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Biomedical subjects

B Gao

Publications and source records attributed to B Gao.

At least 109 records · Page 6Linked to original sources

The sexually dimorphic nucleus of the hypothalamus contains GABA neurons in rat and man.

The sexually dimorphic nucleus of the preoptic area (SDN-POA) is the most striking structure displaying a morphological sex difference in the rat brain. A potentially homologous nucleus has been identified in the human hypothalamus. The objective of the present study was to pursue the putative homology of the rat and human SDN-POA by determining whether they express the same transmitter phenotype. We employed in situ hybridization histochemistry for GAD mRNA to show whether the neurons of the SDN-POA produce GABA. In both the rat and human, high levels of GAD65 and GAD67 mRNA are present in most, if not all, SDN-POA neurons. No sex difference is evident in the level of expression in either the rat or human. The data indicate that neurons of the SDN-POA in both the rat and human are GABA-producing and argue for the homology of these nuclei in the rat and human hypothalamus.

Animals↗

A novel Escherichia coli vector for oxygen-inducible high level expression of foreign genes.

By utilizing the oxygen-sensitive Escherichia coli Mn-superoxide dismutase (Mn-SOD) promoter, we have developed a vector system that expresses high levels of cloned foreign genes. The promoter for the bacterial Mn-SOD, as well as both 5'-untranslated and transcriptional termination sequences were ligated to a synthetic linker containing two restriction enzyme cloning sites. The vector also contained the gene for beta-lactamase, which confers ampicillin resistance to the host bacterium and provides a selectable marker. After screening and selection, high level of expression was achieved by exposure to the superoxide-generating agent paraquat (methyl viologen) as the inducer. To test the vector, both native and mutated human Mn-SOD cDNAs were cloned and expressed, respectively. To determine the optimal concentration of inducer necessary for maximal expression, recombinant bacteria were exposed to increasing concentrations of paraquat and subsequently assayed for superoxide dismutase (SOD) activity. The highest expression was induced by 20 microM paraquat, and approached 50% of total soluble protein.

Bacterial Proteins↗

DNA elements and protein factors involved in the transcription of the beta 2-adrenergic receptor gene in rat liver. The negative regulatory role of C/EBP alpha.

Primer extension and RNase protection analyses of the rat beta 2-adrenergic receptor (beta 2AR) gene identify two transcription start points at -64 and -220 nt, respectively. Transient transfections of putative promoter/pCAT constructs into DDT1 MF-2 cells indicate that fragments -36 to -100 (PI) and -186 to -312 (P2) are sufficient to promote transcription, whereas -911 to -1122 contains a negative regulatory element(s). RNase protection analysis of the 3' untranslated region (3'-UTR) indicates the presence of two transcripts with 3'-UTR of 111 and 604 nt exclusive of the poly(A+) tails. Northern blots of beta 2AR mRNA using full-length and partial cDNA probes indicate that a major 2.2 kb and a minor 1.6 kb species arise from the use of alternative promoters as well as different polyadenylation signals. DNase I footprinting and DNA mobility shift assays (DMSA) using rat liver nuclear extracts identify a number of transcription factors binding to sequence elements within or upstream from P1 and P2, including Spl, CRE, CPl, AP-2, NF-1, NF-kappa B, and C/EBP. Supershift assays using antibodies against C/EBP alpha and C/EBP beta and mutational analyses indicate that the protein binding to the C/EBP consensus recognition site at -925 to -933 is C/EBP alpha. The activity of promoter/CAT constructs containing the C/EBP recognition site is significantly decreased by cotransfection of C/EBP alpha but not C/EBP alpha but not C/EBP beta into either DDT1 MF-2 cells or primary rat hepatocytes. Partial hepatectomy causes a transient decrease in C/EBP alpha, as measured by DMSA, and an increase in beta 2 AR mRNA levels and rate of transcription in the remnant liver. Thus, derepression via C/EBP alpha is likely involved in the up-regulation of beta 2AR in the regenerating rat liver.

Animals↗

Elucidation of the core residues of an epitope using membrane-based combinatorial peptide libraries.

Combinatorial peptide libraries have proved to be a valuable tool for the study of the interaction of a functional protein with its ligand. Here, the epitope for a monoclonal antibody 201/9, raised against beta-factor XIIa, has been identified with a two-step approach using peptide libraries attached to a polymer (polyvinylidene difluoride) membrane. First, the octapeptide libraries with two amino acids defined at position 2 and 4, represented by the formula X-O2-X-O4-X-X-X-X, were synthesized on a sheet of polymer membrane in which X represents a mixture of all the natural -amino acids except cysteine, while O2 and O4 each represent a single amino acid. The libraries were probed with the antibody 201/9, and the bound antibody was detected with a sensitive chemiluminescent method. In the first cycle, the peptide mixtures X-Phe-X-Gln-X-X-X-X showed the strongest signal development. In the second cycle Phe and Gln were incorporated into new libraries consisting of sequences O1-Phe-X-Gln-X-X-X-X, X-Phe-O3-Gln-X-X-X-X, X-Phe-X-Gln-O5-X-X-X, X-Phe-X-Gln-X-O6-X-X, X-Phe-X-Gln-X-X-O7-X, and X-Phe-X-Gln-X-X-X-O8. After probing these new peptides, the residues representing the core sequence of the epitope for monoclonal antibody 201/9 were elucidated. The sequence Ser-Phe-Leu-Gln-Glu-Asn, identified as the immunodominant epitope, correlates well with the sequence Ser-Phe-Leu-Gln-Glu-Ala previously identified (Gao, B., and Esnouf, M. P. (1996) J. Immunol. 157, 183-188) in a scan of overlapping peptides based on the sequence of human beta-factor XIIa.

Amino Acid Sequence↗

Effect of constitutive 70-kDa heat shock protein polymerization on its interaction with protein substrate.

Constitutive 70-kDa heat shock protein (hsc70) is a mixture of monomers and oligomers in ADP, while in ATP it is monomeric unless certain DnaJ homologs are present which induce hsc70 to form large polymers in an ATP-dependent reaction. A key question regarding polymerized hsc70 is whether it is able to bind protein substrates. Polymerized BiP, the hsc70 present in the endoplasmic reticulum, has been found to bind substrates in vitro although substrates appear to bind only to monomeric BiP in vivo. In this study, we investigated whether substrate binds to polymerized cytoplasmic hsc70 in vitro. Although both stoichiometric ATP and high concentrations of cytochrome c peptide monomerized hsc70, direct binding studies provided no evidence that cytochrome c peptide binds to polymerized hsc70. Furthermore, the time course of cytochrome c peptide and clathrin binding to hsc70 suggested that rather than binding to polymerized hsc70, they monomerized it by reducing free monomer, thereby shifting the monomer-polymer equilibrium toward monomer. We conclude that peptide and protein substrates bind at least an order of magnitude more weakly to polymerized hsc70 than to monomer, suggesting that polymerization of hsc70 in vivo, perhaps by DnaJ homologs, may store it in an inactive form.

Adenosine Triphosphate↗

Multiple interactive residues of recognition: elucidation of discontinuous epitopes with linear peptides.

The discontinuous epitopes of beta-factor XIIa for three mAbs were mapped by a linear peptide-based immunoblotting technique, referred to as multiple interactive residues of recognition. The Abs were incubated with a set of overlapping synthetic peptides, deduced from the cDNA sequences of beta-factor XIIa, on a polymer membrane, and the signal was amplified by an ECL assay. Several discrete sequences of the protein were recognized by each Ab. The recognized peptides were further characterized using alanine substitution analogues and peptides of different lengths. The discontinuous epitopes found for each Ab were formed by several peptides and were composed of 20 to 31 residues. The sequence FLQEA was recognized by all three Abs and was the immunodominant peptide. Abs 201/9 and 2/15 bound to very similar discontinuous sequences, but with subtle differences. The sequences 76RLHEAFSP83, 88HDLALLRLQE97, 178GFLEG182, 146FLQEA150, and 237IRE239 formed the epitope for mAb 201/9, whereas 76RLHEAFSP83, 90LALLRLQE97, 146FLQEA150, and 235AWIREHT241 formed the epitope for Ab 2/15. The third Ab 202/7 recognized the sequences 79EAFSP83, 93LRLQE97, 133WGHQF137, and 146FLQEA150. We suggest that these sequences represent the sites to which the Abs bind. This procedure provides a sensitive and convenient tool to elucidate discontinuous epitopes for the binding of Abs, receptor ligand-binding sites, or enzyme inhibitor binding sites.

Amino Acid Sequence↗

Transcriptional regulation of alpha(1b) adrenergic receptors (alpha(1b)AR) by nuclear factor 1 (NF1): a decline in the concentration of NF1 correlates with the downregulation of alpha(1b)AR gene expression in regenerating liver.

The 5' upstream region from --490 to --540 (footprint II) within the dominant P2 promoter of the rat alpha(1b) adrenergic receptor (alpha(1b)AR) gene is recognized by a sequence-specific DNA-binding protein (B. Gao, M. S. Spector, and G. Kunos, J. Biol. Chem. 270:5614-5619, 1995). This protein, detectable in Southwestern (DNA-protein) blots of crude nuclear extracts as 32- and 34-kDa bands, has been purified 6,000-fold from rat livers by DEAE-Sepharose, heparin-Sepharose, and DNA affinity chromatography. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and UV cross-linking of the purified protein indicated the same molecular mass as that in crude extracts. Methylation interference analysis revealed strong contact with a TTGGCT hexamer and weak contact with a TGGCGT hexamer in the 3' and 5' portions of footprint II, respectively. Nucleotide substitutions within these hexamers significantly reduced protein binding to footprint II and the promoter activity of P2 in Hep3B cells. The purified protein also bound to the nuclear factor 1 (NF1)/CTF consensus sequence, albeit with lower affinity. Gel mobility supershift and Western blotting (immunoblotting) analyses using an antibody against the NF1/CTF protein identified the purified 32- and 34-kDa polypeptides as NF1 or a related protein. Cotransfection into Hep3B cells or primary rat hepatocytes of cDNAs of the NF1-like proteins NF1/L, NF1/X, and NF1/Redl resulted in a three- to fivefold increase in transcription directed by wild-type P2 but not by the mutated P2. Partial hepatectomy markedly decreased the levels of NF1 in the remnant liver and its binding to P2, which paralleled declines in the rate of transcription of the alpha(1b)AR gene and in the steady-state levels of its mRNA. These observations indicate that NF1 activates transcription of the rat alpha(1b)AR gene via interacting with its P2 promoter and that a decline in the expression of NF1 is one of the mechanisms responsible for the reduced expression of the alpha(1b)AR gene during liver regeneration.

Animals↗

Glutamic acid decarboxylase message isoforms in human suprachiasmatic nucleus.

The rat suprachiasmatic nucleus (SCN) is comprised of neurons that contain gamma-amino butyric acid (GABA) colocalized with one or more peptides. In the present study, the authors employed in situ hybridization histochemistry to determine whether the human SCN also contains GABA neurons using synthetic oligonucleotide probes complementary to sequences of two isoforms of the GABA-forming enzyme, glutamic acid decarboxylase (GAD), GAD65, and GAD67. Most, if not all, SCN neurons appear to express both GAD65 mRNA and GAD67 mRNA with the content of GAD67 greater than GAD65. Both isoforms also are expressed in some neurons of the anterior hypothalamic area, in small neurons of the paraventricular nucleus but not in the supraoptic nucleus. These data indicate that neurons in the human SCN, like those in rodents, use GABA as a neurotransmitter.

Animals↗

[Chemical constituents from the aerial part of Epimedium brevicornum Maxim].

Six flavonoids were isolated from the aerial part of Epimedium brevicornum and identified as baohuo side I, 2"' O-rhamnosyl icariside II, sagittatoside B, baohuoside II, ikarisoside F and ikarisoside C by means of UV, IR, 1H-NMR, 13C-NMR and FAB-MS spectral analysis, they were isolated from this plant for the first time.

Drugs, Chinese Herbal↗

[The value of determining guanine deaminase in diagnosis of hepatic diseases].

We determined the Guanine Deaminase (GD) activity of 200 patients with different diseases. It was found that GD activity of hepatic patients is higher than that of health adults, while the GD activity of other patients is in the normal range. There is a linear correlation between GD activity and ALT in patients with chronic hepatitis, billiary obstruction, and between GD activity and total bilirubin in patients with chronic active hepatitis, biliary obstruction and liver cirrhosis. Moreover, the GD activity of patients positive for anti-HCV is significantly increased. So GD activity in serum is a specific and sensitive index to estimating hepatic functions and can be used in the diagnosis of acute and chronic hepatitis, cirrhosis of liver, and C virus hepatitis.

Adult↗

GABAA-receptor subunit composition in the circadian timing system.

In the present study, the distribution of GABAA-receptor alpha 1-, alpha 2-, alpha 3-, alpha 5-, beta 2.3- and gamma 2-subunits were localized immunohistochemically with subunit specific antibodies in the rat circadian timing system (CTS). The areas examined include the principal circadian pacemaker, the suprachiasmatic nucleus (SCN), and areas that receive important SCN input including the intergeniculate leaflet (IGL), subparaventricular zone (SPVZ), paraventricular hypothalamic nucleus (PVH), the retrochiasmatic area (RCh) and the paraventricular nucleus of the thalamus (PVT). The SCN has an unusual pattern with immunoreactivity for the alpha 2-, alpha 3-, alpha 5-, and gamma 2-subunits but not for the commonly expressed alpha 1- and beta 2.3-subunits. In all of the areas receiving SCN efferent input (SPVZ, PVH, RCh, PVT and IGL), staining is present either for all six subunits or for the three common subunits, alpha 1-, beta 2.3-, and gamma 2. There is some evidence for a differential distribution of subunits at the cellular level. The alpha 2-, and beta 2.3-subunits are predominantly expressed in neuropil, the alpha 3-, alpha 5- and gamma 2-subunits are predominantly expressed over perikarya and the alpha 1-subunit is expressed over both neuropil and perikarya in the areas in which subunit immunoreactivity is found. The demonstration of this regional and cellular expression of GABAA-receptor subunits should contribute to our understanding of GABAergic neurotransmission in the CTS.

Animals↗

Interaction of nucleotide-free Hsc70 with clathrin and peptide and effect of ATP analogues.

The functions of the 70 kDa heat-shock proteins (hsp70s) are regulated by their bound nucleotide. We previously observed major differences in the effect of bound ATP and ADP on the interaction of hsc70 (constitutive hsp70) with its protein substrates. In the present study, we investigated the interaction of protein substrates with nucleotide-free hsc70 and with hsc70 with bound ATP analogues. We found, first, that nucleotide-free hsc70 appeared to interact differently with different substrates. Specifically, nucleotide-free hsc70 behaved much more like hsc70-ATP than hsc70-ADP in that clathrin very rapidly bound to and dissociated from nucleotide-free hsc70 in contrast to its very slow binding to and dissociation from hsc70-ADP. On the other hand, nucleotide-free hsc70 behaved more like hsc70-ADP than hsc70-ATP in that cytochrome c peptide dissociated very slowly from nucleotide-free hsc70 compared to its rapid dissociation from hsc70-ATP. Second, binding of the ATP analogues AMP-PNP, dATP, and ATP gamma S to nucleotide-free hsc70 had very little further effect on the properties of the nucleotide-free hsc70. Therefore, previously observed effects of ATP analogues may have been due to removal of the bound ADP rather than to the presence of analogues.

Adenosine Diphosphate↗

Cerebellar granule cells in vitro recapitulate the in vivo pattern of GABAA-receptor subunit expression.

GABAA-receptor heterogeneity is based on the combinatorial assembly of a family of 15 subunits (alpha 1-6, beta 1-3, gamma 1-3, delta, rho 1-2) into multiple receptor subtypes. The factors regulating the differential expression of GABAA-receptor subtypes in the CNS are largely unknown. In the present study, we have used primary cultures of rat cerebellar granule cells as model system to analyze to which extent the expression, subunit composition, and subcellular localization of GABAA-receptors depend on signals available in the cerebellum in vivo, in particular GABAergic input which is lost in vitro. GABAA-receptor subunits were visualized immunohistochemically with subunit-specific antibodies and their subcellular localization was investigated by confocal laser microscopy with selective markers for dendritic proteins (microtubule-associated protein 2, non-phosphorylated neurofilaments) and synaptic vesicles (synaptophysin). Triple immunofluorescence staining experiments revealed that dissociated granule cells taken from 7-day-old rats and maintained in culture for 9 days co-expressed the subunits alpha 1 alpha 6 beta 2,3 gamma 2 delta, a subunit repertoire which is identical to that seen in vivo in the adult cerebellum. GABAA-receptor subunits were localized selectively in granule cell somata and in proximal neurites immunopositive for MAP-2. No staining was detected in distal neurites immunopositive for neurofilaments. GABAA-receptor subunits frequently were aggregated in clusters closely apposed to synaptophysin-immunoreactive varicosities, suggesting a post-synaptic localization. Thus, major functional determinants of GABAA-receptors in granule cells (subunit repertoire, subcellular segregation and clustering in post-synaptic sites) develop in vitro, indicating that they are regulated to a large extent by intrinsic factors, independently of GABAergic input.

Animals↗

The rat alpha 1B adrenergic receptor gene middle promoter contains multiple binding sites for sequence-specific proteins including a novel ubiquitous transcription factor.

Transcription of the rat alpha 1B adrenergic receptor (alpha 1BAR) gene in the liver is controlled by three promoters that generate three mRNAs. The middle promoter (P2), located between -432 and -813 base pairs upstream from the translation start codon and lacking a TATA box, is responsible for generating the major, 2.7-kilobase mRNA-species expressed in many tissues (Gao, B., and Kunos, G. (1994) J. Biol. Chem. 269, 15762-15767). DNase I footprinting using rat liver nuclear extracts identified three protected regions in P2: footprint I (-432 to -452), footprint II (-490 to -540), and footprint III (-609 to -690). Putative response elements in footprints I and III were not analyzed except the AP2 binding site in footprint III, which could be protected by purified AP2 protein. Footprint II contains four sites corresponding to half of the NF-I consensus sequence, but DNA mobility shift assays indicate that this footprint binds two proteins distinct from NF-I: a ubiquitous CP1-related factor and another novel factor, termed alpha-Adrenergic Receptor Transcription Factor (alpha ARTF), which binds to two separate sites in this region. The alpha ARTF is widely distributed, with the highest amounts found in brain, followed by liver, kidney, lung, and spleen, but no detectable activity in heart. Deletions of alpha ARTF binding sites nearly abolished P2 promoter activity, which suggests that the alpha ARTF is essential for the transcription of the alpha 1BAR gene in most tissues.

Animals↗