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Biomedical subjects

H Yan

Publications and source records attributed to H Yan.

At least 109 records · Page 6Linked to original sources

Structural and Thermodynamic Properties of Solutions of Butane in Aqueous Sodium Dodecyl Sulfate: A Study Using Neutron Scattering and Solubility Measurements.

The solubility of n-butane at a pressure of 1.013 bar in aqueous solutions of sodium dodecyl sulfate (SDS) has been measured over a range of concentration from below the critical micelle concentration (CMC) at about 8 mol kg(-1) to about 90 mol kg(-1) at three different temperatures. The free energy, enthalpy, and entropy of transfer of butane from water to the micelle were respectively -19.0 kJ mol(-1), 5.5 kJ mol(-1), and 80 J K(-1) mol(-1). At 68 mol kg(-1) a transition was found with a free energy of about -400 J mol(-1). Small-angle neutron experiments were used to study the effect of butane on the state of aggregation of the SDS. For each butane molecule incorporated into a micelle, the aggregation number of the SDS increased by an average of about 1.4 molecules. Thus, at 1.013 bar of butane and 50 mM SDS, where the solubility is about 1 butane to 10 SDS, the average micelle increases in size by about 20%, most of which comes from the additional SDS molecules. The aggregation behavior is qualitatively similar to that reported for hexane, heptane, and octane, but the effect seems to be larger for butane for a given volume of solute hydrocarbon. Small-angle scattering did not observe any substantial change in structure across the phase transition at 68 mol kg(-1). Copyright 1999 Academic Press.

Journal Article↗

NMR study of the binding of all-trans-retinoic acid to type II human cellular retinoic acid binding protein.

Cellular RA binding proteins are thought to play important roles in the (RA), a hormonally active metabolite of vitamin A that has profound effects on cell growth, + differentiation and morphogenesis. Binding of RA to type II human cellular RA binding proteins (CRABPII) has been investigated by NMR spectroscopy. The sequential resonance assignments of +CRABPII in the presence of RA were established by heteronuclear three-dimensional NMR at pH 7.3. The resonance assignments of the bound RA were achieved by homonucl NMR. The secondary structures of holo-CRABPII determined by NMR were ess as revealed by the crystal structure of holo-CRABPII. Most of the nuclear Overhauser effects (NOEs) between CRABPII and the bound RA were consistent with those predicted crystal structure of holo-CRABPII. The results suggested that the conformations in solution and in the crystalline state are highly similar. Compared to the ligand binding pocket, especially the ligand entrance, was stabilize Ser12-Leu18, one of the structure elements that constitute the ligand binding pocket, became more mobile upon binding of RA. Intramolecular NOEs between protons of the bo the carboxylate end of the bound RA is well fixed but the β-ionone

Amino Acid Sequence↗

The design and synthesis of ALS inhibitors from pharmacophore models.

In search of new ALS inhibitors without the previous knowledge of receptor crystal structure, DISCO module was applied to produce 3D-pharmacophore models, which provided information to design novel molecules by 3D-database searching. Then a number of molecules were synthesized. Several of them have some ALS inhibitory activities.

Acetolactate Synthase↗

Inactivation and loss of antigenicity of esterase by sugars and a steroid.

Glycation, the non-enzymic reaction of sugars with proteins, has an important role in the complications of diabetes. It has been studied mostly in structural proteins but more recently has been shown to inactivate enzymes. Previous evidence from our laboratory indicated that glycation-induced inactivation and loss of antigenicity of catalase and superoxide dismutase are simultaneous. Esterase, which decreases activity in the lens in senile cataract and diabetes, was measured by a spectrophotometric assay using p-nitrophenyl acetate as the substrate. Here we investigated the inactivation of carboxylesterase (EC 3.1.1.1) by sugars of different glycating power and prednisolone-21-hemisuccinate while simultaneously monitoring the loss of antigenicity. Antigenicity was assessed by immunoprecipitation and by dot-blotting the glycated and non-glycated fractions of enzymes separated by affinity chromatography. Ribose and fructose inactivated more rapidly than glucose and glucose 6-phosphate. The esterase was progressively inactivated by prednisolone-21-hemisuccinate at a lower concentration. Activity and antigenicity were lost simultaneously. The glycated enzyme had entirely lost its antigenicity. These results further support the idea that inactivation of enzyme and loss of antigenicity are simultaneous.

Aging↗

Effects of Chain Length and Structure of Cationic Surfactants on the Adsorption onto Na-Kaolinite.

The adsorption of a series of alkylammonium bromides (RR1N(CH3)2Br) with different chain lengths R and R1 on a nonswelling clay surface (sodium kaolinite) has been studied by microelectrophoresis and adsorption isotherms. An increase in the number of CH2 groups in the shorter alkyl chain of the double-chain surfactant, or the introduction of another kind of alkyl group (phenyl group), was found to have much less effect on the adsorption behavior than changing the length of the alkyl chain in the single-chain surfactants. It is inferred that the effective hydrophobicity of the shorter chains in these double-chain surfactants is reduced by their intramolecular association with the longer chain. Comparison of adsorption and micellization leads to an empirical quantitative description of the effects of alkyl chain length and structure on adsorption. Copyright 1999 Academic Press.

Journal Article↗

NMR solution structure of domain 1 of human annexin I shows an autonomous folding unit.

Annexins are excellent models for studying the folding mechanisms of multidomain proteins because they have four-eight homologous helical domains with low identity in sequence but high similarity in folding. The structure of an isolated domain 1 of human annexin I has been determined by NMR spectroscopy. The sequential assignments of the 1H, 13C, and 15N resonances of the isolated domain 1 were established by multinuclear, multidimensional NMR spectroscopy. The solution structure of the isolated domain 1 was derived from 1,099 experimental NMR restraints using a hybrid distance geometry-simulated annealing protocol. The root mean square deviation of the ensemble of 20 refined conformers that represent the structure from the mean coordinate set derived from them was 0. 57 +/- 0.14 A and 1.11 +/- 0.19 A for the backbone atoms and all heavy atoms, respectively. The NMR structure of the isolated domain 1 could be superimposed with a root mean square deviation of 1.36 A for all backbone atoms with the corresponding part of the crystal structure of a truncated human annexin I containing all four domains, indicating that the structure of the isolated domain 1 is highly similar to that when it folded together with the other three domains. The result suggests that in contrast to isolated domain 2, which is largely unfolded in solution, isolated domain 1 constitutes an autonomous folding unit and interdomain interactions may play critical roles in the folding of annexin I.

Amino Acid Sequence↗

Nucleoside monophosphate kinases: structure, mechanism, and substrate specificity.

The catalytic mechanisms of adenylate kinase, guanylate kinase, uridylate kinase, and cytidylate kinase are reviewed in terms of kinetic and structural information that has been obtained in recent years. All four kinases share a highly related tertiary structure, characterized by a central five-stranded parallel beta-sheet with helices on both sides, as well as the three regions designated as the CORE, NMPbind, and LID domains. The catalytic mechanism continues to be refined to higher levels of resolution by iterative structure-function studies, and the strengths and limitations of site-directed mutagenesis are well illustrated in the case of adenylate kinase. The identity and roles of active site residues now appear to be resolved, and this review describes how specific site substitutions with unnatural amino acid side-chains have proven to be a major advance. Likewise, there is mounting evidence that phosphoryl transfer occurs by an associative transition state, based on (a) the stereochemical course of phosphoryl transfer, (b) geometric considerations, (c) examination of likely electronic distributions, (d) the orientation of the phosphoryl acceptor relative to the phosphoryl being transferred, (e) the most likely role of magnesium ion, (f) the lack of restricted access of solvent water, and (g) the results of oxygen-18 kinetic isotope. effect experiments.

Amino Acid Sequence↗

Differential tissue distribution of the enantiomers of racemic pindolol in the rat.

Racemic pindolol, a beta-adrenoceptor and a 5-HT1A/1B receptor antagonist, has been reported to augment and accelerate the clinical efficacy of antidepressants. The (S)-enantiomer is more potent than the (R)-enantiomer both at the beta-adrenergic and at the 5-HT1A/1B receptors. A chiral HPLC column was used for determination of tissue concentrations of the enantiomers of pindolol at 90 min after 8 mg/kg s.c. of the racemate. The (S)/(R) ratio was found to vary between tissues from 1.74 in brain to 0.82 in plasma. The present findings may be important for understanding the pharmacodynamic actions of racemic pindolol.

Adipose Tissue↗

Crystal structure of 6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase, a potential target for the development of novel antimicrobial agents.

BACKGROUND: Folate cofactors are essential for life. Mammals derive folates from their diet, whereas most microorganisms must synthesize folates de novo. Enzymes of the folate pathway therefore provide ideal targets for the development of antimicrobial agents. 6-Hydroxymethyl-7,8-dihydropterin pyrophosphokinase (HPPK) catalyzes the transfer of pyrophosphate from ATP to 6-hydroxymethyl-7,8-dihydropterin (HP), the first reaction in the folate biosynthetic pathway. RESULTS: The crystal structure of HPPK from Escherichia coli has been determined at 1.5 A resolution with a crystallographic R factor of 0.182. The HPPK molecule has a novel three-layered alpha beta alpha fold that creates a valley approximately 26 A long, 10 A wide and 10 A deep. The active center of HPPK is located in the valley and the substrate-binding sites have been identified with the aid of NMR spectroscopy. The HP-binding site is located at one end of the valley, near Asn55, and is sandwiched between two aromatic sidechains. The ATP-binding site is located at the other end of the valley. The adenine base of ATP is positioned near Leu111 and the ribose and the triphosphate extend across and reach the vicinity of HP. CONCLUSIONS: The HPPK structure provides a framework to elucidate structure/function relationships of the enzyme and to analyze mechanisms of pyrophosphoryl transfer. Furthermore, this work may prove useful in the structure-based design of new antimicrobial agents.

Adenosine Triphosphate↗

A possible function of DNA curvature in a vector system that allows efficient expression of heterologous proteins in CHO cells.

A cis-acting element derived from the nontranscribed spacer region of murine rDNA allows efficient expression of heterologous proteins in transformed Chinese hamster ovary (CHO) cells. Analysis of the structural conformation of this cis-acting element revealed that it has a DNA curvature. Whether the DNA curvature plays any roles in regulating expression of heterologous proteins or not has been studied.

Animals↗

Salt-resistant alpha-helical cationic antimicrobial peptides.

Analogues based on the insect cecropin-bee melittin hybrid peptide (CEME) were studied and analyzed for activity and salt resistance. The new variants were designed to have an increase in amphipathic alpha-helical content (CP29 and CP26) and in overall positive charge (CP26). The alpha-helicity of these peptides was demonstrated by circular dichroism spectroscopy in the presence of liposomes. CP29 was shown to have activity against gram-negative bacteria that was similar to or better than those of the parent peptides, and CP26 had similar activity. CP29 had cytoplasmic membrane permeabilization activity, as assessed by the unmasking of cytoplasmic beta-galactosidase, similar to that of CEME and its more positively charged derivative named CEMA, whereas CP26 was substantially less effective. The activity of the peptides was not greatly attenuated by an uncoupler of membrane potential, carbonyl cyanide-m-chlorophenylhydrazone. The tryptophan residue in position 2 was shown to be necessary for interaction with cell membranes, as demonstrated by a complete lack of activity in the peptide CP208. Peptides CP29, CEME, and CEMA were resistant to antagonism by 0.1 to 0.3 M NaCl; however, CP26 was resistant to antagonism only by up to 160 mM NaCl. The peptides were generally more antagonized by 3 and 5 mM Mg2+ and by the polyanion alginate. It appeared that the positively charged C terminus in CP26 altered its ability to permeabilize the cytoplasmic membrane of Escherichia coli, although CP26 maintained its ability to kill gram-negative bacteria. These peptides are potential candidates for future therapeutic drugs.

Alginates↗

Biological properties of structurally related alpha-helical cationic antimicrobial peptides.

A series of alpha-helical cationic antimicrobial peptide variants with small amino acid changes was designed. Alterations in the charge, hydrophobicity, or length of the variant peptides did not improve the antimicrobial activity, and there was no statistically significant correlation between any of these factors and the MIC for Pseudomonas aeruginosa, Escherichia coli, or Salmonella typhimurium. Individual peptides demonstrated synergy with conventional antibiotics against antibiotic-resistant strains of P. aeruginosa. The peptides varied considerably in the ability to bind E. coli O111:B4 lipopolysaccharide (LPS), and this correlated significantly with their antimicrobial activity and ability to block LPS-stimulated tumor necrosis factor and interleukin-6 production. In general, the peptides studied here demonstrated a broad range of activities, including antimicrobial, antiendotoxin, and enhancer activities.

Amino Acid Sequence↗

Treatment of congenital aneurysms of the left atrium and left atrial appendage.

We report 2 cases of congenital aneurysm, 1 of the left atrium and 1 of the left atrial appendage. The patients were 14 and 27 years of age, respectively. Their common symptoms were paroxysmal palpitations and dyspnea. Diagnoses were suggested by chest radiographic films that revealed prominent convexity at the upper left border of the heart and were confirmed by echocardiography, which demonstrated a large cystic mass attached to the left atrium in each case. Aneurysmectomy was performed through a median sternotomy or a left thoracotomy, with cardiopulmonary bypass in 1 patient and without it in the other. Both patients were discharged, free of symptoms, in sinus rhythm. We conclude that echocardiography can provide a clear diagnosis and that aneurysmectomy is the treatment of choice.

Adolescent↗

[Gene transfer efficiency enhancement by inactivated Coxsakie virus B1 in primary skeletal muscle cells].

OBJECTIVE: To study the effect of inactivated Coxsackie virus B1(CVB1), which was considered to have high affinity to skeletal muscle cell, on gene transfer efficiency of reporter gene, pCDNA3-LacZ, in primary muscle cells. METHODS: Viruses were purified by polyethylene sedimentation followed by sucrose supercentrifugation. Virus, transferrin-polylysine(TfpL) and LacZ were designed as different concentrations and groups, then positive cells contained beta-galactosidase were calculated as gene transfer efficiency. RESULTS: Inactivated CVB1 made an enhancement of gene transfer efficiency from less than 1% in TfpL+LacZ group to 15-20 per cent in CVB1+TfpL+LacZ group. CONCLUSION: Like adenovirus, inactivated CVB1 can also increase gene transfer efficiency in muscle cells, which provides experimental basis for constructing new vector targeting to muscle cells.

Cells, Cultured↗

Observation of the efficacy of acupuncture and moxibustion in 62 cases of chronic colitis.

62 patients with chronic colitis were randomly divided into two groups. Acupuncture and moxibustion at acupoints such as Tianshu (St 25), Guanyuan (Ren 4) were applied in the treatment group, and western drugs were applied in the control group. The results showed that acupuncture and moxibustion had a marked curative effective with few side effects, and therefore was readily acceptable to the patients.

Acupuncture Therapy↗

[Depressive disorders among outpatients in general hospitals].

OBJECTIVE: To investigate the prevalence, recognition and treatment of depressive disorders among outpatients in general hospitals. METHODS: 26,969 outpatients of general hospitals 15 countries were interviewed by GHQ-28, CIDI and physician interview scale in two-stage case identification process. In Shanghai, 583 patients were interviewed by all scales, among them men and women were in 38.0% and 62.0% respectively. RESULTS: Among all the psychological problems, the prevalence of depressive disorders was listed as the first one. The prevalence of major depression and dysthymia in the whole sample was 10.4% and 2.1% respectively and in Shanghai it was 4.0% and 0.6% respectively. The recognized rate of depressive disorders by physician in Shanghai was 21%, which was much lower than 55.6%--the medium among the fifteen countries. The treatment of depressive disorders by physician was inadequate. None of antidepressants was prescribed by any of physician for the recognized depressive disorders in Shanghai. CONCLUSIONS: Depressive disorders are the most common psychological problems in the outpatients of general hospitals, but they are under-recognized and inadequately treated in general hospitals. Reeducation of physician on mental health knowledge must be emphasized by the whole society.

China↗

[The development and applications of digital signal processing (DSP)-chip].

Due to the limitation of operation speed, real time performance of digital signal processing (DSP) system is far from that of analog signal processing system in decades ago. Since early 80's, DSP chips have been greatly improved in the following aspects: operation speed, computation precision, fabrication technics, cost, chip volume, operational power supply voltage, weight and power consumption. Furthermore, development tools and methods have been developed greatly. Modern DSP chips can be operated very fast, which make the implementation of many DSP based signal processing system possible. Now DSP chips have been widely applied successfully in communication, automatic control, aerospace and medicine. DSP based technology has very promising future in manned space flight area.

Aerospace Medicine↗