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Biomedical subjects

H T Zhang

Publications and source records attributed to H T Zhang.

At least 19 recordsLinked to original sources

Passive sexual transmission of human immunodeficiency virus type 1 variants and adaptation in new hosts.

Human immunodeficiency virus type 1 (HIV-1) genetic diversity is a major obstacle for the design of a successful vaccine. Certain viral polymorphisms encode human leukocyte antigen (HLA)-associated immune escape, potentially overcoming limited vaccine protection. Although transmission of immune escape variants has been reported, the overall extent to which this phenomenon occurs in populations and the degree to which it contributes to HIV-1 viral evolution are unknown. Selection on the HIV-1 env gene at transmission favors neutralization-sensitive variants, but it is not known to what degree selection acts on the internal HIV-1 proteins to restrict or enhance the transmission of immune escape variants. Studies have suggested that HLA class I may determine susceptibility to HIV-1 infection, but a definitive role for HLA at transmission remains unproven. Comparing populations of acute seroconverters and chronically infected patients, we found no evidence of selection acting to restrict transmission of HIV-1 variants. We found that statistical associations previously reported in chronic infection between viral polymorphisms and HLA class I alleles are not present in acute infection, suggesting that the majority of viral polymorphisms in these patients are the result of transmission rather than de novo adaptation. Using four episodes of HIV-1 transmission in which the donors and recipients were both sampled very close to the time of infection we found that, despite a transmission bottleneck, genetic variants of HIV-1 infection are transmitted in a frequency-dependent manner. As HIV-1 infections are seeded by unique donor-adapted viral variants, each episode is a highly individual antigenic challenge. Host-specific, idiosyncratic HIV-1 antigenic diversity will seriously tax the efficacy of immunization based on consensus sequences.

AIDS Vaccines↗

Comparison of the effects of isoproterenol administered into the hippocampus, frontal cortex, or amygdala on behavior of rats maintained by differential reinforcement of low response rate.

RATIONALE: Central administration of isoproterenol, a non-selective beta adrenergic agonist, produces behavioral changes in animal models sensitive to antidepressants. However, it is not clear which brain regions mediate these effects. OBJECTIVES: To investigate the antidepressant-like effects of site-specific administration of isoproterenol and the involvement of beta adrenergic receptor subtypes. METHODS: The effects of isoproterenol, which was administered into the lateral ventricle, hippocampus, frontal cortex, or amygdala, were determined in rats under a differential-reinforcement-of-low-rate (DRL) 72-s schedule. The effects of beta adrenergic antagonists on the actions of isoproterenol also were determined. RESULTS: When injected bilaterally into the hippocampus, isoproterenol (1-30 microg/side) decreased response rate and increased reinforcement rate in a dose-dependent manner. The minimum dose of isoproterenol required for changing DRL behavior was 6 microg (i.e., 3 microg bilaterally), compared to 10 microg for intracerebroventricular and 60 microg (30 microg bilaterally) for administration into the frontal cortex or amygdala. These effects of isoproterenol were blocked by the beta adrenergic antagonist propranolol. In addition, the effects of isoproterenol injected intrahippocampally also were antagonized dose-dependently by the beta-1 selective antagonist betaxolol and the beta-2 selective antagonist ICI 118,551. The relative potency of these antagonists for blocking the effects of isoproterenol suggested predominant mediation by beta-1 adrenergic receptors. CONCLUSIONS: The hippocampus is an important site involved in mediating the antidepressant-like effect of isoproterenol. This suggests a key, although not exclusive, role for this site in the pathophysiology of depression and its pharmacotherapy.

Adrenergic beta-Agonists↗

Disabling erbB receptors with rationally designed exocyclic mimetics of antibodies: structure-function analysis.

Overexpression of the HER2 receptor is observed in about 30% of breast and ovarian cancers and is often associated with an unfavorable prognosis. We have recently designed an anti-HER2 peptide (AHNP) based on the structure of the CDR-H3 loop of the anti-HER2 rhumAb 4D5 and showed that this peptide can mimic some functions of rhumAb 4D5. The peptide disabled HER2 tyrosine kinases in vitro and in vivo similar to the monoclonal antibody (Park, B.-W. et al. Nat. Biotechnol. 2000, 18, 194--198). AHNP has been shown to selectively bind to the extracellular domain of the HER2 receptor with a submicromolar affinity in Biacore assays. In the present paper, we demonstrate that in addition to being a structural and functional mimic of rhumAb 4D5, AHNP can also effectively compete with the antibody for binding to the HER2 receptor indicating a similar binding site for the peptide and the parental antibody. To further develop AHNP as an antitumor agent useful for preclinical trials and as a radiopharmaceutical to be used for tumor imaging, a number of derivatives of AHNP have been designed. Structure--function relationships have been studied using surface plasmon resonance technology. Some of the AHNP analogues have improved binding properties, solubility, and cytotoxic activity relative to AHNP. Residues in the exocyclic region of AHNP appear to be essential for high-affinity binding. Kinetic and equilibrium analysis of peptide-receptor binding for various AHNP analogues revealed a strong correlation between peptide binding characteristics and their biological activity. For AHNP analogues, dissociation rate constants have been shown to be better indicators of peptide biological activity than receptor-binding affinities. This study demonstrates a possibility of mimicking the well-documented antibody effects and its applications in tumor therapy by much smaller antibody-based cyclic peptides with potentially significant therapeutic advantages. Strategies used to improve binding properties of rationally designed AHNP analogues are discussed.

Animals↗

Protein quantification from complex protein mixtures using a proteomics methodology with single-cell resolution.

We have developed an extremely sensitive technique, termed immuno-detection amplified by T7 RNA polymerase (IDAT) that is capable of monitoring proteins, lipids, and metabolites and their modifications at the single-cell level. A double-stranded oligonucleotide containing the T7 promoter is conjugated to an antibody (Ab), and then T7 RNA polymerase is used to amplify RNA from the double-stranded oligonucleotides coupled to the Ab in the Ab-antigen complex. By using this technique, we are able to detect the p185(her2/neu) receptor from the crude lysate of T6-17 cells at 10(-13) dilution, which is 10(9)-fold more sensitive than the conventional ELISA method. Single-chain Fv fragments or complementarity determining region peptides of the Ab also can be substituted for the Ab in IDAT. In a modified protocol, the oligonucleotide has been coupled to an Ab against a common epitope to create a universal detector species. With the linear amplification ability of T7 RNA polymerase, IDAT represents a significant improvement over immuno-PCR in terms of sensitivity and has the potential to provide a robotic platform for proteomics.

3T3 Cells↗

Effects of rolipram on scopolamine-induced impairment of working and reference memory in the radial-arm maze tests in rats.

RATIONALE: Rolipram, a selective inhibitor of cyclic AMP-specific phosphodiesterase (PDE4), has been shown to enhance scopolamine-induced impairment of working memory. However, its effect on reference memory, which appears to be related to the level of cyclic AMP (cAMP), has not been investigated yet; in addition, the mechanism involved in its effects on memory remains to be elucidated. OBJECTIVES: To investigate the effects of rolipram on working and reference memories impaired by scopolamine and the involvement of cAMP. METHODS: By administration (IP) of rolipram and forskolin, an activator of adenylyl cyclase (AC), the effects of both drugs on the number of correct choices and errors in experiment 1 and, the frequency of both working memory errors and reference memory errors in experiment 2 were observed in two eight-arm radial maze tasks in rats. RESULTS: In experiment 1, rolipram (0.01-1.0 mg/kg) attenuated the scopolamine-induced (0.5 mg/kg) increase in the total number of errors in dose- and time-dependent manners. The minimum effective dose of rolipram was 0.05 mg/kg and the effects lasted nearly 60 min. By contrast, forskolin (1.0-10.0 mg/kg) failed significantly to affect any of the above indices altered by scopolamine. In experiment 2, rolipram (0.05 and 0.1 mg/kg) decreased the frequencies of both working and reference memory errors that were elevated by scopolamine. Forskolin did not alter either type of error at a dose that increased the exploration time. CONCLUSION: Rolipram may exert its effects of reversing both working and reference memory impairments via increased cyclic AMP concentrations in certain signal transduction pathways, rather than by a generalized increase in cAMP.

3',5'-Cyclic-AMP Phosphodiesterases↗

Inhibition of cyclic AMP phosphodiesterase (PDE4) reverses memory deficits associated with NMDA receptor antagonism.

Rolipram, a selective inhibitor of type 4 cyclic AMP phosphodiesterase (PDE4), completely reversed the amnesic effects of MK-801 on working and reference memory (F[4,64] = 11.10; p <.0001 and F[4,64] = 2.53; p <.05, respectively) at doses of 0.01-0.1 mg/kg in the radial-arm maze task. Similar antagonism by rolipram of the effects of MK-801 was observed on inhibitory avoidance behavior (F[3,35] = 190.8; p <.0001). In vitro evidence suggests that an increase in cAMP concentrations may mediate the observed behavioral effects of rolipram. In the absence of PDE4 inhibition, NMDA did not increase cAMP concentrations in primary cultures of rat cerebral cortical neurons. However, when PDE4 was inhibited with rolipram, NMDA markedly elevated cAMP. These observations suggest that PDE4 is an integral component of the NMDA receptor-mediated signal transduction pathway involved in memory processes. Inhibitors of PDE4 may act on this pathway to produce their effects on memory and may represent a new class of cognitive enhancers.

3',5'-Cyclic-AMP Phosphodiesterases↗

Rationally designed anti-HER2/neu peptide mimetic disables P185HER2/neu tyrosine kinases in vitro and in vivo.

Monoclonal antibodies specific for the p185HER2/neu growth factor receptor represent a significant advance in receptor-based therapy for p185HER2/neu-expressing human cancers. We have used a structure-based approach to develop a small (1.5 kDa) exocyclic anti-HER2/neu peptide mimic (AHNP) functionally similar to an anti-p185HER2/neu monoclonal antibody, 4D5 (Herceptin). The AHNP mimetic specifically binds to p185HER2/neu with high affinity (KD=300 nM). This results in inhibition of proliferation of p185HER2/neu-overexpressing tumor cells, and inhibition of colony formation in vitro and growth of p185HER2/neu-expressing tumors in athymic mice. In addition, the mimetic sensitizes the tumor cells to apoptosis when used in conjunction with ionizing radiation or chemotherapeutic agents. A comparison of the molar quantities of the Herceptin antibody and the AHNP mimetic required for inhibiting cell growth and anchorage-independent growth showed generally similar activities. The structure-based derivation of the AHNP represents a novel strategy for the design of receptor-specific tumor therapies.

Animals↗

The 121 amino acid isoform of vascular endothelial growth factor is more strongly tumorigenic than other splice variants in vivo.

Vascular endothelial growth factor (VEGF) is known to occur as at least six differentially spliced variants, giving rise to mature isoforms containing 121, 145, 165, 183, 189 and 206 amino acids. However, little is yet known concerning the in vivo activities of this differential splicing. Stably transfected MCF-7 breast carcinoma cells were constructed that secreted comparable amounts of the 121, 165 or 189 isoforms. Rabbit corneal angiogenesis assays showed the VEGF121 transfectant to have much greater angiogenic activity than the 165 or 189 expressing MCF-7 cells. While the VEGF121-expressing MCF-7 cells were reproducibly more tumorigenic than the control transfectants, this was not the case with the VEGF165- or VEGF189-expressing cells. More surprising was the observation that VEGF189 located to the nucleus, consistent with the presence of a highly conserved nuclear localization sequence in exon 6a that is expressed in VEGF189 but not 121 or 165. It was concluded that the VEGF121 isoform is both more angiogenic and tumorigenic than are the 165 and 189 isoforms. This is probably due to the ability of the 121 isoform, unlike the 165 and 189 isoforms, to freely diffuse from the cells producing it.

Adenocarcinoma↗

New perspectives on anti-HER2/neu therapeutics.

HER2/neu and the epidermal growth factor receptor (EGFR) are significantly overexpressed in several cancer cells. Overexpression of these two receptors accounts for progression of many types of cancer: breast, ovarian, skin, pancreas and brain. In recent years, several approaches to disable the receptor complexes have shown promise. Antibody-based therapy, kinase inhibitors and other inhibitors of signaling molecules are the major approaches. Our group developed the concept that an anti-p185HER2/neu monoclonal antibody might represent a therapeutic for cancer and this has culminated in a clinically useful therapeutic, the humanized monoclonal antibody Herceptin (trastuzumab). We have now developed a small-molecule form of an anti-HER2/neu peptidomimetic (AHNP) that exhibit functions comparable to those of the monoclonal antibody Herceptin. This approach may be considered a new paradigm in receptor-specific tumor therapeutics. A brief review of our approach in developing receptor-specific therapeutic agents for HER2/neu-related cancer is presented.

Journal Article↗

Domain-specific interactions between the p185(neu) and epidermal growth factor receptor kinases determine differential signaling outcomes.

We expressed the epidermal growth factor receptor (EGFR) along with mutant p185(neu) proteins containing the rat transmembrane point mutation. The work concerned the study of the contributions made by various p185(neu) subdomains to signaling induced by a heterodimeric ErbB complex. Co-expression of full-length EGFR and oncogenic p185(neu) receptors resulted in an increased EGF-induced phosphotyrosine content of p185(neu), increased cell proliferation to limiting concentrations of EGF, and increases in both EGF-induced MAPK and phosphatidylinositol 3-kinase (PI 3-kinase) activation. Intracellular domain-deleted p185(neu) receptors (T691stop neu) were able to associate with full-length EGFR, but induced antagonistic effects on EGF-dependent EGF receptor down-regulation, cell proliferation, and activation of MAPK and PI 3-kinase pathways. Ectodomain-deleted p185(neu) proteins (TDelta5) were unable to physically associate with EGFR, and extracellular domain-deleted p185(neu) forms failed to augment activation of MAPK and PI 3-kinase in response to EGF. Association of EGFR with a carboxyl-terminally truncated p185(neu) mutant (TAPstop) form did not increase transforming efficiency and phosphotyrosine content of the TAPstop species, and proliferation of EGFR.TAPstop-co-expressing cells in response to EGF was similar to cells containing EGFR only. Thus, neither cooperative nor inhibitory effects were observed in cell lines co-expressing either TDelta5 or TAPstop mutant proteins. Unlike the formation of potent homodimer assemblies composed of oncogenic p185(neu), the induction of signaling from p185(neu).EGFR heteroreceptor assemblies requires the ectodomain for ligand-dependent physical association and intracellular domain contacts for efficient intermolecular kinase activation.

Animals↗

Transcriptional profiling of human microvascular endothelial cells in the proliferative and quiescent state using cDNA arrays.

Endothelial cells are known to be a rich source of transcriptional gene expression. Recent technological advances now permit the detailed profiling of mRNA expression using arrays of known cDNAs on blots. We have used such arrays to examine expression of mRNA by primary isolates of human foreskin microvascular endothelial cells in the proliferative and quiescent state. Cells were stimulated by a combination of known growth factors for these cells including epidermal growth factor (EGF), vascular endothelial growth factor (VEGF), and 'endothelial cell growth supplement (ECGS)' either alone or in combination. Analysis showed the expression of many mRNAs but of the 588 examined, only one, namely monocyte chemotactic protein-1 (MCP-1), showed a decrease on treatment with EGF. A combination of image grabbing followed by subtractive densitometry enabled identification of the mRNAs upregulated in proliferating endothelium. In consideration of the possibility of selective vascular targeting, of particular interest was the increase in expression of the mRNA for the cell surface proteins vascular endothelial (VE-) and neural (N-) cadherin and alpha5, alphav, beta1 and beta3 integrins. The alpha5 integrin offers a previously unrecognized opportunity for vascular targeting.

Journal Article↗

Expression of a novel chimeric protein containing the A chain of tissue-type plasminogen activator and the B chain of pro-urokinase in insect cells using the baculovirus system.

A hybrid cDNA tu-pa, which contains Ser1-Thr263 of tissue-type plasminogen activator (t-PA) and Ser138-Leu411 of pro-urokinase (pro-UK) was constructed and expressed in the Sf9-AcNPV system. The expression level was approximate 2.5 mg/L. Tu-PA was purified via one-step affinity column conjugated with monoclonal antibody against the B chain of pro-UK, which showed a single band of approximate 60 kDa in SDS-PAGE. The specific activity of the chimeric protein on fibrin plate was 200,000 IU/mg protein. Tu-PA had a higher selectivity for fibrin than UK and pro-UK. Its activity can be promoted by CNBr degraded fibrin fragments as t-PA.

Animals↗

[Effects of low concentration carbon monoxide on the neurobehavior function in mice].

OBJECTIVE: To study the effect of low concentration CO on neurobehaviour function and the maximal allowable concentration (MAC) in limited time. METHOD: 40 KM (kunming) male mice were randomly divided into groups A, B, C and D. They were exposed to normal air, 30 mg/m3 CO, 300 mg/m3 CO and 600 mg/m3 CO respectively. The changes in neurobehaviour function of the mice before, during and after 72 h exposure in 0.5 m3 static chambers were observed. Four indices were measured: response time (RT) and error rate (ER) in the water maze test, enter check frequency (ECF) and urine or excrement frequency (UEF) in open field test. RESULT: The set upright frequency in group D was smaller than those in groups A, B and C during exposure. RT and ER values went in a direction contrary to pre-exposure the four groups in the second 3 days (6 d) after or out of exposure, while ER values showed that group D > group C > group A > group B in the third 3 days (9 d). RT value was not different among the 4 groups, but its order of numerical value was similar to the ER order. The order of ECF values was that group C > group A and group D in 3 d after or out of exposure and not different among the 4 groups in 6 d and group D < group A and group B in 9 d. UEF values were not different among the 4 groups in 3 d and 9 d, but group D > group A and group B in 6 d after or out of exposure. Comparison with every group itself, showed statistically significance increase in ER values in 9 d out of exposure than before exposure in group D. ECF values showed the statistics significant increase in 9 d in group A and B. CONCLUSION: Low concentration CO may interfere with the learning and memory of mice in the water maze and impede the development of the motor nervous function and disturb the steadiness of emotion of mice in the open field. In addition, low concentration of CO may be of tardy toxicity.

Animals↗

Absence of autophosphorylation site Y882 in the p185neu oncogene product correlates with a reduction of transforming potential.

Autophosphorylation of type I receptor tyrosine kinases (RTKs) comprises one step in the signaling events mediated by erbB receptors such as p185neu and EGFR. Previous analysis of p185neu has indicated that there are at least five tyrosine autophosphorylation sites, Y882, Y1028, Y1143, Y1226/7 and Y1253, of which Y882 might be important because of its location in the kinase activity domain. We have specifically analysed the effect of a Y882F (phenylalanine substituted for tyrosine at position 882) mutation in the enzymatic active domain. We also deleted the carboxyl terminal 122 amino acids which contained three other autophosphorylation sites (TAPstop) and combined mutants of that deletion with Y882F (Y882F/APstop). Both in vitro and in vivo transformation assays showed that substitution of tyrosine882 by phenylalanine significantly decreased the transforming potential of activated, oncogenic p185neu, although no significant difference in the total phosphotyrosine levels of the mutant proteins were observed. To analyse mitogenic signaling in response to ligand, the intracellular domains of p185neu and Y882F were fused with the extracellular domain of the EGF receptor. The proliferation of cells expressing these chimeric receptors was EGF-dependent, and cells expressing EGFR/Y882F chimeric receptors were less responsive to EGF stimulation than those expressing EGFR/neu receptors. In vitro kinase assays demonstrated that abolishing the autophosphorylation site Y882 diminished the enzymatic tyrosine kinase activity of p185neu. These studies, taken together with the phenotypic inhibition observed with cells expressing Y882F, suggest that the tyrosine882 residue may be important for p185neu-mediated transformation by affecting the enzymatic kinase function of the p185neu receptor.

Amino Acid Substitution↗

Inhibition of a naturally occurring EGFR oncoprotein by the p185neu ectodomain: implications for subdomain contributions to receptor assembly.

Mutant Epidermal Growth Factor Receptor (EGFR) oncoproteins lacking most of subdomains I and II of the extracellular region, a deletion which includes most of the first of two cysteine-rich sequences, have been observed in multiple human epithelial tumors, including malignant gliomas. These EGFR oncoproteins, designated deltaEGFR or EGFRvIII, confer increased tumorigenicity in vivo and are often coexpressed with full-length EGFR in human tumors. We have expressed an ectodomain-derived, carboxyl-terminal deletion mutant of the p185neu oncogene (T691stop) in human glioblastoma cells coexpressing endogenous EGFR and activated deltaEGFR oncoproteins. The p185neu ectodomain-derived mutant forms heterodimers with deltaEGFR proteins and reduces the phosphotyrosine content and kinase activity of deltaEGFR monomers. As a consequence of T691stop neu expression and surface localization, cell proliferation in conditions of full growth and reduced serum and anchorage-independent growth in soft agar was reduced in glioblastoma cells expressing either endogenous EGFR alone or coexpressing EGFR and elevated levels of deltaEGFRs. T691stop neu mutant receptors abrogate the dramatic growth advantage conferred by deltaEGFR in vivo, suggesting that physical associations primarily between subdomains III and IV of the p185neu and EGFR ectodomains are sufficient to modulate signaling from activated EGFR complexes. Receptor-based inhibitory strategies exploit the thermodynamic preference for erbB ectodomains to heterodimerize, thereby creating erbB receptor assemblies which are defective in signaling and do not internalize. Pharmaceuticals which mimic the p185neu ectodomain may therefore have important therapeutic applications in advanced human malignancies expressing erbB receptors.

Animals↗

Effects of nicotine on 1-methyl-4-phenyl-1,2,5,6-tetrahydropyridine-induced depression of striatal dopamine content and spontaneous locomotor activity in C57 black mice.

The present study examined the effects of nicotine on the levels of dopamine and its metabolite 3,4-dihydroxy-phenylacetic acid (DOPAC) in the striatum and on spontaneous locomotor activity of C57 black mice that had been treated with the neurotoxin 1-methyl-4-phenyl-1,2,5,6-tetrahydropyridine (MPTP). The levels of dopamine and DOPAC in the striatum were significantly reduced 10 days after two injections of MPTP (40 mg kg-1, i.p., 24 h apart) in mice. Chronic treatment of nicotine (2.0 mg kg-1, s.c., four injections per day) did not influence the striatal content of dopamine and DOPAC, but it significantly antagonised MPTP-induced depression of dopamine. However, the chronic nicotine treatment did not significantly affect MPTP-induced depression of DOPAC. It was demonstrated that the lethal effect of MPTP was also partly protected by the chronic nicotine treatment. The chronic nicotine treatment also significantly protected MPTP-depressed spontaneous locomotor activity in mice. The results suggest that both MPTP-depressed behaviour and MPTP-induced striatal dopamine depletion in C57 black mice are partly protected by chronic nicotine treatment.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Anti-angiogenic therapies in cancer clinical trials.

Strategies involving vasculature have widely been acknowledged to have therapeutic potential in the management of cancer and other diseases. Based on a large body of evidence from preclinical studies and early clinical trials there is considerable optimism that anti-angiogenesis and vascular targeting will be a major clinical therapy. This review considers some 30 anti-angiogenic and vascular targeting agents that are currently in cancer clinical trials and highlights specific problems relating to the assessment of the activity of these agents in patients, trial design, potential toxicities and resistance mechanisms.

Journal Article↗

Relationship of p215BRCA1 to tyrosine kinase signaling pathways and the cell cycle in normal and transformed cells.

We have analysed the relationship of the products of two genes, neu and BRCA1, known to be important in human breast cancer. Highly specific antibodies that recognized both the rodent and human form of the BRCA1 gene product (Mr 215 kDa, p215BRCA1) were developed to facilitate these efforts. p215BRCA1 was identified as a tyrosine phosphorylated protein primarily localized in the nucleus of several breast cancer cell lines. In transformed murine and human cells, levels of p215BRCA1 tyrosine phosphorylation were inversely correlated with the activity of the erbB family receptor-tyrosine-kinases and with the transformed growth features of these cells. Regulation of p215BRCA1 tyrosine phosphorylation was also related to events in the cell cycle. Increased levels of p215BRCA1 phosphotyrosine content were observed in NIH3T3 cells arrested at the G2/M transition. These findings indicate that the products of BRCA1, neu, and erbB breast cancer genes participate in a common or shared signaling pathway important in cell growth and its regulation.

3T3 Cells↗