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Biomedical subjects

X Cheng

Publications and source records attributed to X Cheng.

At least 253 records · Page 14Linked to original sources

Charge-state shifting of individual multiply-charged ions of bovine albumin dimer and molecular weight determination using an individual-ion approach.

Ion-molecule reactions of individual multiply-protonated ions of bovine albumin dimer, formed from electrospray ionization, have been studied using a Fourier transform ion cyclotron resonance mass spectrometer. Upon reaction of ammonia with a group of individual ions, charge-state shifting was observed due to proton transfer. Repeated additions of ammonia during remeasurements of the same ion population were observed to induce multiple-step charge-state shifts. Charge-state-dependent reactivity, as well as nonstatistical behavior in reactivity, was observed due to the small ion population. The molecular weights of individual ions whose charge state shifted during reaction were determined with an accuracy of 67 ppm, the first example of using an individual-ion approach to the determination of molecular weight for a large biopolymer. The molecular weight distribution of a group of ions can be determined with a precision related to the number of ions examined and the weight heterogeneity of the sample. We obtained the molecular weight for eight individual ions from which a molecular weight of 133,320 +/- 210 Da was calculated for bovine albumin dimer.

Animals↗

The structure of bacteriophage T7 lysozyme, a zinc amidase and an inhibitor of T7 RNA polymerase.

The lysozyme of bacteriophage T7 is a bifunctional protein that cuts amide bonds in the bacterial cell wall and binds to and inhibits transcription by T7 RNA polymerase. The structure of a mutant T7 lysozyme has been determined by x-ray crystallography and refined at 2.2-A resolution. The protein folds into an alpha/beta-sheet structure that has a prominent cleft. A zinc atom is located in the cleft, bound directly to three amino acids and, through a water molecule, to a fourth. Zinc is required for amidase activity but not for inhibition of T7 RNA polymerase. Alignment of the zinc ligands of T7 lysozyme with those of carboxypeptidase A and thermolysin suggests structural similarity among the catalytic sites for the amidase and these zinc proteases. Mutational analysis identified presumed catalytic residues for amidase activity within the cleft and a surface that appears to be the site of binding to T7 RNA polymerase. Binding of T7 RNA polymerase inhibits amidase activity.

Amidohydrolases↗

Expression, purification, crystallization, and preliminary x-ray analysis of casein kinase-1 from Schizosaccharomyces pombe.

The catalytic domain of Schizosaccharomyces pombe casein kinase-1 (the product of the cki1 gene) has been overexpressed in Escherichia coli, purified by chromatographic methods, characterized in vitro, and crystallized in the presence and absence of nucleotide substrate. The best crystals belong to the trigonal space group P3(1)21 or its enantiomorph, have unit cell parameters a = b = 79 A, c = 121 A, and diffract x-rays to 2.0-A resolution. Kinetic characterization of the purified catalytic domain and other C-terminal deletion mutants of Cki1 suggests that it is subject to two forms of regulation. One mechanism involves autophosphorylation, and results in a 4-fold decrease in the affinity for protein substrate. In contrast, truncation of intact Cki1 results in a 3-fold activation in its catalytic rate. This activation may arise from the removal of an inhibitory domain present in the intact enzyme.

Amino Acid Sequence↗

HhaI methyltransferase flips its target base out of the DNA helix.

The crystal structure has been determined at 2.8 A resolution for a chemically-trapped covalent reaction intermediate between the HhaI DNA cytosine-5-methyltransferase, S-adenosyl-L-homocysteine, and a duplex 13-mer DNA oligonucleotide containing methylated 5-fluorocytosine at its target. The DNA is located in a cleft between the two domains of the protein and has the characteristic conformation of B-form DNA, except for a disrupted G-C base pair that contains the target cytosine. The cytosine residue has swung completely out of the DNA helix and is positioned in the active site, which itself has undergone a large conformational change. The DNA is contacted from both the major and the minor grooves, but almost all base-specific interactions between the enzyme and the recognition bases occur in the major groove, through two glycine-rich loops from the small domain. The structure suggests how the active nucleophile reaches its target, directly supports the proposed mechanism for cytosine-5 DNA methylation, and illustrates a novel mode of sequence-specific DNA recognition.

5-Methylcytosine↗

The DNA (cytosine-5) methyltransferases.

The m5C-MTases form a closely-knit family of enzymes in which common amino acid sequence motifs almost certainly translate into common structural and functional elements. These common elements are located predominantly in a single structural domain that performs the chemistry of the reaction. Sequence-specific DNA recognition is accomplished by a separate domain that contains recognition elements not seen in other structures. This, combined with the novel and unexpected mechanistic feature of trapping a base out of the DNA helix, makes the m5C-MTases an intriguing class of enzymes for further study. The reaction pathway has suddenly become more complicated because of the base-flipping and much remains to be learned about the DNA recognition elements in the family members for which structural information is not yet available.

Amino Acid Sequence↗

Analysis of the humoral response elicited in mice by a chimeric peptide representing variable segments I and IV of the major outer membrane protein of Chlamydia trachomatis.

A synthetic chimeric peptide representing the variable segments I (VS I) and IV of the major outer membrane protein (MOMP) of Chlamydia trachomatis, serovars C and E respectively, was studied to determine its ability to elicit a neutralizing humoral response in mice. Antibody responses varied to the peptide in the five inbred strains of mice, A/J(H-2a), DBA/1(H-2q), C57BL/10(H-2b), CBA/J(H-2k), Balb/c(H-2d), that were immunized. There was a spectrum of antibody responses which ranged from high ELISA and IFA titres by the C57BL/10 mice to little or no response by Balb/c mice. Antisera from C57BL/10 mice recognized all 15 serovars of C. trachomatis in a dot blot assay. A pepscan of the antisera from C57BL/10 mice showed strong reactivity to both neutralizing epitopes VAGLQNDPT in VS I of serovar C and the species-conserved peptide, TLNPTIA, in the VS IV. This antiserum neutralized, in vitro, the infectivity of serovars representing the B complex (B, D and E), C complex (C and J), B-related (F) and C-related (L3) complexes. In an attempt to elicit a stronger response to the peptide in the weakly reactive Balb/c and the DBA/1 strains, the peptide was conjugated to the carrier, keyhole limpet haemocyanin (KLH). All mice immunized with the KLH-peptide produced high-titred antisera that recognized neutralizing epitopes in VS I and VS IV and strongly neutralized the infectivity of both serovars C and E.

Amino Acid Sequence↗

Interaction of calmodulin with synthetic deletion peptides of melittin.

The 26-residue peptide melittin present in bee venom has been shown to bind calmodulin tightly. In this study we synthesized the following series of deletion peptides of melittin by the solid-phase method: Mel12, Mel13, Mel14, Mel15, Mel15F. The results of this study show that the deletion peptides Mel14 and Mel15 have almost the same binding activity as the intact native peptide. Each deletion peptide forms a 1:1 complex with calmodulin according to electrophoresis analysis. When the tryptophanyl residue of Mel15 was replaced by the phenylalaninyl residue, the dissociation constant of the peptide-calmodulin complex increased. This shows the importance of the tryptophanyl residue for binding to calmodulin.

Amino Acid Sequence↗

Identification of serotype 1-, 3-, and 6-specific antigens of Ureaplasma urealyticum by using monoclonal antibodies.

Little is known about the antigens responsible for serotype specificity in Ureaplasma urealyticum. We produced monoclonal antibodies to U. urealyticum serotypes 1, 3, and 6, the serotypes most commonly found in pregnant women, and analyzed serotype-specific antigens for the three serotypes. Clinical isolates belonging to serotype 1, 3, or 6 were tested in immunoblots with these monoclonal antibodies. The immunoblot patterns of these isolates were, in most cases, different from each other as well as from those of the reference strains, indicating a high rate of antigenic variation among U. urealyticum strains.

Antibodies, Bacterial↗

[Evaluation of the clinical acute electrophysiological effects of propafenone using transesophageal atrial pacing].

The clinical acute electrophysiological effects of propafenone were evaluated using transesophageal atrial pacing (TEAP) in 65 patients with various arrhythmias. The mean age of the patients was 41 years. Incremental pacing and programmed ectopic stimulation were performed on each patient before and during drug administration. Propafenone was given as a bolus injection of 1.5mg.kg-1 body weight followed by drip infusion at a rate of 1 mg.min-1. S-R, P wave, P-R and QRS intervals were prolonged from 194.43 +/- 21.59, 97.49 +/- 10.92, 148.00 +/- 16.20 and 82.21 +/- 7.18ms 223.00 +/- 29.25, 100.22 +/- 10.60, 166.60 +/- 20.10 and 86.54 +/- 7.19ms, respectively (P < 0.005), A-V conduction system effective refractory period (AVCSERP) was prolonged from 316.35 +/- 82.97ms to 360.31 +/- 82.67ms (P < 0.0001) in the treated group. There was no change of atrial ERP and QTc interval (P > 0.05). Fast and slow pathway ERP was prolonged by 13% and 28% of the control value, respectively (P < 0.015), and accessory pathway ERP was prolonged from 278.89 +/- 27.13ms to 305.56 +/- 33.58ms (P < 0.001), in the treated group. Sinus cycle length, corrected sinus nodal recovery time and total sinus-atrial conductive time were significantly prolonged (P < 0.0001). The results can partially explain the antiarrhythmic effects and the side effects of propafenone. TEAP is dependable in evaluating the clinical electrophysiological effects of drugs.

Adolescent↗

Effects of liuwei dihuang wan [symbol: see text:bd and some other TCM drugs on bone biomechanics and serum 25 (OH)D3 content in rats.

After a relatively long-term injection of hydrocortisone into rats, the strength of bone (anti-stress capacity) reduced evidently, while the rigidity (anti-deformity capacity) increased markedly (ie, bone fragility elevated). At the same time, the content of serum 25(OH)D3 decreased remarkably. After oral administration of Liuwei Dihuang Wan ([see symbol: see text]), anti-stress capability of bone increased evidently and its anti-deformity capability returned to normal; however, there was no elevation of serum 25(OH)D3 content. The effect of Longmu Zhuanggu Chongji ([see symbol: see text]) or Jisheng Shenqi Wan (see symbol: see text]) was lower than that of Liuwei Dihuang Wan. The experiments suggests that Liuwei Dihuang Wan is beneficial to preventing and curing osteoporosis, but no correlation between its mechanism and the metabolism of 25(OH)D3 was demonstrated.

Animals↗

[Effects of monoclonal antibodies on phagocytosis of Entamoeba histolytica to human erythrocytes].

Two monoclonal antibodies 3F7 and 4G6 were produced respectively against plasma membrane and nucleus-cytoplasm of Entamoeba histolytica. The erythrocytophagous quantification and ability of pathogenic strain HM-1:IMSS were evaluated by microscopy immediately at 5 min and 10 min after incubation with McAb 3F7 and McAb 4G6. Sera from normal mice and monoclonal antibody TCE 04 against Trypanosoma cruzi were prepared as negative controls. The McAb 3F7 showed stronger inhibitory action on the erythrocytophagous effect of HM-1:IMSS than the McAb 4G6. The result suggested a significant inhibition (P < 0.001) on erythrocytophagous effect of amoebic trophozoites in the presence of McAb 3F7. This inhibitory action appeared to have a decreasing tendency with the elapse of incubation time.

Animals↗

Mitosis-promoting factor activity of inducer mitotic cells may affect radiation yield of interphase chromosome breaks in the premature chromosome condensation assay.

We measured mitosis-promoting factor (MPF) activity in two cell lines, CHO and HeLa, extensively used at mitosis as inducers in the assay of premature chromosome condensation to study the yield and the repair kinetics of radiation damage in interphase chromosomes of diverse cell lines. We found a 2.5-fold higher MPF activity in HeLa as compared to CHO mitotic cells per mg of crude extract protein. HeLa mitotic cells, when used as inducers of premature chromosome condensation, uncovered two times more interphase chromosome breaks in irradiated, nonstimulated human lymphocytes as compared to CHO mitotic cells. A 2-fold increase in the yield of interphase chromosome breaks with HeLa mitotics was also observed in G1 cells from plateau-phase CHO cultures. Thus, MPF activity may be a contributing factor of the process that transforms radiation-induced DNA damage to chromosome breaks, and subsequently to other types of lethal chromosome aberrations. We speculate that the level and the control in the cell cycle of MPF activity may influence the radiosensitivity of cells to killing. The results strongly suggest that a direct comparison between the yields of interphase chromosome breaks measured in different laboratories may not be possible unless similar inducer cells with similar MPF activity are used.

Amino Acid Sequence↗

Energetics of intersubunit and intrasubunit interactions of Escherichia coli adenosine cyclic 3',5'-phosphate receptor protein.

Escherichia coli cAMP receptor protein (CRP) regulates the expression of a large number of catabolite-sensitive genes. The mechanism of CRP regulation most likely involves communication between subunits and domains. A specific message, such as the activation of CRP, may be manifested as a change in the interactions between these structural entities. Hence, the elucidation of the regulatory mechanism would require a quantitative evaluation of the energetics involved in these interactions. Thus, a study was initiated to define the conditions for reversible denaturation of CRP and to quantitatively assess the energetics involved in the intra- and intersubunit interactions in CRP. The denaturation of CRP was induced by guanidine hydrochloride. The equilibrium unfolding reaction of CRP was monitored by three spectroscopic techniques, namely, fluorescence intensity, fluorescence anisotropy, and circular dichroism. The spectroscopic data implied that CRP unfolds in a single cooperative transition. Sedimentation equilibrium data showed that CRP is dissociated into its monomeric state in high concentrations of denaturant. Unfolding of CRP is completely reversible, as indicated by fluorescence and circular dichroism measurements, and sedimentation data indicated that a dimeric structure of CRP was recovered. The functional and other structural properties of renatured and native CRP have also been examined. Quantitatively identical results were obtained. Results from additional studies as a function of protein concentration and from computer simulation demonstrated that the denaturation of CRP induced by guanidine hydrochloride proceeds according to the following pathway: (CRP2)Native<-->2(CRP)Native<-->2(CRP)Denatured. The delta G values for dissociation (delta Gd) and unfolding (delta G(u)) in the absence of guanidine hydrochloride were determined by linear extrapolation, yielding values of 12.0 +/- 0.6 and 7.2 +/- 0.1 kcal/mol, respectively. To examine the effect of the DNA binding domain on the stability of the cAMP binding domain, two proteolytically resistant cAMP binding cores were prepared from CRP in the presence of cAMP by subtilisin and chymotrypsin digestion, yielding S-CRP and CH-CRP, respectively. Results from an equilibrium denaturation study indicated that the denaturation of both CH-CRP and S-CRP is also completely reversible. Both S-CRP and CH-CRP exist as stable dimers with similar delta Gd values of 10.1 +/- 0.4 and 9.5 +/- 0.4 kcal/mol, respectively. Results from this study in conjunction with crystallographic data [McKay, D. B., Weber, I. T., & Stietz, T. A. (1982) J. Biol. Chem. 257, 9518-9524] indicate that the DNA binding domain and the C-helix are not the only structural elements that are responsible for subunit dimerization.(ABSTRACT TRUNCATED AT 400 WORDS)

Binding Sites↗

Crystal structure of the HhaI DNA methyltransferase complexed with S-adenosyl-L-methionine.

The first three-dimensional structure of a DNA methyltransferase is presented. The crystal structure of the DNA (cytosine-5)-methyltransferase, M.HhaI (recognition sequence: GCGC), complexed with S-adenosyl-L-methionine has been determined and refined at 2.5 A resolution. The core of the structure is dominated by sequence motifs conserved among all DNA (cytosine-5)-methyltransferases, and these are responsible for cofactor binding and methyltransferase function.

Amino Acid Sequence↗

Vaginal reconstruction with an island flap of the inferior epigastric vascular pedicle.

This paper presents a new method of vaginal reconstruction. On the basis of anatomic study, we designed an island flap obtained from the upper abdomen to carry the deep inferior epigastric vasculature. At operation, the flap was transferred to the artificial cavity created between the urinary bladder and rectum for vaginal reconstruction. Eight patients received the operation. Complete survival of the flap occurred in seven patients, and one flap failed because of a twist in the flap vascular pedicle. During a follow-up of 6 months to 2 years, it was found that the reconstructed vaginal wall was not only soft but also elastic, and the patients were able to have a satisfying sexual life after marriage.

Adult↗

Mapping of a surface-exposed B-cell epitope to the variable sequent 3 of the major outer-membrane protein of Chlamydia trachomatis.

A B-cell epitope, AEFPLDIT, was located to the variable sequent 3 of the major outer-membrane protein (MOMP) using the monoclonal antibody L3-1, raised to the Chlamydia trachomatis serovar L3 MOMP. By Western blot and inclusion immunofluorescence assay the monoclonal antibody recognized all the C complex and C-related complex serovars of C. trachomatis, except serovar C. Dot-blot and ELISA data using native elementary bodies indicated that the epitope was surface exposed. The monoclonal antibody, at concentrations of 10 and 100 micrograms per 10(7) chlamydial inclusion-forming units, was able to neutralize the infectivity of chlamydia in an in vivo assay but did not neutralize chlamydia in vitro or in a mouse toxicity assay. A peptide corresponding to the variable sequent 3 has previously been shown to also elicit a T-cell response; thus, careful consideration should be given to inclusion of this region of the major outer-membrane protein in a subunit vaccine.

Amino Acid Sequence↗