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B Guo

Publications and source records attributed to B Guo.

At least 55 records · Page 3Linked to original sources

Cyclin E-cdk2 activation is associated with cell cycle arrest and inhibition of DNA replication induced by the thymidylate synthase inhibitor Tomudex.

Tomudex (ZD1694) is a specific antifolate-based thymidylate synthase inhibitor active in a variety of solid tumor malignancies. Studies were carried out in vitro to evaluate downstream molecular alterations induced as a consequence of the potent and sustained inhibition of thymidylate synthase by Tomudex. Twenty-four hours following the initial 2-h treatment with Tomudex, human A253 head and neck squamous carcinoma cells, not expressing p53 and p21(WAF1), were accumulated with DNA content characteristic of early S phase of the cell cycle with a concomitant reduction of cells in G1 and G2/M phases. The changes in cyclin and cdk protein expression and their kinase activities were examined in control and drug-treated A253 cells. Tomudex treatment resulted in the decrease in p27(kip1) expression, with an increase in cyclin E and cdk2 protein expression and kinase activities 24 h after a 2-h exposure. Although cyclin A protein expression was markedly increased, cyclin A kinase activity was only slightly increased. Cyclin D1, cyclin B, cdk4, and cdc2 protein expression and kinase activities remain constant. Lack of activation of cyclin A- and B-cdc2 was associated with a reduced proportion of cells in G2/M phases. Increased cyclin E-cdk2 protein expression was accompanied by the inhibition of DNA synthesis, with a decrease in E2F-1 expression. These results propose that cyclin E-cdk2 kinase can negatively regulate DNA replication. The studies with dThyd rescue from cyclin E-cdk2 protein overexpression and growth inhibition by Tomudex indicate that increased cyclin E-cdk2 protein expression is associated with effective inhibition of thymidylate synthase and resultant dNTP pool imbalance. Provision of dThyd more than 24 h after exposure to Tomudex allowed cells to replicate DNA for a single cycle back to G1, but did not prevent the profound growth-inhibitory effect manifested in the following 5 days. Tomudex treatment resulted in a time-dependent induction of the megabase DNA fragments, followed by secondary 50- to 300-kb DNA fragmentation. The 50- to 300-kb DNA fragmentation may be derived from the inhibition of DNA synthesis associated with cyclin E-cdk2 activation. These results suggest that the megabase DNA fragmentation is induced as a consequence of inhibition of thymidylate synthase by Tomudex and kilobase DNA fragmentation may correlate with the reduction of p27(kip1) expression and the increase in cyclin E and cdk2 kinase activities. Activation of cyclin E and cdk2 kinases allows cells to transit from G1 to S phase accompanied by the inhibition of DNA synthesis. The changes in cell cycle regulatory proteins associated with growth inhibition and DNA damage by Tomudex are not p53 dependent.

CDC2-CDC28 Kinases↗

Use of poly(tetrafluoroethylene)s as a sample support for the MALDI-TOF analysis of DNA and proteins.

Matrix-assisted laser desorption/ionization mass spectrometry of DNA and proteins, directly deposited on the poly(tetrafluoroethylene) (Teflon) surface, is demonstrated. For DNA analysis, this technique apparently produces a more homogeneous coverage of the matrix/DNA over the sample surface. Moreover, it enhances the sensitivity and salt tolerance. As described here, this technique can also achieve an excellent mass resolution, similar to that observed using a metal probe for DNA up to 62mer. We also examined the use of Teflon as a sample support for protein analysis since Teflon has been used as a transfer membrane. Less than 25 fmol of myoglobin has been detected with this technique. In addition, effective MALDI-TOF analysis of salt-contaminated protein samples can also be accomplished by loading the protein sample onto Teflon, followed by steps of washing away salts, adding the matrix, and desorbing sample directly from Teflon.

DNA↗

Cloning and characterization of Chinese hamster CDC7 (ChCDC7).

The Cdc7 serine/threonine kinase is essential for entry into and to traverse through S phase. We have cloned the putative Chinese hamster CDC7 (ChCDC7) cDNA that is capable of encoding a protein of 572 amino acids with predicted molecular mass of 62.6 kDa. The ChCdc7 protein includes all 11 kinase domains that are conserved among the Cdc7-related protein kinases. In addition, the ChCdc7 protein kinase contains at least two kinase inserts that show substantial identity to those of huCdc7p. Overall, ChCdc7p shares 81, 56, 30, and 27% amino acid sequence identity with the Cdc7-related proteins of human, Xenopus, Saccharomyces cerevisiae, and Schizosaccharomyces pombe, respectively. Although the levels of ChCDC7 mRNA and protein are relatively constant throughout the cell cycle in the cycling cells, they are extremely low in the cells synchronized in the quiescent stage (i.e., G0). When cells in G0 are released into the cell cycle, the levels of ChCDC7 mRNA and protein increase slowly until the cells reach the G1/S border, at which time the increase is rapid. This suggests that a number of signal transduction pathways may have to be activated prior to CDC7 gene expression. Interestingly, the ChCdc7-GFP fusion protein formed discrete granules in the nuclei of cells arrested in early S phase by aphidicolin, raising the possibility that ChCdc7p is part of the "replication factory."

Amino Acid Sequence↗

Ras signaling is required for serum-induced hyphal differentiation in Candida albicans.

Serum induces Candida albicans to make a rapid morphological change from the yeast cell form to hyphae. Contrary to the previous reports, we found that serum albumin does not play a critical role in this morphological change. Instead, a filtrate (molecular mass, <1 kDa) devoid of serum albumin induces hyphae. To study genes controlling this response, we have isolated the RAS1 gene from C. albicans by complementation. The Candida Ras1 protein, like Ras1 and Ras2 of Saccharomyces cerevisiae, has a long C-terminal extension. Although RAS1 appears to be the only RAS gene present in the C. albicans genome, strains homozygous for a deletion of RAS1 (ras1-2/ras1-3) are viable. The Candida ras1-2/ras1-3 mutant fails to form germ tubes and hyphae in response to serum or to a serum filtrate but does form pseudohyphae. Moreover, strains expressing the dominant active RAS1(V13) allele manifest enhanced hyphal growth, whereas those expressing a dominant negative RAS1(A16) allele show reduced hyphal growth. These data show that low-molecular-weight molecules in serum induce hyphal differentiation in C. albicans through a Ras-mediated signal transduction pathway.

Amino Acid Sequence↗

Differential expression of platelet-derived growth factor-alpha receptor by Thy-1(-) and Thy-1(+) lung fibroblasts.

Fibroblasts are heterogeneous with respect to surface markers, morphology, and participation in fibrotic responses. This study was undertaken to determine whether Thy-1(-) and Thy-1(+) rat lung fibroblasts, which have distinct and relevant phenotypes, differ in their proliferative responses to platelet-derived growth factor (PDGF) isoforms. Homogeneous populations of Thy-1(-) and Thy-1(+) fibroblasts were found to proliferate equally in the presence of PDGF-BB, but PDGF-AA-mediated proliferation occurred only in Thy-1(-) cells. This differential activity correlated with significantly higher expression of PDGF-alpha receptor in Thy-1(-) fibroblasts as shown by immunoblotting, immunofluorescence, and Northern blotting. There was a rapid increase in c-myc mRNA in Thy-1(-) but not in Thy-1(+) fibroblasts on stimulation with PDGF-AA and PDGF-BB. The PDGF-alpha receptor, which mediates signaling by all PDGF isoforms, has been implicated in numerous clinical and experimental forms of fibrosis and regulates lung morphogenesis. Differential expression of the PDGF-alpha receptor supports distinct roles for Thy-1(-) and Thy-1(+) fibroblast populations in developmental and fibrotic processes in the lung.

Animals↗

Active participation of CCR5(+)CD8(+) T lymphocytes in the pathogenesis of liver injury in graft-versus-host disease.

We examined the molecular pathogenesis of graft-versus-host disease-associated (GVHD-associated) liver injury in mice, focusing on the role of chemokines. At the second week after cell transfer in the parent-into-F1 model of GVHD, CD8(+) T cells -- especially donor-derived CD8(+) T cells -- infiltrated the liver, causing both portal hepatitis and nonsuppurative destructive cholangitis (NSDC). These migrating cells expressed CCR5. Moreover, macrophage inflammatory protein-1alpha (MIP-1alpha), one of the ligands for CCR5, was selectively expressed on intralobular bile duct epithelial cells, endothelial cells, and infiltrating macrophages and lymphocytes. Administration of anti-CCR5 antibody dramatically reduced the infiltration of CCR5(+)CD8(+) T lymphocytes into the liver, and consequently protected against liver damage in GVHD. The levels of Fas ligand (FasL) mRNA expression in the liver were also decreased by anti-CCR5 antibody treatment. Anti-MIP-1alpha antibody treatment also reduced liver injury. These results suggest that MIP-1alpha-induced migration of CCR5-expressing CD8(+) T cells into the portal areas of the liver plays a significant role in causing liver injury in GVHD; thus, CCR5 and its ligand may be the novel target molecules of therapeutic intervention of hepatic GVHD.

Acute Disease↗

Dimerization of mitochondrial Bax is associated with increased drug response in Bax-transfected A253 cells.

Human head and neck squamous cell carcinoma A253 cells, which do not express p53 and p21 proteins, were engineered to stably express about 50-fold higher level of Bax protein (A253/Bax) than the mock-transfected (A253/vec) or parental cells. Using these cell lines, studies were carried out to evaluate the role of Bax in response to anticancer drugs and to study the associated mechanisms. A253/Bax cells exhibited a significant increase in in vitro sensitivity to various anticancer drugs, including tomudex (9.5-fold), SN-38 (13.8-fold), doxorubicin (7.9-fold), taxol (3.1-fold), 5-FU (2.7-fold), and 5-FU/LV (4.5-fold). Increased level of drug-induced apoptosis was observed in A253/Bax cells in a drug concentration-dependent manner. In untreated A253/Bax cells, Bax was expressed in a monomeric state. Treatment with tomudex induced the formation of Bax dimer in a drug concentration-dependent manner. Dimerization of Bax occurred only in mitochondria, while the cytosolic Bax was retained in the monomeric state. Low level of Bax dimerization was also detected in parental A253 cells following tomudex exposure. In addition, Bax dimer formation was associated with mitochondrial cytochrome c release and activation of caspases in A253/Bax cells. The data suggest that Bax overexpression increases drug response by enhancing drug-induced apoptosis. Furthermore, dimerization of mitochondrial Bax and downstream mechanisms are associated with drug-induced apoptotic cell death and increased drug sensitivity.

Apoptosis↗

[Cerebral protective effects of some compounds isolated from traditional Chinese herbs].

OBJECTIVE: To study the cerebral protective effects of some compounds isolated from traditional Chinese herbs. METHOD: Laser microcirculation dynamic analyzer and cultured rat cortical neurons were used. RESULT: Pueraria lobata flavonoids(LPF), Panax notoginseng saponins(PNS), oxymatrine, anisodamine and berberine could dilate microvessels and increase the cerebral blood flow of anesthetized mice's meninges. LPF, PNS, oxymatrine, and anisodamine also accelerated the flow of blood. Oxymatrine, like anisodamine, increased quantities of erythrocytes in high frequency movements. PNS could protect cultured rat cortical neurons from glutamate neurotoxicity. CONCLUSION: LPF, PNS, oxymatrine, anisodamine and berberine have certain protective effects on brain, but differ in mechanisms of action.

Alkaloids↗

[Preparation of DNA probe for Cryptosporidium parvum].

AIM: To prepare a probe with high specificity and sensitivity for the detection of Cryptosporidium parvum. METHODS: Using PCR method, a fragment from the DNA of C. parvum was amplified. The PCR product, 452 bp DNA, was labeled with hapten digoxigenin. RESULTS: Examination of sensitivity showed that the DNA probe could detect as low as 2 pg DNA from C. parvum. The dot-blot hybridizition assay showed that the probe hybridized with the DNA of C. parvum, but not hybridized with DNA of E. histolytica, G. lamblia, E. coli and D. bacilli. CONCLUSION: The probe was highly specific and sensitive for the detection of C. parvum.

Animals↗

Use of paraffin wax film in MALDI-TOF analysis of DNA.

Poor detection limits and strong salt effects are two of the main problems encountered in the matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometric analysis of DNA. This work demonstrates that a probe tip with a paraffin wax film (Parafilm) surface improves the MALDI performance in DNA analysis compared to the commonly used metal surface. First, the use of Parafilm increases the detection sensitivity. It was found that the detection limit achieved with Parafilm was 5 times better than that obtained using stainless steel for a 85mer. More importantly, the Parafilm method could improve detection of larger DNA components in the presence of a large excess of a smaller DNA component or in a DNA mixture. This feature is important to analyses of PCR and sequencing products. Second, we found that the use of Parafilm increased the salt tolerance limits for the 17-, 41-, and 85mers studied in this work and that the salt effect was less sensitive to the DNA size. Third, this method offers other analytical benefits, including producing a more homogeneous coverage of matrix/DNA, adding no extra cost and time to sample preparation, and eliminating the commonly required step for cleaning the probe after analysis. In this paper, we will also present our perspectives on why the use of Parafilm can improve the MALDI-TOF performance in DNA analysis.

DNA↗

Targeting of the YY1 transcription factor to the nucleolus and the nuclear matrix in situ: the C-terminus is a principal determinant for nuclear trafficking.

The multifunctional transcription factor YY1 is associated with the nuclear matrix. In osteoblasts, the interaction of several nuclear matrix-associated transcription factors with the bone specific osteocalcin gene contributes to tissue-specific and steroid hormone-mediated transcription. A canonical nuclear matrix targeting signal (NMTS) is present in all members of the AML/CBFbeta transcription factor family, but not in other transcription factors. Therefore, we defined sequences that direct YY1 (414 amino acids) to the nuclear matrix. A series of epitope tagged deletion constructs were expressed in HeLa S3 and in human Saos-2 osteosarcoma cells. Subcellular distribution was determined in whole cells and nuclear matrices in situ by immunofluorescence. We demonstrated that amino acids 257-341 in the C-terminal domain of YY1 are necessary for nuclear matrix association. We also observed that sequences within the N-terminal domain of YY1 permit weak nuclear matrix binding. Our data further suggest that the Gal4 epitope tag contains sequences that affect subcellular localization, but not targeting to the nuclear matrix. The targeted association of YY1 with the nuclear matrix provides an additional level of functional regulation for this transcription factor that can exhibit positive and negative control.

Animals↗

Novel cellular determinants for reversal of multidrug resistance in cells expressing P170-glycoprotein.

The newly synthesized calcium channel blocker, Ro44-5912, significantly potentiates doxorubicin (Dox)-induced cytotoxicity at non-cytotoxic concentrations in Dox-resistant human ovarian cell line, A2780/DX5, overexpressing P170-glycoprotein (Pgp). Induction of DNA single- and double-strand breaks (ssbs and dsbs) was measured using alkaline elution and constant-field gel electrophoresis (CFGE) assays. The results indicate that potentiation of the cytotoxicity of Dox by Ro44-5912 was accompanied by significant increases in both, Dox-induced DNA ssbs and dsbs in the resistant cells. Pulsed-field gel electrophoresis (PFGE) analysis showed that Dox induced DNA fragments in the 50-800 kilobase (kb) and 0.8-5.7 megabase (Mb) ranges. The majority of the newly synthesized DNA fragments were in the 50-800 kb range. Ro44-5912 treatment resulted in significant potentiation of DNA fragmentation in the 50-800 kb range with a minor increase in 0.8-5.7 Mb DNA fragments, suggesting that the modulator functions by potentiating nascent DNA fragmentation in the resistant cells. Exposure to Dox with Ro44-5912 was associated with a prolonged blockage of cells in the S-phase. In contrast, exposure to Dox alone resulted in temporary blockage of cells in G2/M phase (approximately 24 h) followed by restoration of cell proliferation and normal DNA histograms at 48 h after 2 h drug exposure. Incorporation of BrdUrd by flow cytometric analysis was inhibited by Dox in the presence of Ro44-5912, showing that there is a block of DNA replication. An increased damage in newly synthesized DNA could concur with a blocked DNA replication. Moreover, slowing progression through the S-phase in cells exposed to Dox in combination with Ro44-5912 is accompanied by increased sensitivity of Dox poisons, indicating a correlation of specific S-phase perturbation with the reversal of Dox resistance by Ro44-5912 in cells expressing Pgp. The results suggest that drug-induced augmentation of nascent DNA fragmentation and specific cell-cycle perturbation are potentially important molecular determinants for reversal of multidrug resistance in addition to restoration of intracellular drug retention.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Use of MALDI-TOF to measure molecular weight distributions of polydisperse poly(methyl methacrylate).

The main problem encountered in the MALDI-TOF analysis of polydisperse polymers is mass discrimination against high-mass oligomers. This work investigated some of the causes of this problem by using PMMAs as the polymer analytes. It was found that both instrumental and matrix factors could lead to this problem. Among the instrumental factors, detector saturation resulting from strong signals of matrix-related and low-mass oligomer ions can be a potential major cause of this problem. Since most of the ion detectors do not have an adequate dynamic range to avoid saturation, detection saturation could be a fundamental limitation, especially when the molar ratio of high- to low-mass oligomers is small. A quantitative analysis was also performed to examine the matrix effect. IAA and HABA were selected for this study. It was found that mass discrimination occurred in both cases, but the use of HABA led to more profound mass discrimination. This shows that the use of improper matrixes could be another source causing mass discrimination. Hence, unless new approaches are developed, one must be cautious in using MALDI-TOF for directly measuring MWDs of polydisperse polymers, especially those highly polydisperse polymers.

Molecular Weight↗

Far- and Mid-Infrared Emission Spectroscopy of LiH and LiD

High-resolution Fourier transform spectra of LiH and LiD were recorded in the far-infrared region, 100-360 cm-1, and the mid-infrared regions, 800-1200 cm-1 and 2000-3000 cm-1. A total of 261 pure rotational lines and 678 rovibrational lines were measured for the isotopomers 6LiH(D) and 7LiH(D). Molecular constants for the X1Sigma+ ground state in the form of mass-dependent Dunham Yij's and mass-independent Dunham Uij's were determined from a data set of 1476 lines, consisting of our measured line positions and previously reported microwave, millimeter-wave, and infrared lines. An effective internuclear potential for the ground electronic state where the Born-Oppenheimer part is modeled as a parameterized modified-Morse function was also determined from a fit of the data. Copyright 1998 Academic Press.

Journal Article↗

Preliminary crystallographic study of glutathione S-transferase fused with the nuclear matrix targeting signal of the transcription factor AML-1/CBF-alpha2.

A glutathione S-transferase fused with the nuclear matrix targeting signal (GST-NMTS) of AML-1/CBF-alpha2 has been crystallized by the vapor diffusion method using polyethylene glycol (PEG) as the precipitant. The NMTS is a 31-amino-acid signal peptide that can target the AML-1/CBF-alpha2 protein to the nuclear matrix. The crystal belongs to tetragonal space group P43212 with unit cell dimensions a = b = 93.4 A, c = 57.6 A. There is one GST-fusion protein per asymmetric unit. Crystals diffracted to at least 2.7 A and are appropriate for structure determination.

Animals↗

[Radical neck dissection in treating cervical lymph node tuberculosis].

OBJECTIVE: To evaluate the significance of radical neck dissection in treatment of mixed-type cervical lymph node tuberculosis. METHOD: One hundred twenty-two cases with mixed-type cervical lymph node tuberculosis were treated with radical neck dissection and the results of the treatment were reported. The size, number, location and pathologic types of abscess, fistula and lymph node were also analyzed. RESULT: All the patients were cured without relapse during 1-7 year follow-up. Spreading antegrade infection and chronic recurrence were found to be the characteristics of mixed-type cervical lymph node tuberculosis. CONCLUSION: Radical neck dissection is an effective and safe approach for treating the disease.

Adolescent↗

[Multilocular cyst of kidney].

OBJECTIVE: Multilocular cyst of kidney is a rare, unique and characteristic renal lesion with benign biologic behavior. We report a case of the disease. METHODS: It was confirmed by operation and pathology. RESULTS: It is difficult to distinguish radiologically multilocular cyst of kidney from cystic renal carcinoma and wilms tumor. CONCLUSION: Surgical intervention is the only effective treatment and method to differentiate multilocular cyst of kidney from a malignant lesion of the kidney.

Adult↗

ATF1 and CREB trans-activate a cell cycle regulated histone H4 gene at a distal nuclear matrix associated promoter element.

Proteins of the ATF/CREB class of transcription factors stimulate gene expression of several cell growth-related genes through protein kinase A-related cAMP response elements. The promoter activity of cell cycle regulated histone H4 genes is regulated by at least four principal cis-acting elements which mediate G1/S phase control and/or enhancement of transcription during the cell cycle. Using protein-DNA interaction assays we show that the H4 promoter contains two ATF/CREB recognition motifs which interact with CREB, ATF1, and ATF2 but not with ATF4/CREB2. One ATF/CRE motif is located in the distal promoter at the nuclear matrix-associated Site IV, and the second motif is present in the proximal promoter at Site I. Both ATF/CRE motifs overlap binding sequences for the multifunctional YY1 transcription factor, which has previously been shown to be nuclear matrix associated. Subnuclear fractionation reveals that there are two ATF1 isoforms which appear to differ with respect to DNA binding activity and partition selectively between nuclear matrix and nonmatrix compartments, consistent with the role of the nuclear matrix in regulating gene expression. Site-directed mutational studies demonstrate that Site I and Site IV together support ATF1- and CREB-induced trans-activation of the H4 promoter. Thus, our data establish that ATF/CREB factors functionally modulate histone H4 gene transcription at distal and proximal promoter elements.

Activating Transcription Factor 1↗