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Qin He

Publications and source records attributed to Qin He.

32 records · Page 2Linked to original sources

Multiple monovalent ion-dependent pathways for the folding of the L-21 Tetrahymena thermophila ribozyme.

Synchrotron hydroxyl radical (*OH) footprinting is a technique that monitors the local changes in solvent accessibility of the RNA backbone on milliseconds to minutes time-scales. The Mg(2+)-dependent folding of the L-21 Sca 1 Tetrahymena thermophila ribozyme has been followed using this technique at an elevated concentration of monovalent ion (200 mM NaCl) and as a function of the initial annealing conditions and substrate. Previous studies conducted at low concentrations of monovalent ion displayed sequential folding of the P4-P6 domain, the peripheral helices and the catalytic core, with each protection displaying monophasic kinetics. For ribozyme annealed in buffer containing 200 mM NaCl and folded by the addition of 10 mM MgCl(2), multiple kinetic phases are observed for *OH protections throughout the ribozyme. The independently folding P4-P6 domain is the first to fold with its protections displaying 50-90% burst phase amplitudes. That the folding of P4-P6 within the ribozyme does not display the 100% burst phase of isolated P4-P6 at 200 mM NaCl shows that interactions with the remainder of the ribozyme impede this domain's folding. In addition, *OH protections constituting each side of a tertiary contact are not coincident in some cases, consistent with the formation of transient non-native interactions. While the peripheral contacts and triple helical scaffold exhibit substantial burst phases, the slowest protection to appear is J8/7 in the catalytic core, which displays a minimal burst amplitude and whose formation is coincident with the recovery of catalytic activity. The number of kinetic phases as well as their amplitudes and rates are different when the ribozyme is annealed in low-salt buffer and folded by the concomitant addition of monovalent and divalent cations. Annealed substrate changes the partitioning of the ribozyme among the multiple folding populations. These results provide a map of the early steps in the ribozyme's folding landscape and the degree to which the preferred pathways are dependent upon the initial reaction conditions.

Animals↗

[Study on the targeting of nanoparticles loading TK gene in mice].

The tissue distribution of DNA-PLGA-NP was investigated by the technique of gamma scintigraphy. The results showed that 30 min after mouse caudal vein injection of 32P-DNA-PLGA-NP, the ratio of radioactivity in liver against total radioactivity is higher than 70%, which is 1.4 fold the ratio after caudal vein injection of 32P-DNA, and that 2 h after subcutaneous injection of 32P-DNA-PLGA-NP 2 h, the ratio of the radioactivity in liver against total radioactivity is also higher than 70%, reaching a 1.6 fold increase when compared with the ratio after subcutaneous injection of 32P-DNA.

Animals↗

[Kidney-targeting characteristics of N-acetyl-L-glutamic prednisolone prodrug].

AIM: To study the in vivo distribution of N-acetyl-L-glutamic prednisolone (ACEP) and to investigate the renal targeting characteristics of the prodrug. METHODS: The concentrations of prednisolone in organs at predetermined time were assayed by HPLC after intravenous administration of ACEP or prednisolone to Kunming mice. The adverse effects were evaluated by testing the bone mineral densities (BMD) of Wistar rats. RESULTS: The concentrations of prednisolone in kidney 15 min after i.v. administration were (86 +/- 8) microgram.g-1 for ACEP group, (57 +/- 4) microgram.g-1 for prednisolone group; 60 min after i.v. administration were (67 +/- 5) microgram.g-1 for ACEP group, (42 +/- 4) microgram.g-1 for prednisolone group. BMDs were (0.08 +/- 0.03) g.cm-2 and (0.14 +/- 0.06) g.cm-2 for prednisolone and ACEP-treated Wistar rats respectively. CONCLUSION: Compared with the parent drug prednisolone, ACEP has kidney-targeting behavior and lower toxicity (n = 5, P < 0.001).

Absorptiometry, Photon↗

Apo2L/TRAIL differentially modulates the apoptotic effects of sulindac and a COX-2 selective non-steroidal anti-inflammatory agent in Bax-deficient cells.

The nonsteroidal anti-inflammatory drugs (NSAIDs) are believed to mediate their anticancer effects by inducing apoptosis but the molecular mechanisms of their apoptotic effects remain largely unknown. Here we report that two different NSAIDs, sulindac sulfide and SC-'236 engage the death receptor 5 (DR5) and mitochondrial pathways to mediate apoptosis in human colon cancer cells. We show that sulindac sulfide and SC-'236-induced apoptosis is coupled with upregulation of DR5, caspase 8 activation and Bid cleavage. Thus, a cross talk appears to exist between the DR5 and mitochondrial pathways during apoptosis induced by these NSAIDs. We further show that sulindac sulfide and SC-'236-induced DR5 upregulation occurs independent of the COX inhibitory effects of these NSAIDs. Using Bax-proficient (Bax+/-) and Bax-deficient (Bax-/-) HCT116 human colon cancer cells, we further demonstrate that Apo2L/TRAIL differentially modulates the apoptotic effects of sulindac sulfide and SC-'236. For example, sulindac sulfide upregulates DR5 in both Bax-deficient and proficient cells, but Apo2L/TRAIL efficiently potentiates sulindac sulfide-induced apoptosis as well as activation of caspase-8, -9 and -3 only in Bax-proficient cells. SC-'236 also upregulates DR5 in both Bax-proficient and Bax-deficient cells but Apo2L/TRAIL potentiates SC-'236-mediated apoptosis and caspases-8 and -3 activation in both Bax-proficient and Bax-deficient cells. Further, in Bax-deficient cells, neither sulindac sulfide nor SC-'236 in combination with Apo2L/TRAIL effectively promotes the release of cytochrome c from mitochondria into cytosol and caspase-9 activation. Collectively, our results suggest that unlike sulindac sulfide, SC-'236 in combination with Apo2L/TRAIL can overcome Bax deficiency to induce apoptosis. These results have important clinical implications in that the tumors harboring Bax mutations are likely to develop resistance to sulindac but not to SC-'236-like NSAIDs. In conclusion, the data presented herein form the basis of future in-depth studies to further explore the utility of Apo2L/TRAIL and NSAIDs, in combination, as a novel cancer preventive/therapeutic strategy.

Anti-Inflammatory Agents, Non-Steroidal↗

Linkage of monovalent and divalent ion binding in the folding of the P4-P6 domain of the Tetrahymena ribozyme.

We have explored the linkage of monovalent and divalent ion binding in the folding of the P4-P6 domain of Tetrahymena thermophila ribozyme by examining the Mg2+-induced folding and the urea-induced denaturation of the folded state as a function of Na+ under equilibrium folding conditions using hydroxyl radical footprinting. These studies allowed a thermodynamic examination of eight discrete protection sites within P4-P6 that are involved in several tertiary structure contacts. Monovalent ions compete with Mg2+ ions in mediating P4-P6 folding. The urea denaturation isotherms demonstrated DeltaDeltaG values of >2 kcal x mol(-1) in experiments conducted in 10 versus 200 mM NaCl at a constant 10 mM MgCl2. However, the individual-site isotherms reported by footprinting revealed that larger than average changes in DeltaG values were localized to specific sites within the Mg2+-rich A-bulge. The competitive effects of monovalent ions were less when K+ rather than Na+ was the monovalent cation present. This result indicates the importance of the specific K+ binding sites that are associated with AA-platform structures to P4-P6 folding and stability. These site-specific footprinting data provide quantitative and site-specific measurements of the ion-linked stability for P4-P6 that are interpreted with respect to crystallographic data.

Animals↗

Endoplasmic reticulum calcium pool depletion-induced apoptosis is coupled with activation of the death receptor 5 pathway.

Thapsigargin (TG), by inducing perturbations in cellular Ca(2+) homeostasis, has been shown to induce apoptosis. The molecular mechanisms of Ca(2+) perturbation-induced apoptosis are not fully understood. In this study, we demonstrate for the first time that TG-mediated perturbations in Ca(2+) homeostasis are coupled with activation of the death receptor 5 (DR5)-dependent apoptotic pathway in human cancer cells. TG selectively upregulated DR5 but had no effect on the expression of the other TRAIL receptor, DR4. TG also upregulated the expression of the DR5 ligand TRAIL (tumor necrosis factor-related apoptosis inducing ligand), albeit in a cell-type specific manner. TG-induced apoptosis has been shown to be associated with activation of the mitochondrial pathway. We found that TG upregulation of DR5 and TRAIL was coupled with caspase 8 activation and Bid cleavage, suggesting that the TG-regulated DR5 pathway could be linked to the mitochondrial pathway. TG enhanced not only DR5 mRNA stability but also increased induction of the DR5 genomic promoter-reporter gene. The TG-induced increase in DR5 expression appeared to occur as a consequence of TG-induced endoplasmic reticulum (ER) Ca(2+) pool depletion. Thus, we report our novel findings that ER Ca(2+) pool depletion-induced apoptotic signals are mediated, at least in part, via a DR5-dependent apoptotic pathway and there appears to be a cross-talk between the death receptor and mitochondrial pathways.

Apoptosis↗

TC21 mediates transformation and cell survival via activation of phosphatidylinositol 3-kinase/Akt and NF-kappaB signaling pathway.

The signaling pathways of TC21-mediated transformation and cell survival are not well-established. In this study, we have investigated the role of PI3-K/Akt signaling pathway in oncogenic-TC21-mediated transformation and cell survival. We found that oncogenic-TC21 stimulated the PI3-K activity. This was associated with the activation of Akt, a key component of PI3-K signaling pathway. We also found that TC21 interacted and formed complex with PI3-K. Mutations in the GTP-binding region of TC21, which enhanced GTP-binding potential of this protein, also stimulated its association with PI3-K, suggesting that PI3-K may preferentially interact with the GTP-bound form. Suppression of PI3-K and Akt by specific inhibitors LY294002 and Wortmannin reversed TC21-induced transformation. Likewise, inhibition of PI3-K activity by the PI3-K phosphotase PTEN reduced TC21-mediated focus formation in NIH3T3 cells. Investigation of TC21's effect on cell survival revealed that mutant-TC21 expressing cells were more resistant to etoposide- and cisplatin-induced cell death, and this was associated with the activation of anti-apoptotic protein NF-kappaB, a downstream target of Akt. Treatment of PI3-K inhibitor LY294002 significantly suppressed TC21-mediated NF-kappaB activation. In conclusion, we have identified PI3-K as an effector of TC21 and demonstrated that the PI3-K/Akt signaling pathway plays important roles in TC21-mediated transformation and cell survival.

3T3 Cells↗

Isolation and characterization of detergent-resistant microdomains responsive to NCAM-mediated signaling from growth cones.

It is still largely unclear how cell adhesion molecule (CAM)-mediated signaling evokes responses from the growth cone cytoskeleton. Here we used TX-114 extraction of growth cones followed by equilibrium gradient centrifugation to isolate subfractions of detergent-resistant microdomains (DRMs) that could be structurally and functionally distinguished on the basis of localization and activation of components of CAM-mediated signaling pathways. DRMs enriched in cholesterol, caveolin, NCAM140, GPI-linked NCAM120, fyn, and GAP-43, all conventional markers of microdomains or rafts, were located in areas 2 and 3 of the gradient. Coimmunoprecipitation of specific components of CAM signaling pathways by GAP-43 then identified distinct subpopulations of DRMs. GAP-43 from area 2 DRMs coprecipitated GPI-linked NCAM120 and was inactive, i.e., PKC phosphorylation had not been stimulated. In contrast the GAP-43 from area 3 DRMs coprecipitated both transmembrane NCAM140 and caveolin and was active, i.e., highly phosphorylated by PKC. A different subset of DRMs from both area 2 and area 3 contained fyn that could not be coprecipitated with GAP-43 antibodies. In this case area 2 DRMs contained activated fyn that was phosphorylated on Y415. In contrast area 3 DRMs contained inactive fyn. Hence fyn and GAP-43, both targets of NCAM signaling, are located in distinct populations of DRMs, and their activated forms are reciprocally distributed on the gradient. A detergent-resistant membrane fraction recovered from area 4 was enriched in NCAM140, phosphorylated GAP-43, and actin, but not cholesterol, caveolin, or fyn. Immunoelectron microscopy revealed that phosphorylated GAP-43 was localized where the membranes and F-actin interacted. Our results provide evidence for NCAM-mediated signaling in DRMs and suggest that the DRMs responsible for fyn and PKC/GAP-43-mediated NCAM signaling are structurally distinct and differentially distributed in growth cones.

Actins↗

Monovalent cations mediate formation of native tertiary structure of the Tetrahymena thermophila ribozyme.

The formation of individual tertiary contacts of the Tetrahymena L-21 Sca I ribozyme has been monitored by hydroxyl radical footprinting and its global conformation by analytical ultracentrifugation as a function of monovalent ion concentration in the absence of divalent ions. Advanced methods of data analysis, which allow the hydroxyl radical reactivity of every nucleotide to be quantified, permit monitoring of each and every structural element of the RNA. Monovalent ion-mediated global compaction of the ribozyme is accompanied by the formation of native tertiary contacts; most native tertiary contacts are evident except several that are located near where divalent ions are observed in crystallographic structures. Non-native tertiary contacts are also observed at low but not high concentrations of monovalent ions. In light of recent studies that have shown that the presence of monovalent ions greatly accelerates the Mg2+-dependent folding of the Tetrahymena ribozyme, the present studies suggest that Na+ concentration changes not only the starting position of the RNA on its folding funnel but also pushes it deep into the well by forming native tertiary contacts and, thus, favoring fast and correct folding pathways.

Animals↗

[Study of encapsulation of suicide gene in poly(D,L-lactic-co-glycolic acid) nanoparticles and its characteristics in vitro].

We constructed the AFP promotor, suicide gene and EGFP eukaryotic expression vector recombinant plasmid, and this plasmid DNA was encapsulated by biodegradable, biocompatible polymer PLGA to prepare nanoparticles. The results demonstrate that the mean diameter of DNA-PLGA-NP is 68 nm, the encapsulation ratio reaches to 80%, and the PLGA nanoparticles can protect plasmid DNA from digestion by deoxyribonuclease I (DNaseI) and sonication-induced shearing in vitro.

Biocompatible Materials↗

[Genotyping of HLA-DRB1 by PCR-SSP in Yunnan Lahu ethnic groups].

OBJECTIVE: To investigate polymorphism of HLA-DRB1 in Chinese Lahu population in Yunnan. METHODS: Polymerase chain reaction-sequence specific primers (PCR-SSP) were used to determine HLA-DRB1 genotypes of 110 unrelated healthy Lahu minority people of Yunnan Province. RESULTS: Sixteen alleles of DRB1 were detected in this study. The results of test showed that the genotype distributions observed were corresponded with the Hardy-Weinberg equilibrium. CONCLUSION: This study has obtained a more comprehensive and accurate data set of the normal allele frequencies of HLA-DRB1 in Chinese Lahu population in Yunnan Province, which may be of significance in the studies on population genetics and disease association.

Asian People↗

Study on liver targeting and hepatocytes permeable valaciclovir polybutylcyanoacrylate nanoparticles.

AIM:To prepare valaciclovir polybutylcyan_oacrylate nanoparticles (VACV-PBCA-NP) with liver targeting and hepatocyte permeable charateristics.METHODS: Emulsion polymerization method was employed to prepare VACV-PBCA-NP.The formula and preparation conditions were optimized by using the uniform design. The organ distribution of the intravenously injected VACV-PBCA-NP and VACV in animal was determined using HPLC. The hepatocytes permeability of VACV-PBCA-NP was demonstrated by cell uptake experiment in vitro.RESULTS:The drug loading and the drug embedding ratio of VACV-PBCA-NP were 11.20% and 84.85% respectively, with an average diameter of 104.77nm ±11.78nm. The releasing characteristics in vitro fitted the two-phase kinetics. 74.49% of the drug was found to localize in the liver 15min after the administration of VACV-PBCA-NP in the mice. Compared with VACV, VACV-PBCA-NP showed distinct characteristic of sustainedrelease in vivo and the drug entering hepatocytes were also greatly increased.CONCLUSION:VACV-PBCA-NP has the char_acteristic of liver targeting and can increase the permeability of VACV to hepatocytes.

Journal Article↗

Study on the anticarcinogenic effect and acute toxicity of liver-targeting mitoxantrone nanoparticles.

AIM:To study the anticarcinogenic effect and acute toxicity of liver targeting mitoxantrone nanospheres.METHODS:The anticarcinogenic effect of mitoxan-trone polybutylcyanoacrylate nanoparticles (DHAQ-PBCA-NP) was investigated by using heterotopic and orthotopic transplantation models of human hepatocellular carcinoma (HCC) in nude mice and was compared with mitoxantrone (DHAQ) and doxorubicin (ADR).The acute toxicity of DHAQ-PBCA-NP lyophilized injection in mice was also studied.RESULTS:The tumor inhibition rates of ADR, DHAQ, DHAQ-PBCA-NP to orthotopically transplanted HCC were 60.07%, 67.49% and 99.44%, respectively, but regard to heterotopically transplanted HCC, these were 80.03%, 86.18% and 92.90%, which were concordant with the results acquired by mitosis counting and proliferating cell nuclear antigen (PCNA). After iv administration to mice with DHAQ-PBCA-NP, the LD(50) was 16.9mg/kg ± 3.9mg/kg, no obvious local irritation was observed and there was no significant damage to the structure of liver cells, and that of the heart, spleen and kidneys.CONCLUSION:The effect of DHAQ-PBCA-NP was significantly higher than that of DHAQ and ADR in the anti orthotopically transplanted HCC and the acute toxicity was relatively low.

Journal Article↗

Death receptor 5 regulation during selenium-mediated apoptosis in human prostate cancer cells.

Selenium is an essential micronutrient that is currently being tested for prostate cancer chemoprevention. In spite of its significant promise as a chemopreventive agent, the molecular mechanisms of selenium-mediated effects remain to be elucidated. Recent evidence suggests that selenium may mediate its chemopreventive effects by inducing apoptosis in human prostate cancer cells. Here we report that selenium-mediated apoptosis appears to involve membrane death receptor, DR5-dependent pathway in human prostate cancer cells. Selenium specifically upregulated DR5 expression but not that of DR4. Selenium upregulation of DR5 was coupled with caspase 8 activation and Bid cleavage thereby suggesting the existence of a potential cross-talk between the DR5 and the mitochondrial pathways. Thus, our results suggest that DR5 is specifically regulated by selenium and its activation may play an important role in selenium-mediated chemoprevention.

Antioxidants↗