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Biomedical subjects

Q Zhou

Publications and source records attributed to Q Zhou.

At least 145 records · Page 8Linked to original sources

An excess concentration of oxysterols in the plasma is cytotoxic to cultured endothelial cells.

To test if there is an excess concentration of oxysterols in the plasma of the patients with cardiovascular disease, we analyzed the oxysterol content in the plasma from 105 cardiac catheterized patients with angina and 80+/-8% stenosis in their coronary arteries. The result showed that the plasma contained a significantly higher concentration of oxysterols than did plasma from 105 age- and sex-matched, non-catheterized and angina-free controls (P<0.05). We used endothelial cells (ECs) cultured in medium containing either [3H]thymidine, [3H]mevalonolactone or 45Ca(2+) to determine how the plasma from the patients influences cell growth and function. We found that less [3H]thymidine (P<0.05), less [3H]mevalonolactone (P<0.05) and more 45Ca(2+) (P<0.001) was incorporated into ECs cultured in the plasma from 36 patients with 83+/-4% stenosis than from the 36 controls. When synthetic 7beta-hydroxycholesterol, cholesterol 5beta,6beta-epoxide, cholesterol 5alpha,6alpha-epoxide and 7-ketocholesterol were added to the plasma from the controls, the influx of 45Ca(2+) into ECs then equaled that in the plasma of patients. The enhanced incorporation of 45Ca(2+) into the ECs cultured in the plasma both from the patients and from controls with added synthetic oxysterols substantiates in vitro the hypothesis that oxysterols increase the influx of calcium into cells. These data indicated that an excess of oxysterols in the plasma of the patients was cytotoxic to the cultured cells.

Adult↗

Identification of a novel family of oligodendrocyte lineage-specific basic helix-loop-helix transcription factors.

Basic helix-loop-helix (bHLH) transcription factors have been identified for neurons and their precursors but not for glial cells. We have identified two bHLH factors, Oligo1 and Oligo2, that are specifically expressed in zones of neuroepithelium from which oligodendrocyte precursors emerge, as well as in the precursors themselves. Expression of Oligo2 in the spinal cord precedes that of platelet-derived growth factor receptor alpha (PDGFRalpha), the earliest known marker of oligodendrocyte precursors, by several days. Ectopic expression of Oligo2 in vivo causes ectopic expression of Sox10, an HMG-box transcription factor expressed in oligodendrocyte and other glial precursors. These data identify Oligo genes as the earliest known markers of oligodendrocyte lineage determination and suggest they play a causal role in this process.

Animals↗

Expression patterns of FHL/SLIM family members suggest important functional roles in skeletal muscle and cardiovascular system.

LIM domain containing proteins play critical roles in animal development and cellular differentiation. Here, we describe the cloning and expression patterns of three members of the four and a half LIM domain-only protein family, FHL1, 2, and 3, from mouse. A comparison of embryonic expression patterns of these three highly-related genes indicates that they are expressed in an overlapping pattern in the developing cardiovascular system, and skeletal muscle. In adult tissues, the three genes are expressed in a predominant and overlapping manner in cardiac and skeletal muscle. Of the three genes, FHL2 appears to have the most restricted expression pattern during development, in heart, blood vessels, and skeletal muscle. Expression in heart is highest in cardiac septa and in the region adjacent to the atrio-ventricular ring, suggesting a potential role in septation or conduction system development. In the heart, FHL1expression was observed strongly in developing outflow tract, and to a lesser extent in myocardium. FHL3 displays low and ubiquitous expression during mouse development. Cardiac ventricular expression of FHL1, but not FHL2 or FHL3, was upregulated in two mouse models of cardiac hypertrophic and dilated cardiomyopathy. Taken together, these data indicate the potential importance of this FHL family in the development and maintenance of the cardiovascular system and striated muscle, and suggest that FHL1 may play a role in the development of heart disease.

Amino Acid Sequence↗

Cyclin D1 overexpression in a model of human breast premalignancy: preferential stimulation of anchorage-independent but not anchorage-dependent growth is associated with increased cdk2 activity.

Cyclin D1 is frequently overexpressed in human breast ductal carcinoma in situ (DCIS) specimens, which confer a high risk for the development of infiltrating ductal carcinoma. If causally involved in the genesis of human breast malignancy, cyclin D1 may represent an interesting target for chemopreventive approaches, as it sits at the junction of many growth factor and hormonal pathways. We have used the MCF-10A human breast cell line, derived from a mastectomy containing a low risk premalignant lesion, as a model system. Three cyclin D1 transfectants exhibited physiologically relevant levels of transgene overexpression, but no coordinate overexpression of other cell cycle related genes. Proliferation assays, flow cytometry, and cdk enzymatic assays of anchorage-dependent proliferation indicated only a minimal and transient effect of cyclin D1. In contrast, cyclin D1 overexpression significantly stimulated anchorage-independent colonization in soft agar or methylcellulose, accompanied by greater Gl-S progression. The cdk4 activity of the control- and cyclin D1 transfectants in colonization assays was comparable, but the cdk2 activity was higher in the latter. Injection of control- and cyclin D1 transfected MCF-10A cells in matrigel into nude mice failed to produce tumors within 1.5 years. The data suggest that cyclin D1 overexpression is an early feature of breast neoplastic progression, and can contribute to cancer development through the promotion of colonization.

Animals↗

Contortrostatin, a dimeric disintegrin from Agkistrodon contortrix contortrix, inhibits breast cancer progression.

We report the results of a multidisciplinary study on the inhibitory effect of a snake venom disintegrin, contortrostatin, a 13.5 kDa homodimeric protein isolated from Agkistrodon contortrix contortrix (southern copperhead) venom, on breast cancer progression. We demonstrate that contortrostatin binds to integrins and blocks the adhesion of human breast cancer cells (MDA-MB-435) to extracellular matrix (ECM) proteins including fibronectin and vitronectin, but it has no effect on adhesion of the cells to laminin and Matrigel. Contortrostatin also prevents invasion of MDA-MB-435 cells through an artificial Matrigel basement membrane. Daily local injection of contortrostatin (5 microg per mouse per day) into MDA-MB-435 tumor masses in an orthotopic xenograft nude mouse model inhibits growth of the tumor by 74% (p = 0.0164). More importantly, it reduces the number of pulmonary macro-metastasis of the breast cancer by 68% (p < 0.001), and micro-metastasis by 62.4% (p < 0.001). Contortrostatin is not cytotoxic to cancer cells, and does not inhibit proliferation of the breast cancer cells in vitro. However, contortrostatin inhibits angiogenesis induced by the breast cancer, as shown by immunohistochemical quantitation of the vascular endothelial cells in tumor tissue removed from the nude mice. We have identified alpha(v)beta3, an important integrin mediating cell motility and tumor invasion, as one of the binding sites of contortrostatin on MDA-MB-435 cells. We conclude that contortrostatin blocks alpha(v)beta3, and perhaps other integrins, and thus inhibits in vivo progression.

Agkistrodon↗

A simplified method for the reconstruction of fully competent mouse zygotes from adult somatic donor nuclei.

Until now, full-term development of mouse embryos reconstructed from somatic nuclei has been convincingly achieved only when a piezoimpact pipette drive unit is used for the injection of a donor nucleus into an enucleated recipient oocyte. Here we describe a simplified method for mouse cloning that requires neither electrofusion nor a piezo device. Efficient rates of enucleation can be achieved without staining the chromosomes of the recipient oocyte and high survival rates are obtained after direct injection of the donor nucleus. Although a low proportion of reconstructed embryos could implant after their transfer into the oviducts of foster mothers (less than 5%), we show that at least some of them can develop into normal young.

Animals↗

Relief of two built-In autoinhibitory mechanisms in P-TEFb is required for assembly of a multicomponent transcription elongation complex at the human immunodeficiency virus type 1 promoter.

Tat stimulation of human immunodeficiency virus type 1 (HIV-1) transcription requires Tat-dependent recruitment of human positive transcription elongation factor b (P-TEFb) to the HIV-1 promoter and the formation on the trans-acting response element (TAR) RNA of a P-TEFb-Tat-TAR ternary complex. We show here that the P-TEFb heterodimer of Cdk9-cyclin T1 is intrinsically incapable of forming a stable complex with Tat and TAR due to two built-in autoinhibitory mechanisms in P-TEFb. Both mechanisms exert little effect on the P-TEFb-Tat interaction but prevent the P-TEFb-Tat complex from binding to TAR RNA. The first autoinhibition arises from the unphosphorylated state of Cdk9, which establishes a P-TEFb conformation unfavorable for TAR recognition. Autophosphorylation of Cdk9 overcomes this inhibition by inducing conformational changes in P-TEFb, thereby exposing a region in cyclin T1 for possible TAR binding. An intramolecular interaction between the N- and C-terminal regions of cyclin T1 sterically blocks the P-TEFb-TAR interaction and constitutes the second autoinhibitory mechanism. This inhibition is relieved by the binding of the C-terminal region of cyclin T1 to the transcription elongation factor Tat-SF1 and perhaps other cellular factors. Upon release from the intramolecular interaction, the C-terminal region also interacts with RNA polymerase II and is required for HIV-1 transcription, suggesting its role in bridging the P-TEFb-Tat-TAR complex and the basal elongation apparatus. These data reveal novel control mechanisms for the assembly of a multicomponent transcription elongation complex at the HIV-1 promoter.

Cyclin-Dependent Kinase 9↗

Different effects of abnormal activation and myocardial disease on left ventricular ejection and filling times.

BACKGROUND: Ventricular activation is often abnormal in patients with dilated cardiomyopathy, but its specific effects on timing remain undetermined. OBJECTIVE: To investigate the use of the ratio of the sum of left ventricular ejection and filling times to the total RR interval (Z ratio) to dissociate the effects of abnormal activation from those of cavity dilatation. METHODS: Subjects were 20 normal individuals, 11 patients with isolated left bundle branch block (LBBB, QRS duration > 120 ms), 17 with dilated cardiomyopathy and normal activation, and 23 with dilated cardiomyopathy and LBBB. An additional 30 patients (nine with normal ventricular systolic function and 21 with dilated cardiomyopathy) were studied before and after right ventricular pacing. Left ventricular ejection and filling times were measured by pulsed wave Doppler and cavity size by M mode echocardiography. RESULTS: Z ratio was independent of RR interval in all groups. Mean (SD) Z ratio was 82 (10)% for normal subjects, 66 (10)% for isolated LBBB (p < 0.01 v normal), 77 (7)% for dilated cardiomyopathy without LBBB (NS v normal), and 61 (7)% for dilated cardiomyopathy with LBBB (p < 0.01 v normal). In the nine patients with normal left ventricular size and QRS duration, Z ratio fell from 88 (6)% in sinus rhythm to 77 (10)% with right ventricular pacing (p = 0.26). In the 21 patients with dilated cardiomyopathy and LBBB, Z ratio rose from 59 (10)% in sinus rhythm to 74 (9)% with right ventricular DDD pacing (p < 0.001). CONCLUSIONS: Z ratio dissociates the effects of abnormal ventricular activation and systolic disease. It also clearly differentiates right ventricular pacing from LBBB. It may thus be useful in comparing the haemodynamic effects of different pacing modes in patients with or without left ventricular disease.

Bundle-Branch Block↗

Repetitive A-T rich DNA sequences from the Y chromosome of the Mediterranean fruit fly, Ceratitis capitata.

Copies of a repetitive DNA sequence distributed over 90% of the length of the long arm of the Y chromosome of the Mediterranean fruit fly, Ceratitis capitata (medfly), have been characterized. Sequencing reveals that these repeats, ranging in size from approximately 1.3 to 1.7 kb, are A-T rich overall (67%). In most cases the repeat units appear to occur in tandemly linked arrays. The repeat copies also all contain a highly similar internal region, approximately 200 bp in length, with a more extreme A-T content bias. This internal region, designated as the AT element, exhibits an A-T content of at least 83%. This exceeds what has been described for any comparable element among invertebrates. Using primers designed from the DNA sequence, PCR amplification of an internal region encompassing the AT element also reveals that these sequences are present only in the male genome in different strains of the medfly.

AT Rich Sequence↗

Protein kinase C modulates insulin action in human skeletal muscle.

There is good evidence from cell lines and rodents that elevated protein kinase C (PKC) overexpression/activity causes insulin resistance. Therefore, the present study determined the effects of PKC activation/inhibition on insulin-mediated glucose transport in incubated human skeletal muscle and primary adipocytes to discern a potential role for PKC in insulin action. Rectus abdominus muscle strips or adipocytes from obese, insulin-resistant, and insulin-sensitive patients were incubated in vitro under basal and insulin (100 nM)-stimulated conditions in the presence of GF 109203X (GF), a PKC inhibitor, or 12-deoxyphorbol 13-phenylacetate 20-acetate (dPPA), a PKC activator. PKC inhibition had no effect on basal glucose transport. GF increased (P < 0.05) insulin-stimulated 2-deoxyglucose (2-DOG) transport approximately twofold above basal. GF plus insulin also increased (P < 0.05) insulin receptor tyrosine phosphorylation 48% and phosphatidylinositol 3-kinase (PI 3-kinase) activity approximately 50% (P < 0.05) vs. insulin treatment alone. Similar results for GF on glucose uptake were observed in human primary adipocytes. Further support for the hypothesis that elevated PKC activity is related to insulin resistance comes from the finding that PKC activation by dPPA was associated with a 40% decrease (P < 0.05) in insulin-stimulated 2-DOG transport. Incubation of insulin-sensitive muscles with GF also resulted in enhanced insulin action ( approximately 3-fold above basal). These data demonstrate that certain PKC inhibitors augment insulin-mediated glucose uptake and suggest that PKC may modulate insulin action in human skeletal muscle.

Abdominal Muscles↗

Solution properties of antitumor sulfated derivative of alpha-(1-->3)-D-glucan from Ganoderma lucidum.

Four fractions of a water-insoluble alpha-(1-->3)-D-glucan GL extracted from fruiting bodies of Ganoderma lucidum were dissolved in 0.25 M LiCl/DMSO, and then reacted with sulfur trioxide-pyridine complex at 80 degrees C to synthesize a series of water-soluble sulfated derivatives S-GL. The degree of substitution of DS was measured by using IR infrared spectra, elemental analysis, and 13C NMR to be 1.2-1.6 in the non-selective sulfation. Weight-average molecular weight Mw and intrinsic viscosity [eta] of the sulfated derivatives S-GL were measured by multi-angle laser light scattering and viscometry. The Mw value (2.4 x 10(4)) of sulfated glucan S-GL-1 was much lower than that (44.5 x 10(4)) of original alpha-(1-->3)-D-glucan GL-1. The Mark-Houwink equation and average value of characteristic ratio C(infinity) for the S-GL in 0.2 M NaCl aqueous solution at 25 degrees C were found to be: [eta] = 1.32 x 10(-3) Mw(1.06) (cm3 g(-1)) and 16, respectively, in the Mw range from 1.1 x 10(4) to 2.4 x 10(4). It indicated that the sulfated derivatives of the alpha-(1-->3)-D-glucan in the aqueous solution behave as an expanded chain, owing to intramolecular hydrogen bonding or interaction between charge groups. Interestingly, two sulfated derivatives synthesized from the alpha-(1-->3)-D-glucan and curdlan, a beta-(1-->3)-D-glucan, all had significant higher antitumor activity against Ehrlich ascites carcinoma (EAC) than the originals. The effect of expanded chains of the sulfated glucan in the aqueous solution on the improvement of the antitumor activity could not be negligible.

Animals↗

Involvement of protein kinase C in human skeletal muscle insulin resistance and obesity.

This study was conducted to investigate the possible involvement of protein kinase C (PKC) and serine/threonine phosphorylation of the insulin receptor in insulin resistance and/or obesity. Insulin receptor tyrosine kinase activity was depressed in muscle from obese insulin-resistant patients compared with lean insulin-responsive control subjects. Alkaline phosphatase treatment resulted in a significant 48% increase in in vitro insulin-stimulated receptor tyrosine kinase activity in obese but not lean muscle. To investigate the involvement of PKC in skeletal muscle insulin resistance and/or obesity, membrane-associated PKC activity and the protein content of various PKC isoforms were measured in human skeletal muscle from lean, insulin-responsive, and obese insulin-resistant patients. Membrane-associated PKC activity was not changed; however, PKC-beta protein content, assayed by Western blot analysis, was significantly higher, whereas PKC-theta, -eta, and -mu were significantly lower in muscle from obese patients compared with muscle from lean control subjects. Incubation of muscle strips with insulin significantly increased membrane-associated PKC activity in muscle from obese but not lean subjects. PKC-delta, -beta, and -theta were translocated from the cytosol to the membrane fraction in response to insulin treatment. These results suggest that in skeletal muscle from insulin-resistant obese patients, insulin receptor tyrosine kinase activity was reduced because of hyperphosphorylation on serine/threonine residues. Membrane-associated PKC-beta protein was elevated under basal conditions, and membrane-associated total PKC activity was increased under insulin-stimulated conditions in muscle from obese insulin-resistant patients. Thus, we postulate that the decreased tyrosine kinase activity of the insulin receptor may be caused by serine/threonine phosphorylation by PKC.

Adult↗

[Transcriptional expression of apoptosis suppression gene bcl-2 in non-small cell lung carcinoma].

OBJECTIVE: To investigate the role of Bcl-2 gene in oncogenesis and progression of non-small cell lung carcinoma(NSCLC). METHODS: The mRNA expressions of Bcl-2 gene in a series of 137 pulmonary tissues collected at various sites and with different properties were studied with Northern hybridization and non-radioactive digoxigenin labeling and detection system. RESULTS: According to the observations on benign lesions, non-cancer tissues distant from tumour, para-tumour tissues and cancer tissues, there was a tendency of mRNA expression increasing of Bcl-2 gene. Among them, Bcl-2 mRNA expression in lung cancer tissues was significantly increased, compared with that in benign lesions and tissues distant from tumour (P<0.01). The Bcl-2 mRNA expression in lymph node with cancer metastasis was significantly higher than that in lymph node without cancer metastasis(P<0.05). The Bcl-2 mRNA expression was relative to cell differentiation of the cancer, but not to the histological classification. CONCLUSION: Over expression of Bcl-2 gene might be involved in the oncogenesis and metastasis of NSCLC.

Carcinoma, Non-Small-Cell Lung↗

Nicotinic receptor pore mutations create a sensitive inhibitory site for ethanol.

BACKGROUND: Ethanol (EtOH) inhibition and enhancement of ligand-gated ion channel functions may be due to direct interactions with sites on these membrane proteins. Peripheral nicotinic receptors have pore sites that long-chain alcohols inhibit but EtOH does not, either because of weak binding (low affinity) or inability to impair ion translocation (low efficacy). We tested whether nicotinic pore mutations that increase hydrophobicity and/or size can create a site where EtOH inhibits at physiological concentrations. METHODS: We studied recombinant expressed mouse muscle receptors with patch-clamp electrophysiology to measure EtOH effects both on single-channel conductance and on multichannel currents elicited with rapid agonist superfusion. We studied pairs of mutants with similar residue sizes but different hydrophobicitics at position alpha252 to determine if size or hydrophobicity determines EtOH sensitivity. RESULTS: Inhibition of wild-type currents is seen at EtOH concentrations >300 mM. Receptors that contain the alphaS252I (serine to isoleucine) mutation are significantly inhibited by 100 mM EtOH. Adding a second homologous mutation on the beta subunit (betaT263I) further enhances sensitivity and creates receptors that are inhibited significantly by 50 mM EtOH. The open-state conductance of single nicotinic channels is reduced in the presence of EtOH, which closely parallels EtOH inhibition of multichannel currents. In two isosteric mutant pairs at position alpha252, only hydrophobic side-chains significantly increase receptor sensitivity to EtOH. CONCLUSIONS: Wild-type nicotinic receptors have a very low affinity for EtOH, but only one or two mutations in the pore site create receptors inhibited by physiological EtOH concentrations. Ethanol inhibition is due primarily to channel interactions in the open state. At amino acid alpha252, side-chain hydrophobicity, not size, determines receptor sensitivity to EtOH inhibition. We propose that similar sites may exist within the pores of other EtOH-sensitive ion channels, such as NMDA receptors and neuronal nicotinic receptors.

Animals↗

[Current situation of pollution eco-chemistry and its prospects].

As a new discipline, pollution eco-chemistry comes into being with the development and intersection of ecology and environmental chemistry. Main contents of the subject were summarized: 1) movement and transformation of chemical pollutants and their microcosmically eco-chemical processes; 2) ecological effects, eco-toxicology and ecological risk assessment of chemical pollutants; 3) ecological chemistry of global changes; 4) analyses and monitoring of chemical pollutants in ecosystems; 5) eco-chemistry for pollution control. Under the guidance of knowledge innovation as its scientific goal, the research on pollution eco-chemistry will be devoted to a theoretical breakthrough. While doing a through basic research, we should pay attention to related applied research, in order to implement the technological and practical goal of the discipline.

Chemical Phenomena↗

[Telomerase activity of peripheral blood mononuclear cells in patients with acquired immune dysfunction].

OBJECTIVE: To investigate telomerase activity of peripheral blood mononuclear cells (PBMC) in patients with acquired immune dysfunction. METHODS: Telomerase activity of peripheral PBMC isolated from 4 groups including healthy subjects (17), chronic hepatitis B patients (14), diabetic patients (8) and chronic renal failure patients (8) was assayed with PCR-ELISA. RESULTS: (1) Telomerase activity was detectable at low levels in resting PBMC of all the 4 groups. It increased obviously after in vitro phytohemagglutinin (PHA) stimulation; (2) Telomerase activity of the resting PBMC in chronic hepatitis B patients was significantly lower than that in normal subjects, and was upregulated to the same level in the both groups after PHA stimulation; (3) No effect of recombinant human interleukin-12 on telomerase activity of activated T lymphocytes was found. CONCLUSIONS: PBMC may express telomerase activity and the decreased telomerase activity of PBMC in patients with chronic hepatitis B may partially be responsible for immune dysfunction in these patients.

Adolescent↗

[The relationship between bone mineral density and polymorphism of the estrogen receptor gene in Chinese healthy menopausal women].

OBJECTIVE: To investigate the possible relationship between bone mineral density (BMD) and polymorphism of the estrogen receptor (ER) gene in Chinese healthy postmenopausal women. METHODS: 237 unrelated healthy postmenopausal women were selected for bone mineral density determination with Dual energy X-ray absorptiometry (DEXA) and the polymorphism of estrogen receptor gene were detected with polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP). RESULTS: It is shown that the distribution of ER genotype in the ER gene was as follows: PP 19.8%, Pp 44.3% and pp 35.9% respectively. ANOVA analysis indicated that BMD of trochanter major (Troch) was associated with polymorphism of ER gene (P = 0.0106). Multiple stepwise regression analysis showed that the relationship between polymorphism of ER gene and BMD of Troch (P = 0.0548) and lumbar vertebra 2 approximately 4 (P = 0.0998) was not statistically significant. CONCLUSION: It is suggested that there is a significant relationship between polymorphism of ER gene and Troch BMD in healthy postmenopausal women. p allele may be a protective factor for bone mass loss.

Aged↗