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Träfflista för sökning "WFRF:(Feng M) srt2:(1990-1994)"

Search: WFRF:(Feng M) > (1990-1994)

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1.
  • Feng, P, et al. (author)
  • The structure of the TATA-less rat tissue-type plasminogen activator gene. Species-specific sequence divergences in the promoter predict differences in regulation of gene expression.
  • 1990
  • In: Journal of Biological Chemistry. - 0021-9258 .- 1083-351X. ; 265:4, s. 2022-7
  • Journal article (peer-reviewed)abstract
    • The genomic region carrying the rat tissue-type plasminogen activator (tPA) gene including its 5'-flanking sequence has been isolated and characterized by restriction enzyme analysis, Southern blotting, and DNA sequencing of all coding parts and the promoter region. The gene is approximately 25 kilobase pairs in size and comprises 14 exons separated by 13 introns. All the exon/intron boundaries agree with the GT-AG rule. The organization of the rat tPA gene is very similar to its human counterpart, and the location of the introns in the protein structure is identical to the human tPA gene. To characterize the promoter region, the transcription initiation site was identified by S1 nuclease protection experiments. A DNA fragment carrying 621 nucleotides of the 5'-flanking sequence was found to confer basal promoter activity and hormone responsiveness to a reporter gene construct in primary cultures of rat granulosa cells. Analysis of the rat tPA promoter sequence and a comparison with the human and mouse counterparts reveal several species-specific differences: the rat and mouse tPA promoters lack typical TATA and CAAT sequences found in the human tPA gene. Furthermore, the rat tPA promoter contains a consensus cAMP-responsive element shown to be required for cAMP responsiveness in eucaryotic genes. At the same position as the cAMP-responsive element in the rat gene, the mouse and human tPA genes have a 12-O-tetradecanoylphorbol-13-acetate-responsive element known to mediate activation by phorbol esters. The differences in the promoter sequences of the rat, mouse, and human tPA genes may have implications for the regulation of the tPA gene in different species.
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2.
  • Feng, Q P, et al. (author)
  • Cardiac neuropeptide Y and noradrenaline balance in patients with congestive heart failure.
  • 1994
  • In: British heart journal. - 0007-0769. ; 71:3, s. 261-7
  • Journal article (peer-reviewed)abstract
    • To measure plasma concentrations of noradrenaline and neuropeptide Y-like immunoreactivity in relation to cardiac function in patients with congestive heart failure.Retrospective analysis of plasma noradrenaline concentrations and neuropeptide Y-like immunoreactivity in the arterial and coronary circulations, in patients with a high or low ejection fraction (31.3% (1.3%) or 17.7% (1.1%) respectively) and in healthy volunteers.Cardiology department of a university hospital.41 patients with congestive heart failure with various aetiologies. Ten healthy volunteers served as a reference group.Concentrations of noradrenaline measured by high performance liquid chromatography and of neuropeptide Y-like immunoreactivity measured by radioimmunoassay. Cardiac index, pulmonary capillary wedge pressure, pulmonary vascular resistance, and systemic vascular resistance were derived by catheterisation of the right heart. Ejection fraction was measured by radionuclide angiography, cineangiography, or M mode echocardiography.There were pronounced and significant increases in circulating arterial concentrations of neuropeptide Y-like immunoreactivity and noradrenaline in both the high and low ejection fraction groups compared with the healthy subjects. In the patients myocardial release of neuropeptide Y-like immunoreactivity tended to be greater compared with normal subjects, but not significantly so. While normal subjects showed myocardial noradrenaline uptake, patients with congestive heart failure showed significant and progressive myocardial noradrenaline release. Arterial as well as coronary sinus concentrations of neuropeptide Y-like immunoreactivity correlated significantly with plasma noradrenaline concentrations from the respective sites. Plasma noradrenaline concentrations in the artery and coronary sinus were negatively correlated with ejection fraction and cardiac index; no such relations were found for concentrations of neuropeptide Y-like immunoreactivity.Both circulating concentrations of neuropeptide Y-like immunoreactivity and noradrenaline are significantly increased in moderate to severe forms of congestive heart failure. Plasma concentrations of neuropeptide Y-like immunoreactivity correlated with plasma noradrenaline concentrations, but plasma noradrenaline concentrations alone correlated with ejection fraction and cardiac index. Thus plasma noradrenaline concentration seems to be a more sensitive index of cardiac dysfunction than the concentration of neuropeptide Y-like immunoreactivity in congestive heart failure.
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3.
  • Ohlsson, M, et al. (author)
  • Transcriptional regulation of the rat tissue type plasminogen activator gene : localization of DNA elements and nuclear factors mediating constitutive and cyclic AMP-induced expression.
  • 1993
  • In: Molecular and Cellular Biology. - 0270-7306 .- 1098-5549. ; 13:1, s. 266-75
  • Journal article (peer-reviewed)abstract
    • We have characterized tissue type plasminogen activator (tPA) promoter elements and nuclear factors required for follicle-stimulating hormone (FSH)-induced transcription of the rat tPA gene in granulosa cells and constitutive expression of the gene in the rat neuroblastoma cell line B103. Run-on transcription analysis of isolated nuclei revealed that B103 cells transcribe the tPA gene at a high and constitutive level, while FSH was found to induce tPA gene transcription in a rapid and transient manner in granulosa cells. The maximal FSH-induced transcription rate was obtained after 20 min and was similar in the absence or presence of the protein synthesis inhibitor cycloheximide. However, in the presence of cycloheximide, tPA transcription was not turned off but continued at a high rate for several hours. This phenomenon may at least partly explain the earlier finding that tPA mRNA is superinduced by FSH in the presence of cycloheximide. DNase I footprinting analysis of the first 621 bp of the tPA promoter revealed a total of six regions that interact with nuclear factors from B103 and granulosa cells. Deletion of the promoter region from positions -269 to -621, a region that includes the two most-upstream footprints, had no effect on constitutive or FSH-induced transcription in transient expression experiments. Nuclear extracts from both granulosa cells and B103 cells showed strong binding to a consensus cyclic AMP-responsive element (CRE) at positions -178 to -185 and a neighboring binding site for nuclear factor 1 (NF1) at positions -145 to -158. The factors binding to these two regions were identified as members of the CRE-binding protein and NF1 families of transcription factors, respectively. Footprints were also obtained over two GC boxes at positions -64 to -71 and -41 to -49. These footprints were more pronounced with nuclear extracts from B103 cells than with extracts from untreated or FSH-treated granulosa cells, but gel shift assays indicate that similar amounts of two distinct factors bind to the two GC boxes in both cell types. Transfection experiments using promoter constructs with inactivated promoter elements indicate that both the CRE and NF1 sites contribute to the FSH responsiveness of the rat tPA gene in granulosa cells, while only the NF1 site is important for constitutive expression in B103 cells. The two GC boxes were found to be necessary both for constitutive expression in B103 cells and for FSH-induced expression in granulosa cells, and inactivation of both GC boxes essentially eliminated the tPA promoter activity in both cell types.
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