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Biomedical subjects

F Guo

Publications and source records attributed to F Guo.

At least 37 records · Page 2Linked to original sources

Standardized mortality ratio and life expectancy: a comparative study of Chinese mortality.

BACKGROUND: Various models have been proposed for rapid conversion of the standardized mortality ratio (SMR) to life expectancy using data from developed countries. METHODS: We compared two methods for converting the SMR to life expectancy using mortality data from the largest developing country, China. RESULTS: The first model, using the Gompertz function, does not provide a good fit to the life expectancy and SMR of China. The regression lines derived from the second, a log-linear model using parameters estimated from the US white population are not a good fit to Chinese males and older females. However, if the parameters in the log-linear model are estimated using Chinese mortality data, the resultant regression lines fit the data reasonably well. CONCLUSION: The relationship between life expectancy and SMR based on mortality data from developed countries may not be valid for developing countries. Based on our empirical study, separate estimates of the coefficients of the model are required for developing countries.

Adult↗

Differential expression of E-cadherin and type IV collagenase genes predicts outcome in patients with stage I non-small cell lung carcinoma.

Because routine histopathological examination of primary non-small cell lung cancer does not predict disease outcome, we correlated disease outcome with the expression level of multiple genes that regulate distinct steps of the metastatic process in 60 formalin-fixed, paraffin-embedded, archival specimens of stage I lung carcinoma from patients undergoing curative surgery at the M. D. Anderson Cancer Center. The expression of E-cadherin (related to cell cohesion), type IV collagenase [matrix metalloproteinase (MMP)-2 and MMP-9, related to invasion], and three angiogenic molecules, basic fibroblast growth factor, vascular endothelial growth factor/vascular permeability factor, and interleukin 8, were examined by a colorimetric in situ mRNA hybridization technique. The expression levels of the individual genes analyzed by a Cox univariate analysis were not prognostic. In contrast, the ratio between expression of type IV collagenases (mean of the expression of MMP-2 and MMP-9) and E-cadherin, the MMP:E-cadherin ratio (measured at the periphery of each tumor), was significantly higher in patients with recurrent disease than in patients who remained disease free (P = 0.00003). Longer overall survival and reduced disease recurrence rates were significantly associated with a lower MMP:E-cadherin ratio (<2) by a Kaplan-Meier survival analysis (P = 0.0002 and P = 0.0001, respectively). Multiple covariate analyses of overall and disease-free survival also concluded that the MMP:E-cadherin ratio was a significant prognostic factor when corrected for age (P = 0.0001). Determination of this gene expression ratio in individual human lung cancers might therefore be used to direct tailored treatment for individual patients with resectable lung cancer.

Adult↗

[Selective isolation of isopsoralen from crude extract of Psoralea corylifolia. L by using inclusion method of host-guest molecules].

AIM: To isolate the chemical components from extracted crude of Psoralea corylifolia L. METHODS: Applicate the function of molecular recognition in supramolecular chemistry, use 1,1,6,6-tetraphenylhexa-2,4-diyne-1,6-diol as the host molecule and chemical components in extracted crude of Psoralea corylifolia L. as guest molecules, which represent different from either in sort, quantity and sites of function groups or in structural topological character, 1,1,6,6-tetraphenylhexa-2,4-diyne-1,6-diol could selectively form inclusion compound with component endowed with interactional complementarity and isolate as crystalline from the extracted crude of Psoralea corylifolia L. RESULTS: The isopsoralen as guest molecule is selectively included by 1,1,6,6-tetraphenylhexa-2,4-diyne-1,6-diol in inclusion crystal and removed by acetone from the inclusion compound and total yield is 0.18%. Isopsoralen is determined by UV, IR, 1HNMR and MS and its inclusion compound is determined by means of IR, powder XRD and single crystal XRD. The isolation effect is analyzed by GC/MS. CONCLUSION: The method is simple and selective for isolation isopsoralen from extracted crude of Psoralea corylifolia L.

Furocoumarins↗

[Effects of permissive hypercapnia on pulmonary mechanics and hemodynamics in sheep with acute lung injury].

OBJECTIVE: To study the effects of permissive hypercapnia (PHC) on pulmonary mechanics and hemodynamics in sheep with acute lung injury (ALI). METHODS: In 18 sheep with LPS induced ALI, gas exchange, pulmonary mechanics and hemodynamics were observed at different tidal volumes (VT). RESULTS: When VT was decreased from 16 ml/kg to 4-7 ml/kg, PHC was induced. Arterial pressure of carbon dioxide increased markedly, arterial oxygen pressure, oxygen saturation and mixed venous oxygen saturation decreased (P < 0.05). Airway pressure decreased significantly (P < 0.05), but the airway resistance increased. Systemic and pulmonary vascular resistance index, right and left ventricular stroke work index increased in PHC, but heart rate decreased (P < 0.05). Compared with VT 16 ml/kg, cardiac index decreased markedly in PHC. In static pressure-volume curve, the pressure of upper inflection point was (21.8 +/- 3.2) cm H2O, volume was (10.7 +/- 1.3) ml/kg. CONCLUSIONS: Alveolar overdistention may be prevented only when airway plateau pressure is less than 20-25 cm H2O, but cardiac index is decreased.

Animals↗

Rehabilitative therapy of short bowel syndrome: experimental study and clinical trial.

OBJECTIVES: To investigate the effect of growth hormone on proliferative activity of the residual small intestinal mucosa after massive small intestinal resection and to evaluate the clinical efficacy of bowel rehabilitative therapy for short bowel syndrome. METHODS: Small intestinal mucosa proliferative activity were compared in rats from control group (sham operation), short bowel group (80% small bowel resection) and growth hormone treatment group (80% small bowel resection + growth hormone 1 U x kg(-1) x d(-1) for 28 days) with the aid of histology image analysis, flow cytometric assay, immunohistochemistry analysis and RT-PCR assay. The nutritional status, D-xylose absorption and stool nitrogen output were observed in 9 consecutive parenteral nutrition dependent patients with short bowel syndrome after intestinal rehabilitative therapy (growth hormone 8 - 12 U x kg(-1) x d(-1) im + glutamine 0.6 g x kg(-1) x d(-1) iv + special diet) for 21 continuous days. RESULTS: Growth hormone administration significantly increased rat small intestinal mucosal villous height, mucosal thickness, proliferative index, and the expression of proliferating cell nuclear antigen and c-jun mRNA. Rehabilitative therapy increased the body weight, serum total protein and album in concentrations in patients. Their D-xylose absorption indices increased and fecal nitrogen losses decreased. Follow-up data showed that 6 of the 9 patients sustained on enteral nutrition. CONCLUSION: Growth hormone enhances the proliferative activity of the mucosal epithelium and bowel rehabilitative therapy may benefit the patients with short bowel syndrome.

Adolescent↗

ClpA and ClpP remain associated during multiple rounds of ATP-dependent protein degradation by ClpAP protease.

The Escherichia coli ClpA and ClpP proteins form a complex, ClpAP, that catalyzes ATP-dependent degradation of proteins. Formation of stable ClpA hexamers and stable ClpAP complexes requires binding of ATP or nonhydrolyzable ATP analogues to ClpA. To understand the order of events during substrate binding, unfolding, and degradation by ClpAP, it is essential to know the oligomeric state of the enzyme during multiple catalytic cycles. Using inactive forms of ClpA or ClpP as traps for dissociated species, we measured the rates of dissociation of ClpA hexamers or ClpAP complexes. When ATP was saturating, the rate constant for dissociation of ClpA hexamers was 0.032 min(-1) (t(1/2) of 22 min) at 37 degrees C, and dissociation of ClpP from the ClpAP complexes occurred with a rate constant of 0. 092 min(-1) (t(1/2) of 7.5 min). Because the k(cat) for casein degradation is approximately 10 min(-1), these results indicate that tens of molecules of casein can be turned over by the ClpAP complex before significant dissociation occurs. Mutations in the N-terminal ATP binding site led to faster rates of ClpA and ClpAP dissociation, whereas mutations in the C-terminal ATP binding site, which cause significant decreases in ATPase activity, led to lower rates of dissociation of ClpA and ClpAP complexes. Dissociation rates for wild-type and first domain mutants of ClpA were faster at low nucleotide concentrations. The t(1/2) for dissociation of ClpAP complexes in the presence of nonhydrolyzable analogues was >/=30 min. Thus, ATP binding stabilizes the oligomeric state of ClpA, and cycles of ATP hydrolysis affect the dynamics of oligomer interaction. However, since the k(cat) for ATP hydrolysis is approximately 140 min(-1), ClpA and the ClpAP complex remain associated during hundreds of rounds of ATP hydrolysis. Our results indicate that the ClpAP complex is the functional form of the protease and as such engages in multiple rounds of interaction with substrate proteins, degradation, and release of peptide products without dissociation.

Adenosine Triphosphatases↗

Asymmetric DNA bending in the Cre-loxP site-specific recombination synapse.

Cre recombinase catalyzes site-specific recombination between two 34-bp loxP sites in a variety of DNA substrates. At the start of the recombination pathway, the loxP sites are each bound by two recombinase molecules, and synapsis of the sites is mediated by Cre-Cre interactions. We describe the structures of synaptic complexes formed between a symmetrized loxP site and two Cre mutants that are defective in strand cleavage. The DNA in these complexes is bent sharply at a single base pair step at one end of the crossover region in a manner that is atypical of protein-induced DNA bends. A large negative roll (-49 degrees) and a positive tilt (16 degrees) open the major groove toward the center of the synapse and compress the minor groove toward the protein-DNA interface. The bend direction of the site appears to determine which of the two DNA substrate strands will be cleaved and exchanged in the initial stages of the recombination pathway. These results provide a structural basis for the observation that exchange of DNA strands proceeds in a defined order in some tyrosine recombinase systems. The Cre-loxS synaptic complex structure supports a model in which synapsis of the loxP sites results in formation of a Holliday junction-like DNA architecture that is maintained through the initial cleavage and strand exchange steps in the site-specific recombination pathway.

Base Sequence↗

The role of the non-conserved residue at position 104 of class A beta-lactamases in susceptibility to mechanism-based inhibitors.

The role of the non-conserved amino acid residue at position 104 of the class A beta-lactamases, which comprises a highly conserved sequence of amino acids at the active sites of these enzymes, in both the hydrolysis of beta-lactam substrates and inactivation by mechanism-based inhibitors was investigated. Site-directed mutagenesis was performed on the penPC gene encoding the Bacillus cereus 569/H beta-lactamase I to replace Asp104 with the corresponding Staphylococcus aureus PC1 residue Ala104. Kinetic data obtained with the purified Asp104Ala B. cereus 569/H beta-lactamase I was compared to that obtained from the wild-type B. cereus and S. aureus enzymes. Replacement of amino acid residue 104 had little effect on the Michaelis parameters for the hydrolysis of both S- and A-type penicillins. Relative to wild-type enzyme, the Asp104Ala beta-lactamase I had 2-fold higher Km values for benzylpenicillin and methicillin, but negligible difference in Km for ampicillin and oxacillin. However, kcat values were also slightly increased resulting in little change in catalytic efficiency, kcat/Km. In contrast, the Asp104Ala beta-lactamase I became more like the S. aureus enzyme in its response to the mechanism-based inhibitors clavulanic acid and 6-beta-(trifluoromethane sulfonyl)amido-penicillanic acid sulfone with respect to both response to the inhibitors and subsequent enzymatic properties. Based on the known three-dimensional structures of the Bacillus licheniformis 749/C, Escherichia coli TEM and S. aureus PC1 beta-lactamases, a model for the role of the non-conserved residue at position 104 in the process of inactivation by mechanism-based inhibitors is proposed.

Alanine↗

Antisense IRAK-2 oligonucleotide blocks IL-1-stimulated NF-kappaB activation and ICAM-1 expression in cultured endothelial cells.

Phosphorothioate oligodeoxynucleotide (ODN) was designed antisense to sequences of the recently cloned human IL-1 receptor associated kinase-2 (IRAK-2). Antisense IRAK-2 ODN was delivered by lipofectin encapsulation into cultured endothelial cells. The levels of NF-KB, surface expression of intracellular adhesion molecule-1 (ICAM-1), ICAM-1 and IRAK-2 mRNAs were measured by sandwich ELISA, ELISA on cells in situ, and semiquantitative reverse transcription-PCR (RT-PCR), respectively. Antisense IRAK-2 ODN inhibited IL-1-induced NF-KB activation and surface expression of ICAM-1 in a concentration (1-4 microg)- and time (5-24 h)-dependent fashion. A maximum inhibition of NF-KB activation or surface expression of ICAM-1 occurred when the cells were incubated with antisense IRAK-2 ODN 3 microg for 8 h. IL-1-induced ICAM-1 mRNA expression was also inhibited after treatment of cells with antisense IRAK-2 ODN 3 microg for 8 h. The attenuation of the cellular response to IL-1 caused by antisense IRAK-2 ODN correlated with a reduction of IRAK-2 expression. These data suggest that antisense IRAK-2 ODN may share a role in the design of antiinflammatory therapeutics.

Cells, Cultured↗

Ultrastructural changes and immunohistochemical localization of nitric oxide synthase, advanced glycation end products and NF-kappa B in aorta of streptozotocin treated Mongolian gerbils.

To evaluate the relationship among the induction of nitric oxide synthase (NOS), advanced glycation end products (AGEs) and NF-kappa B for vascular damage in hyperglycemia, we injected Mongolian gerbils intravenously with 150 mg/kg streptozotocin (STZ) and observed over the next one year the resulting aortic changes by immunohistochemical and electron microscopical techniques. After STZ treatment, hyperglycemia was confirmed and body weight transiently decreased. Morphological observation revealed no remarkable changs in vascular endothelial cells or vascular smooth muscle cells in the aorta at one week after STZ administration. After 4 weeks increased collagen fibrils were observed in the pericellular spaces of media. At one year after STZ administration, increased collagen fibrils and thickened elastic fibers were found around the vascular smooth muscle cells with vacuolization and increased cytoplasmic organellae compared with non-treated animals of the same age. Immunohistochemically endothelial constitutive NOS (ecNOS) was localized in the endothelium of the aorta of Mongolian gerbils. At one year after STZ administration, the reaction products of iNOS, AGEs and NF-kappa B in vascular endothelial cells and smooth muscle cells were much more greatly increased than at one week and 4 weeks. After STZ administration, the localization of NOS, AGEs and NF-kappa B was observed in the aorta, which suggests these factors play important roles in the pathogenesis of vasculopathy in diabetes mellitus.

Animals↗

[The establishment and application of genomic DNA extraction from peripheral blood].

OBJECTIVE: To establish the method of genomic DNA extraction. METHODS: Genomic DNA was directly extracted from peripheral blood with the use of potassium iodide. RESULTS: The genomic DNA extracted with potassium iodide was of large molecular weight. A(260)/A(280) and A(260)/ A(230) were 1.85 and 2.2 respectively. The extraction efficiency was greater than 90%. The result of PCR for the DNA was good. CONCLUSION: The method is simple, quick, economical and could be used for studying numbers of clinical samples.

DNA↗

Gender differences in determinants of temporary labor migration in China: a multilevel analysis.

Data from a 1998 migration survey in Hubei province are used to examine gender differences in the determinants of temporary labor migration from a multi-level perspective. The authors find that community level factors play a key role in temporary labor migration; models omitting community level variables are poor in predicting temporary labor migration. Significant gender differences exist in determinants of temporary labor migration. For men, temporary labor migration is mainly a response to community level factors; individual or household characteristics have little predictive power. For women, by contrast, temporary labor migration is predominantly determined by individual characteristics; community level factors are not as important.

Asia↗

Is a hydrophobic amino acid required to maintain the reactive V conformation of thiamin at the active center of thiamin diphosphate-requiring enzymes? Experimental and computational studies of isoleucine 415 of yeast pyruvate decarboxylase.

The residue I415 in pyruvate decarboxylase from Saccharomyces cerevisiae was substituted with a variety of uncharged side chains of varying steric requirements to test the hypothesis that this residue is responsible for supporting the V coenzyme conformation reported for this enzyme [Arjunan et al. (1996) J. Mol. Biol. 256, 590-600]. Changing the isoleucine to valine and threonine decreased the kcat value and shifted the kcat-pH profile to more alkaline values progressively, indicating that the residue at position 415 not only is important for providing the optimal transition state stabilization but also ensures correct alignment of the ionizable groups participating in catalysis. Substitutions to methionine (the residue used in pyruvate oxidase for this purpose) or leucine (the corresponding residue in transketolase) led to greatly diminished kcat values, showing that for each thiamin diphosphate-dependent enzyme an optimal hydrophobic side chain evolved to occupy this key position. Computational studies were carried out on the wild-type enzyme and the I415V, I415G, and I415A variants in both the absence and the presence of pyruvate covalently bound to C2 of the thiazolium ring (the latter is a model for the decarboxylation transition state) to determine whether the size of the side chain is critically required to maintain the V conformation. Briefly, there are sufficient conformational constraints from the binding of the diphosphate side chain and three conserved hydrogen bonds to the 4'-aminopyrimidine ring to enforce the V conformation, even in the absence of a large side chain at position 415. There appears to be increased coenzyme flexibility on substitution of Ile415 to Gly in the absence compared with the presence of bound pyruvate, suggesting that entropy contributes to the rate acceleration. The additional CH3 group in Ile compared to Val also provides increased hydrophobicity at the active center, likely contributing to the rate acceleration. The computational studies suggest that direct proton transfer to the 4'-imino nitrogen from the thiazolium C2H is eminently plausible.

Amino Acid Substitution↗

Structure of the Holliday junction intermediate in Cre-loxP site-specific recombination.

We have determined the X-ray crystal structures of two DNA Holliday junctions (HJs) bound by Cre recombinase. The HJ is a four-way branched structure that occurs as an intermediate in genetic recombination pathways, including site-specific recombination by the lambda-integrase family. Cre recombinase is an integrase family member that recombines 34 bp loxP sites in the absence of accessory proteins or auxiliary DNA sequences. The 2.7 A structure of Cre recombinase bound to an immobile HJ and the 2.5 A structure of Cre recombinase bound to a symmetric, nicked HJ reveal a nearly planar, twofold-symmetric DNA intermediate that shares features with both the stacked-X and the square conformations of the HJ that exist in the unbound state. The structures support a protein-mediated crossover isomerization of the junction that acts as the switch responsible for activation and deactivation of recombinase active sites. In this model, a subtle isomerization of the Cre recombinase-HJ quaternary structure dictates which strands are cleaved during resolution of the junction via a mechanism that involves neither branch migration nor helical restacking.

Amino Acid Substitution↗

Structure-function relationships and flexible tetramer assembly in pyruvate decarboxylase revealed by analysis of crystal structures.

The crystal structures of pyruvate decarboxylase from the yeast Saccharomyces uvarum and Saccharomyces cerevisiae have been determined at 2.4 and 2.3 A resolution, respectively. These structures provide details about the protein fold and domain assembly within subunits, about subunit assembly to form dimers and about dimer assembly to form tetramers. They also provide a clear picture of the active site centered on the thiamin diphosphate cofactor, and have allowed amino acids critical for catalysis and involved in stabilization of the unusual cofactor conformation to be identified. The structural information has enabled identification of the site of allosteric activation to be centered on Cys-221, and suggests that a six residue segment leading from the regulatory site to the catalytic site may be involved in transmission of a binding signal. The importance of several amino acids within this segment in the regulatory process, as well as some involved in stabilizing and activating the cofactor has been confirmed by analyzing the behavior of recombinant enzymes with single point mutations introduced at these sites. Additional structures have been determined for pyruvate decarboxylase in multiple crystal forms, some of which were obtained from crystals grown with known allosteric activators present in the media. Currently four distinct types of tetramers have been observed, with each showing a different mode of association of dimers to form the tetramers. In some of the cases involving the presence of allosteric activators drastic changes in the mode of dimer assembly to form tetramers is seen.

Allosteric Regulation↗

Regulation of thiamin diphosphate-dependent 2-oxo acid decarboxylases by substrate and thiamin diphosphate.Mg(II) - evidence for tertiary and quaternary interactions.

The regulatory mechanism of substrate activation in yeast pyruvate decarboxylase is triggered by the interaction of pyruvic acid with C221 located on the beta domain at >20 A from the thiamin diphosphate (ThDP). To trace the putative information transfer pathway, substitutions were made at H92 on the alpha domain, across the domain divide from C221, at E91, next to H92 and hydrogen bonded to W412, the latter being intimately involved in the coenzyme binding locus. Additional substitutions were made at D28, E51, H114, H115, I415 and E477, all near the active center. The pH-dependent steady-state kinetic parameters, including the Hill coefficient, provide useful insight to this effort. In addition to C221, the residues H92, E91, E51 and H114 and H115 together appear to have a critical impact on the Hill coefficient, providing a pathway for information transfer. To study the activation by ThDP.Mg(II), variants at G231 (of the conserved GDG triplet) and at N258 and C259 (all three being part of the putative ThDP fold) of the E1 component of the Escherichia coli pyruvate dehydrogenase multienzyme complex were studied. Kinetic and spectroscopic evidence suggests that the Mg(II) ligands are very important to activation of the enzymes by cofactors.

Binding Sites↗

Reactivity at the substrate activation site of yeast pyruvate decarboxylase: inhibition by distortion of domain interactions.

The residue C221 on pyruvate decarboxylase (EC. 4.1.1.1) from Saccharomyces cerevisiae has been shown to be the site where the substrate activation cascade is triggered [Baburina et al. (1994) Biochemistry 33, 5630-5635] and is located on the beta domain [Arjunan et al. (1996) J. Mol. Biol. 256, 590], while the active-center thiamin diphosphate is located > 20 A away, at the interface of the alpha and gamma domains. The reactivity of all three exposed cysteines (152, 221, and 222) was examined under the influence of known activators and inhibitors. Protein chemical methods, in conjunction with [1-14C] and [3-3H] analogues of the mechanism-based inhibitor p-ClC6H4CH=CHCOCOOH, demonstrated that the holoenzyme bound approximately 2-3 atoms of tritium/atom of C-14. However, when the labeled enzyme was subjected to trypsinization, followed by sequencing of the labeled peptide, only the tritium label was in evidence at C221, with a stoichiometry of 2 atoms of tritium/tetrameric holoenzyme. Apparently, the product of decarboxylation bonded to the enzyme survived the limited proteolysis and sequencing, but the bound 2-oxoacid was released during the protocol. Surprisingly, the C221S or C222A variants, although they still possess 20-30% specific activity compared to the wild-type enzyme, could still be inhibited by the XC6H4CH=CHCOCOOH class of inhibitors/substrate analogues, as well as by the product of decarboxylation from such compounds, cinnamaldehydes. Other potential nucleophilic sites for the inhibitor [C152 (the third exposed cysteine), residues D28, H114, H115, and E477 at the active center and H92 at the regulatory site] were also substituted by a nonnucleophilic side chain. All variants were still subject to inhibition by p-ClC6H4CH=CHCOCOOH, the active-center variants being inactivated even faster than the wild-type enzyme, suggesting that the active center is involved in the inactivation process. It appears that C221 is one of only two sites of interaction with such compounds (perhaps the result of a Michael addition across the C=C bond), yet the bound [1-14C]-labeled inhibitor could no longer be detected after peptide mapping at this site or at the catalytic site. Upon combining the tritiated inhibitor with [2-14C]-thiamin diphosphate, no evidence could be found for a thiamin-inhibitor-protein ternary complex, suggesting that the thiamin-bound enamine intermediate did not react further with the protein. It is likely that the second form of inhibition is at the active center, with the inhibitor cofactor-bound, which would have been released during the proteolytic protocol. Among other known activators, ketomalonate was found to react at C221 only. Glyoxalic acid, a mechanism-based inhibitor, on the other hand, could react at both the regulatory and the catalytic center. The high reactivity of C221 is consistent with it being in the thiolate form at the optimal pH of the enzyme [forming a Cys221S(-) + HHis92 ion pair; see Baburina et al. (1996) Biochemistry 35, 10249-10255, and Baburina et al. (1998) Biochemistry 37, 1235-1244]. Several additional compounds were tested as potential regulatory site-directed reagents: iodoacetate, 1,3-dibromoacetone, and 1-bromo-2-butanone. All three compounds reduced the Hill coefficient and hence appear to react at C221. It was concluded that either substitution of C221 by a nonnucleophilic residue or large groups attached to C221 in the wild-type enzyme lead to a distortion of domain interactions, interactions which are required for both optimal activity and substrate activation.

Acrolein↗