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Qian Mei

Publications and source records attributed to Qian Mei.

7 recordsLinked to original sources

Design and characterization of a platelet-targeted plasminogen activator with enhanced thrombolytic and antithrombotic potency.

To obtain a thrombus-targeted plasminogen activator with high affinity for activated platelets and enhanced thrombolytic and antithrombotic potency, we engineered a sequence encoding RGDS (Arg-Gly-Asp-Ser) peptide into the loop between domains II and III of the sequence-deleted mutant of annexin B1 and then constructed a chimaeric plasminogen activator gene mAnxB1-RGDS-ScuPA by fusing ScuPA32k [low-molecular-mass single-chain urokinase (32 kDa)] with the N-terminus. The chimaeric protein was expressed in inclusion bodies in Escherichia coli at 25% of the total cellular protein content. Ion-exchange and gel-filtration chromatographies were applied to purify the chimaeric protein, achieving purity greater than 98%. We demonstrated that this chimaera can be expressed and purified in an active form; in vitro testing indicated that the chimaera fully retained the thrombolytic activity, platelet membrane-binding activity and anti-platelet aggregation activity of the parent molecules. The plasma clearance of the chimaera was similar to that of urokinase and ScuPA32k. In vivo experiments in a canine system indicated that animals administered the chimaera presented a decreased time to reperfusion, higher reperfusion ratio and less bleeding effects than treatment with urokinase. These results show that the chimaera is a platelet-targeted plasminogen activator with enhanced thrombolytic and antithrombotic potency that may have advantages over currently available thrombolytic agents.

Animals↗

Ricin detection by biological signal amplification in a well-in-a-well device.

This paper presents a ricin detection method based on ricin's inhibitory effects on protein synthesis. Biological synthesis (expression) of a protein includes the steps of gene transcription (DNA --> RNA) and protein translation (RNA --> proteins); these reactions can be coupled into a one-step operation and carried out in a cell-free medium. Ricin is known to inhibit protein synthesis by interacting with 28S ribosome RNA; the inhibitory effect is exploited as the sensing mechanism in this work. For each copy of DNA, thousands of copies of proteins can be produced. As a result, the inhibitory effects of ricin are amplified, leading to a significantly enhanced detection signal (the difference between the positive control and samples). An array of protein expression units is developed to accommodate positive/negative controls and multiple samples. The array device contains a solution without any reagent captured on a solid surface, offering flexibility without comprising the activities of biomolecules. The miniaturized well-in-a-well design possesses a mechanism to supply nutrients continuously and remove byproducts, leading to higher protein expression yields and thus larger detection signals (lower detection limit) when ricin is present. We demonstrate the production of green fluorescent protein and luciferase in the device. A calibration curve has been obtained between the luciferase expression yield and the ricin concentration, showing a detection limit of 0.01 nM (0.3 ng/mL) ricin. The nested-well device is also used for measuring the toxicity level of ricin after physical or chemical treatment.

Calibration↗

Cloning, purification and biochemical characterization of a thrombus-ditargeting thrombolytic agent, comprised of annexin B1, ScuPA-32K and fibrin-adherent peptide.

The development of thrombolytic agent could provide invaluable progress for antithrombotic therapy. In this paper, we reported the cloning, purification and biochemical characterization of AnxB1ScuPAFap, a thrombus-ditargeting chimera composed of annexin B1, low molecular single-chain urokinase (ScuPA-32K) and fibrin-adherent peptide (dodecapeptide, Fap). In vitro test showed that, the chimera was a thrombolytic agent with anticoagulant activity and thrombus-ditargeting with the activated-platelet membrane binding and fibrin clot binding activity. Compared to urokinase, the chimera had less reperfusion time, higher reperfusion ratio, and less bleeding effects on coronary thrombolysis by clot lysis assay in dogs. Thus, the chimera appeared to be suitable for thrombolytic therapy of thrombus diseases.

Animals↗

On the possibility of applying noncovalent dyes for protein labeling in isoelectric focusing.

Noncovalent fluorescent dyes are widely used for protein quantification and postcolumn detection in electrophoretic separations and recently some attempts to separate the precolumn labeled proteins using isoelectric focusing (IEF) have been made. In the present study, the possibility of applying the technique of protein labeling with noncovalent dyes for IEF is investigated. We found that fluorescent signal emitted by NanoOrange dye increases essentially in presence of carrier ampholyte (CA) components, which makes problematic a reliable protein detection in CA environment. Since in an isoelectric focusing mode the CA species are present in much greater concentration than the concentrations of fractionated proteins, the method of protein labeling with NanoOrange is not suitable for precolumn labeling and cannot be used for CA-IEF, at least without more detailed study of the dye-protein interaction mechanism.

Ampholyte Mixtures↗

Single-nucleotide polymorphisms of mismatch repair genes in healthy Chinese individuals and sporadic colorectal cancer patients.

Mismatch repair (MMR) genes are among of the most important genes associated with colorectal cancer (CRC). Single-nucleotide polymorphisms (SNPs) are generally thought to provide important information across a wide spectrum of life sciences; however, no study of association between SNPs of MMR genes and Chinese sporadic colorectal cancer (SCRC) is available. We chose 29 reported single-nucleotide variants that have rarely been verified in a population-based study. We identified SNPs and the genotype-phenotype association in Chinese populations of 150 healthy individuals and 160 SCRC patients. We extracted the genomic DNA from the blood of these individuals and used sequencing to determine these SNPs. Three SNPs (MLH1 394G-->C, 655A-->G, 1151T-->A) occurred with a frequency of 8.8-11.2% in the Chinese population. These SNPs formed a series with combined effects. The haplotype of concurrent MLH1 655 and 1151 SNPs and the haplotype combinations of MLH1 1151, MLH1 394 occurred exclusively in SCRC. None of the other 26 variants were detected in the Chinese population.

Adaptor Proteins, Signal Transducing↗

Toxin detection by a miniaturized in vitro protein expression array.

A novel concept for toxin detection is presented that is based on the inhibitory effects of certain toxins on protein synthesis. Biological synthesis of proteins is called protein expression, which consists of the steps of DNA transcription and protein translation. In the toxin detection concept, a group of proteins are expressed simultaneously in a device consisting of an array of miniaturized wells. The expression yields of these proteins are inhibited by presence of a toxin. Differential inhibitory effects of each toxin on the expression of proteins in wells result in a response pattern (or signature) of the array device, which can be used as a tool for detection and identification of known and unknown agents. The concept has been demonstrated by in vitro protein expression of three proteins, including green fluorescent protein (GFP), chloramphenicol acetyltransferase (CAT), and luciferase. The production yields of these proteins in a cell-free medium were inhibited differentially by two toxin simulants, tetracycline (TC) and cycloheximide (CH). We confirmed that TC has an inhibitory effect on the production of GFP and CAT in the E. coli expression system whereas CH has a negligible effect. Moreover, the degree of TC's inhibitory effect on GFP is different from that on CAT. We also observed an opposite disparity; TC has a negligible inhibitory effect on the luciferase production in the rabbit reticulocyte expression system, whereas CH has a significant inhibitory effect. In addition, we obtained a response pattern in a 3 x 4 array device; the results suggest the feasibility of toxin detection based on the mechanisms of toxin actions. The device and method are also likely applicable to high-throughput drug screening, evident from the fact that TC is an antibiotic medicine.

Animals↗

Label-free hybridization detection of a single nucleotide mismatch by immobilization of molecular beacons on an agarose film.

We developed a new technique to immobilize a set of molecular beacons on an agarose film-coated slide and found that it has the ability to identify a single nucleotide difference in label-free DNA targets. The annealing properties, specificity and hybridization dynamics of the present technique were compared with those of the conventional technique that directly immobilizes molecular beacons on a planar glass slide. It is demonstrated that the molecular beacon array on an agarose film has high quench efficiency, an excellent discrimination ratio for single nucleotide mismatches and a short detection time. We hypothesize that such a low fluorescence background and high specificity molecular beacon array will find practical applications in label-free, high-throughput mutation analysis and disease diagnosis.

Base Sequence↗