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F Guo

Publications and source records attributed to F Guo.

At least 55 records · Page 3Linked to original sources

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↗

[The relationship between Helicobacter pylori and expression of c-met oncogene in gastric precancerous lesions].

OBJECTIVES: To determine whether there is a relationship between the presence of H. pylori and alteration of c-met oncogene and to estimate the role of H. pylori in the development of gastric carcinoma. METHODS: 110 patients with histopathologically proven chronic gastritis were studied. We demonstrated expression and overexpression rates of c-met oncogene by using immunohistochemical staining. RESULTS: For chronic superficial gastritis, chronic atrophic gastritis, intestinal mataplasia and dysplasia, the expression rates were 22.2%, 44.1%, 67.5% and 61.9%. The overexpression rates were 5.5%, 26.4%, 37.8% and 38.1% respectively. The positive rates of c-met oncogene protein were high among patients infected with H. pylori than those with no H. pylori infection (63% vs 32%). In the precancerous lesions of cellular atrophy, intestinal mataplasia and dysplasia, the expression rates of H. pylori positive patients were higher (68.9%) than those of H. pylori negative patients (30.5%) (P < 0.05). CONCLUSIONS: H. pylori is involved in the expression of c-met oncogene.

Female↗

[Changes of T-SOD activity and MDA, GSH contents in blood of guinea pigs after exposure to narrow-band noise].

In order to evaluate the changes of lipid peroxide response induced by free radical after intense noise exposure, levels of T-SOD and MDA in serum and GSH in blood of guinea pigs were determined. Sixty male adult guinea pigs were used. The narrow band noise was centered at 1000Hz with 100Hz band width 126 dB SPL. It was found: 1) SOD activity in serum increased after 5d exposure (P > 0.05), but decreased after 10d exposure (P > 0. 05); 2) contents of MDA in serum increased (P < 0.05) and contents of GSH in blood decreased with increase of exposure time (P < 0.01). It shows that the lipid peroxide response induced by free radicals increased after intense noise exposure and it is possible to use free radical scavengers and/or antioxidant in prevention and treatment of noise induced damage.

Animals↗

Low barrier hydrogen bond is absent in the catalytic triads in the ground state but Is present in a transition-state complex in the prolyl oligopeptidase family of serine proteases.

High frequency proton NMR spectra for two members of the prolyl oligopeptidase class of serine proteases, prolyl oligopeptidase and oligopeptidase B, showed that resonances corresponding to the active center histidine Ndelta1H and Nepsilon2H generally observed in this region, are absent in these enzymes. However, for both enzymes, as well as with the H652A and H652Q active center variants of oligopeptidase B, there are two resonances observed in this region that could be assigned to two protonated histidines with a noncatalytic function. The results indicate that these two histidines participate in strong hydrogen bonds. The absence of resonances pertinent to the active center histidine resonances suggests the absence of a low barrier hydrogen bond between the Asp and His in these two enzymes in their ground states. Addition of the peptide boronic acid t-butoxycarbonyl-(D)Val-Leu-(L)boroArg to oligopeptidase B resulted in potent, slow binding inhibition of the enzyme and the appearance of a new resonance at 15.8 ppm, whose chemical shift is appropriate for a tetrahedral boronate complex and a low barrier hydrogen bond. The results demonstrate important dissimilarities between the active centers of the prolyl oligopeptidase class of serine proteases and the pancreatic and subtilisin classes both in the ground state and in the transition-state analog complexes.

Animals↗

Structure of Cre recombinase complexed with DNA in a site-specific recombination synapse.

During site-specific DNA recombination, which brings about genetic rearrangement in processes such as viral integration and excision and chromosomal segregation, recombinase enzymes recognize specific DNA sequences and catalyse the reciprocal exchange of DNA strands between these sites. The bacteriophage recombinase Cre catalyses site-specific recombination between two 34-base-pair loxP sites. The crystal structure at 2.4 A resolution of Cre bound to a loxP substrate reveals an intermediate in the recombination reaction, in which a Cre molecule has cleaved the substrate to form a covalent 3'-phosphotyrosine linkage with the DNA. Four recombinases and two loxP sites form a synapsed structure in which the DNA resembles models of four-way Holliday-Junction intermediates. The Cre-loxP complex challenges models of site-specific recombination that require large changes in quaternary structure. Subtle allosteric changes at the carboxy termini of the Cre subunits may instead coordinate the cleavage and strand-exchange reactions.

Amino Acid Sequence↗

Differential gender response produced by meal and ad lib feedings of a high-fat diet in Osborne-Mendel rats.

We investigated if there were gender differences in metabolic consequences produced by meal feeding of a high-fat (HF) diet in male and female Osborne-Mendel rats. An HF diet was fed either ad lib (AL) or in 1 meal (MF) during the last 3 h of the dark cycle for 4 weeks (lights off from 2400 h to 1200 h). All rats were sacrificed at 1 of 3 time-points: prior to MF rats receiving their food at 0900 h, after food was taken from MF groups at 1200 h or 1500 h. Food intake, body weight, body fat weight, retroperitoneal adipose tissue lipoprotein lipase activity, plasma cholesterol, or HDL-cholesterol levels did not differ between MF- and AL-fed groups, but were higher in male than in female rats. There were no differences between the male and female groups in plasma levels of insulin and glucose or systolic blood pressures. Plasma triglyceride levels at 1200 h were significantly different between MF and AL Groups within either gender, but this was not observed at 0900 h or 1500 h. Body weights were correlated with internal fat weights and plasma cholesterol levels in both males (r = 0.57, p < 0.05) and females (r = 0.59, p < 0.05). Hence, it is the amount of HF diet ingested, rather than the pattern of meal feeding, that was the most significant factor related to gender differences in weight gain, increases in fat mass, and metabolic differences.

Animals↗

Chronic weight cycling increases oxidative DNA damage levels in mammary gland of female rats fed a high-fat diet.

Oxidative DNA damage levels may be a marker of breast cancer risk that is modulated by diet. We examined the effects of a high-fat diet fed in varying feeding regimens on levels of 5-hydroxymethyl-2'-deoxyuridine (5-OHmU), an oxidized thymidine residue, in DNA from mammary gland of aging female rats. A total of 48 rats were randomly divided into four groups: ad libitum fed (AL), weight cycled above baseline (WC-G), weight cycled below baseline (WC-L), or energy restricted (ER) for 28 weeks. WC groups were fed repeated ad libitum/restricted amounts of the diet. At sacrifice, both WC groups had body weights similar to the ER group but higher levels of 5-OHmU (p < 0.01). 5-OHmU levels were higher in the WC groups than in the AL group, even though body weights of the WC groups were significantly lower (p < 0.001). These results indicate that a history of weight cycling, even when body weight is reduced, can have adverse effects on 5-OHmU levels in mammary gland DNA, a potential biomarker of cancer risk. Constant control of calories for the maintenance of body weight, therefore, may be more beneficial.

Animals↗

Differential distribution of ecNOS and iNOS mRNA in rat heart after endotoxin administration.

To evaluate the relationship between cardiovascular injury and the pathological significance of endothelial constitutive nitric oxide synthase (ecNOS) and inducible nitric oxide synthase (iNOS) in endotoxic shock, Wistar rats were injected intraperitoneally with 10 mg/kg Escherichia coli endotoxin and the resulting cardiovascular changes observed using immunohistochemistry, immunoelectron microscopy, the reverse transcription polymerase chain reaction (RT-PCR) and in situ hybridization at 4, 6, 8 and 10 h after endotoxin administration. Immunohistochemical and electron microscopic observations showed that ecNOS was localized in the cytoplasmic vesicles and rough endoplasmic reticulum of the endothelium of coronary arteries and intermyocardial capillaries in both control and endotoxin-treated rats. iNOS was localized in the cytoplasmic vesicles and endoplasmic reticulum of vascular endothelial cells, vascular smooth muscle cells and cardiomyocytes after endotoxin administration. The RT-PCR study confirmed the expression of ecNOS and iNOS mRNA in the heart tissues of all animals including controls. In situ hybridization showed that ecNOS mRNA was expressed in the cytoplasm of vascular endothelial cells in control and endotoxin-treated rats. After endotoxin administration, iNOS mRNA was strongly expressed in vascular endothelial cells, vascular smooth muscle cells, cardiomyocytes and a small number of macrophages. Bacterial lipopoly-saccharide induces rapid release of nitric oxide in the microvasculature and cardiomyocytes resulting in the depression of cardiomyocyte contraction. These findings may describe the cardiac response after endotoxin treatment.

Animals↗

[The antitumour activity of Sinopodophyllum emodi].

This paper has shown the cytocidal effects of alcohol extracts of roots and rhizomes of Sinopodophyllum emodi (Wall.) Ying on human erythroleukemia K562 cells, leukemia L1210 cells, leukemia L7712 cells in vitro, using microculture method for 24 hours. The survival rates on K562 cells in the final concentrations of 10.0, 5.0, 2.5, 1.0 micrograms/ml of the extracts of Sinopodophyllum emodi (WA11.) Ying were 44.17%, 47.63%, 64.43%, 79.57% respectively. The survival rates on L1210 and L7712 cells were 42.84%, 50.73%, 63.21%, 75.10%, and 39.76%, 46.36%, 61.42%, 75.24% respectively. LD50 of the extracts singly i.p. in mice was 76.3-60.6 mg/kg. In vivo, the growth of transplanted mouse tumours (EAC, U14 and Hc) was inhibited by the extracts of Sinopodophyllum emodi (Wall.) Ying with inhibitory rates 42.2%, 38.8%, 41.5% (14.0 mg/kg); 37.8%, 33.3%, 35.6% (7.0 mg/kg).

Animals↗

[Effects of cigarette smoking on antioxidant vitamin and activities of antioxidases].

Levels of plasma vitamin C and E (P-VC, P-VE), beta-carotene (P-beta-Car), lipoperoxides (P-LPO), and activity of erythrocyte superoxide dismutase (E-SOD) were measured in 871 healthy smokers and 348 healthy non-smokers to study the relationship between cigarette smoking and antioxidant vitamins and oxygen free radicals. Results showed that levels of P-VC, P-VE, P-beta-Car and E-SOD reduced significantly, and level of P-LPO increased significantly in smokers, as compared with those in non-smokers. Levels of P-VC, P-VE, P-beta-Car and E-SOD reduced and level of P-LPO increased in 65 male smokers at the same age, with the increase of duration of smoking and quantity of cigarettes smoked, showing a linear correlationship. It suggested that there existed serious imbalance between oxidation and antioxidation in the bodies of smokers, and oxygen free radical reaction and reaction of lipoperoxidation obviously intensified.

Adolescent↗

[Study on therapeutic effect and immunological mechanism of fuzhengfang herbs in mice with Lewis lung cancer].

OBJECTIVE: To observe the therapeutical effect of Fuzhengfang (FZF). METHODS: Therapeutic effect of FZF herbs on mice with Lewis lung cancer was observed, and its regulation on function of red blood cell immune system of the mice was also studied. RESULTS: FZF herbs could inhibit the growth of tumor, and increase the weight of mice with Lewis lung cancer. The quality of life of the mice was improved after treatment with FZF herbs. FZF herbs could increase the activity of red blood cell C3b receptors, reduce the quantity of red blood cell immune complexes, elevate the immune adherent function of red blood cells to tumor cells, raise activity of red blood cell immune adherent enhancing factors in serum, and lower the activity of red blood cell immune adherent inhibitory factors. Chemotherapy could inhibit the growth of tumor, but decrease the weight of mice with Lewis lung cancer. The quality of life of the mice was decreased after chemotherapy. Chemotherapy could reduce the activity of red blood cell C3b receptors, increase the quantity of red blood cell immune complexes, depress the immune adherent function of red blood cells to tumor cells, lower the activity of red blood cell immune adherent enhancing factors in serum, and raise the activity of red blood cell immune adherent inhibitory factors in serum. There was a significant difference between FZF herbs and chemotherapy. CONCLUSION: FZF herbs have a positive therapeutic effect in mice with Lewis lung cancer, and its mechanism might be associated with improving function of red blood cell immune system of mice with Lewis lung cancer.

Animals↗

The role of the nonconserved residues at position 167 of class A beta-lactamases in susceptibility to mechanism-based inhibitors.

Differences in specificities between the class A beta-lactamases for both substrate and inhibitors are known. The role of the nonconserved amino acid residue at position 167 of the class A enzyme, which forms a cis bond with the catalytically essential Glu-166 residue, 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 thr-167 with the corresponding Staphylococcus aureus PC1 residue Ile. Kinetic data obtained from the purified Thr-167-Ile B. cereus 569/H beta-lactamase was compared to that obtained from the wild-type B. cereus and S. aureus enzymes and indicated that the replacement had little effect on the Michaelis parameters for the hydrolysis of S- and A-type penicillins. However, the Thr-167-Ile enzymes became more S. aureus PC1-like in its response to the mechanism-based inhibitors clavulanic acid and 6-beta-(trifluoromethane sulfonyl)amidopenicillanic acid sulfone. A model for the role of this nonconserved residue at position 167 in the mechanism of inactivation by mechanism-based inhibitors is proposed.

Amino Acid Sequence↗

The effect of hypophysectomy and growth hormone replacement on sst1 and sst2 somatostatin receptor subtype messenger ribonucleic acids in the arcuate nucleus.

Although considerable evidence indicates that somatostatin (SRIF) exerts direct actions on GH-releasing hormone-containing arcuate neurons within the hypothalamus to modulate hypophyseal GH secretion, the underlying mechanism(s) remains to be elucidated. We recently demonstrated high levels of expression of the messenger RNAs (mRNAs) coding for two prototypic receptors of the recently cloned SRIF receptor (sst) family, sst1 and sst2, in the arcuate nucleus of the rat hypothalamus. However, information on the biological roles of these receptor subtypes and the factors regulating their expression is lacking. In the present study, we hypothesized that perturbations in GH would influence sst mRNA levels in cells of the arcuate nucleus in vivo. To test this hypothesis, we examined the effects of hypophysectomy (HPX) and HPX with GH replacement, on sst1 and sst2 mRNA levels in the brains of adult male rats by in situ hybridization using 35S-labeled antisense riboprobes. The number of labeled cells and the density of silver grains per cell were quantified using a computer-assisted image analysis system. Two weeks after HPX, there was a 50-60% reduction in both the number and labeling density of sst1 and sst2 mRNA-expressing cells in the arcuate nucleus compared to those in sham-operated control rats. Administration of recombinant human GH (200 micrograms/day for 7 days by continuous sc infusion using osmotic minipumps) to HPX rats augmented both the cell number (P < 0.05) and labeling density (P < 0.01) of sst1 mRNA in the arcuate nucleus, but did not significantly alter sst2 mRNA levels compared to those in HPX rats infused with H2O. There were no significant changes in sst1 and sst2 mRNA levels in extra-arcuate areas, including the cerebral cortex and medial habenula, or in suprachiasmatic, medial preoptic, and magnocellular preoptic nuclei after either HPX or GH replacement. These results indicate that the expression of both sst1 and sst2 SRIF receptor subtypes in brain is under the regulatory influence of pituitary hormones. They further suggest that GH may participate in the regulation of its own secretion by influencing the expression of the sst1 receptor gene on arcuate neurons. Such a mechanism may be important in the feedback regulation of GH secretion by the arcuate nucleus.

Animals↗

[An experimental study on immune mechanism after alkali burn in the anterior segment of rabbit eye].

OBJECTIVE: To study the immunologic mechanism of corneal ulceration after alkali burn. METHODS: 55 rabbits with alkali burn in right eye were randomly divided into two groups. In group I (31 animals), the level of circulating immune complex (CIC), the rate of red blood cell C3b receptor complex rosette (RBC-C3bRR) and immune complex rosette (RBC-ICR) were measured respectively at 7, 14, 21, 35, 49 days after alkali burn. In Group 2 (24 animals), the immune complex was detected by means of immunofluorescence (IF) and immunogold-silver staining (IGSS) in burned tissues at 21 days after burn. Histopathologic changes were also observed under light microscope. RESULTS: CIC, the rate of RBC-C3bRR and RBC-ICR were markedly increased 14 to 21 days after burn. In the mean time, the deposition of immune complex was found in burned tissues and the accumulation of polymorphonuclear leukocyte (PMN) was observed at the base of corneal ulcer. CONCLUSIONS: The immune mechanism indeed participates in the pathogenesis of corneal ulceration and also aggravates the progress of ulceration on the base of chemical injury.

Animals↗