients, and 35 had septal APs. For patients with free wall APs, complete and incomplete BBB ipsilateral to the atrial insertion site of APs were observed in 39 of 60 patients (65%) and 31 of 60 patients (52%), respectively. For patients who had both complete (QRS > or = 120 ms) and incomplete (QRS <120 ms) BBB during atrioventricular reentrant tachycardia, deltaVA for patients with complete BBB was significantly greater than in those with incomplete BBB, 59 +/- 19 ms versus 30 +/- 11 ms, p <0.001. For patients with septal APs and complete and incomplete BBB during tachycardia, the mean deltaVA for those with complete BBB was 31 +/- 20 ms and was significantly longer than in patients with incomplete BBB (14 +/- 6 ms), p <0.001. There was no significant difference in deltaVA between those with free wall APs and incomplete BBB compared with those with septal APs and complete BBB. The criteria of QRS > or = 120 ms associated with deltaVA > or =40 ms served to best separate free wall from septal APs with a sensitivity of 88% and a specificity of 89%. Left anterior fascicular block was associated with marked lengthening of deltaVA for those with left free wall APs, whereas a left posterior fascicular block pattern resulted in a marked increase in the deltaVA for patients with posteroseptal APs. In the absence of fascicular block patterns, a deltaVA > or =40 ms provides strong evidence of a free wall AP, with a sensitivity of 95% and a specificity of 100%. The left posterior fascicle appears to provide predominant innervation of the posterior septum.

Adolescent↗

Ligand-independent down-regulation of IFN-gamma receptor 1 following TCR engagement.

Activated T lymphocytes modulate the level of many molecules on their cell surface, including cytokine receptors. This regulation of cytokine receptor expression affects the ability of T cells to respond to cytokines and thus influences the outcome of an immune response. The receptor for IFN-gamma, a proinflammatory cytokine, consists of two copies of a ligand binding chain (IFN-gammaR1) as well as two copies of a second chain (IFN-gammaR2) required for signal transduction. The expression of IFN-gammaR2 is down-regulated at the mRNA level on CD4+ T cells when they differentiate into the Th1, but not the Th2, phenotype. This down-regulation has been demonstrated to depend on the ligand, IFN-gamma, which is produced by Th1 but not Th2 T cells. The regulation of the cell-surface expression of IFN-gamma receptors during primary T cell activation has not been reported. Naive and differentiated T lymphocytes express IFN-gammaR1 at the mRNA level and as a cell-surface protein. In this study, we present evidence that cell-surface expression of IFN-gammaR1 is transiently down-regulated on the surface of naive CD4+ T cells shortly after TCR engagement. Furthermore, this down-regulation is not mediated by the ligand, IFN-gamma, but results from TCR engagement and can be inhibited by cyclosporin A.

Animals↗

Interactions between regulatory proteins that bind to the nicotinic receptor beta4 subunit gene promoter.

The genes encoding the alpha3, alpha5 and beta4 subunits of nicotinic acetylcholine receptors are tightly clustered within the genome. As these three subunits constitute the predominant acetylcholine receptor subtype expressed in the peripheral nervous system, their genomic proximity suggests a regulatory mechanism ensuring their coordinate expression. We previously identified two transcriptional regulatory elements within the beta4 promoter. One of these elements, a CT box, interacts with the regulatory factors heterogeneous nuclear ribonucleoprotein K and Puralpha. Another element, a CA box, interacts with Sp1 and Sp3. The binding site for a fifth factor, Sox10, overlaps the CT and CA boxes. As the CT and CA boxes are adjacent, we postulated that the proteins that bind to the elements interact. Here we report that the CT box-binding factors interact with each other as do the CA box-binding factors. However, there are no direct associations between the two pairs of proteins. Interestingly though, Sox10 directly interacts with all four proteins, suggesting a central role in beta4 gene expression for this member of the Sox family of regulatory factors.

Cyclic AMP Response Element-Binding Protein↗

[Kinetics of plasma membrane and mitochondrial alterations in HL-60 cells undergoing apoptosis].

In the present study, VP16, an inhibitor of topoisomerase II, and NaN3, a chemical toxic substance, were used to induce apoptosis and necrosis of HL-60 cells, respectively. Cells were examined by transmission electron microscopy and by fluorescence microscopy after staining with Hoechst 33258 at 0, 2, 4, 8, 16 and 24 h of culture. Alterations of fluorescent intensity produced by FDA, Rh 123 and PI were measured by flow cytometry, which reflects sequential changes on plasma membrane permeability and the potential of mitochondrial membrane. The results indicated that the nuclear morphologic alteration of cells treated with VP-16 began at 4 hour of culture and the cells with condensed nucleus culminated at 8 h of culture and then reduced with no drop in cell counts, while the percentage of cells with fragmented nuclei reached its maximum at 24 h of culture accounting for some 80%. The potential of mitochondrial membrane of of apoptotic cells decreased gradually from 8 h of culture and showed obvious decline at 16 h of culture. In necrotic cells, the potential decreased by 50% at 4 h of culture which indicates an earlier and more rapid decline than that in apoptotic cells. Alteration of plasma membrane permeability appeared at 8 h of culture and showed a steady increase over time. It was concluded that plasma membrane permeability and mitochondrial membrane potential could reflect the development and degree of apoptosis, and the combination of these two criteria with nuclear morphology revealed by staining with Hoechst 33258 would be a simple and reliable assay for apoptosis and its progression.

Apoptosis↗

On-line coupling of subcritical water extraction with high-performance liquid chromatography via solid-phase trapping.

Although ambient water is very polar and cannot dissolve many organic species, water at elevated temperatures behaves like a polar organic solvent. Thus, subcritical water has been proven to be an effective extraction fluid for several classes of organic compounds. While solvent trapping was used to collect the extracted analytes in most of previous subcritical water extractions, sorbent trapping has also been developed for subcritical water extraction. In this study, an on-line system for subcritical water extraction and high-performance liquid chromatography (HPLC) was built and tested. A sorbent trap was used as the interface between subcritical water extraction and HPLC. Several shut-off valves have been utilized to switch the system from one mode to another (e.g., from the extraction mode to HPLC mode). The coupling technique of subcritical water extraction and HPLC eliminates the liquid-liquid extraction used in solvent trapping subcritical water extraction and provides higher sensitivity. Compared to the off-line system reported in an earlier work, the operation of this on-line system is even easier. Some peak broadening occurred after the coupling the water extraction with HPLC for the analytes studied. The performance of this on-line system was evaluated by the extraction and determination of caffeine, nitrotoluenes, polychlorinated biphenyls, chlorophenols and anilines.

Aniline Compounds↗

Hematopoietic stem cell quiescence maintained by p21cip1/waf1.

Relative quiescence is a defining characteristic of hematopoietic stem cells, while their progeny have dramatic proliferative ability and inexorably move toward terminal differentiation. The quiescence of stem cells has been conjectured to be of critical biologic importance in protecting the stem cell compartment, which we directly assessed using mice engineered to be deficient in the G1 checkpoint regulator, cyclin-dependent kinase inhibitor, p21cip1/waf1 (p21). In the absence of p21, hematopoietic stem cell proliferation and absolute number were increased under normal homeostatic conditions. Exposing the animals to cell cycle-specific myelotoxic injury resulted in premature death due to hematopoietic cell depletion. Further, self-renewal of primitive cells was impaired in serially transplanted bone marrow from p21-/- mice, leading to hematopoietic failure. Therefore, p21 is the molecular switch governing the entry of stem cells into the cell cycle, and in its absence, increased cell cycling leads to stem cell exhaustion. Under conditions of stress, restricted cell cycling is crucial to prevent premature stem cell depletion and hematopoietic death.

Animals↗