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Soluble guanylyl cyclase (sGC) is a cytosolic enzyme producing the intracellular messenger cyclic guanosine monophosphate (cGMP) on activation with nitric oxide (NO) which leads to the activation of GMP dependent protein kinases and to vasodilation. NO signaling may be affected by altered expression of sGC subunits, as has been shown in different pathological and physiological conditions and developmental stages. The molecular mechanisms underlying altered sGC expression in these and other conditions have not yet been revealed. Gene expression can also be regulated at the level of mRNA through alterations in translational efficiency and in mRNA stability. HuR (Human R) is a ubiquitously expressed member of the embryonic lethal abnormal vision (ELAV) family of RNA-binding proteins. Among other RNAs, there has been recent evidence that the expression of sGC is subject to post-transcriptional regulation by HuR. It has been shown that chronic hypertension induces changes in HuR expression and activity, which account for decreased sGC expression and activity in the aorta of hypertensive rats. This thesis should study was performed in an effort to provide some insight to the transcriptional and post-transcriptional regulation of sGC expression in a mammal, the rat. We investigated rat sGC alpha-1 transcriptional regulation in rat lung fibroblast (RLF-6) cells. The 3000bp 5' upstream region of the alpha-1 sGC gene was isolated and analyzed for promoter activity by using luciferase reporter constructs- Alpha3000 (with -2794 bp), Alpha1100 (-1092 bp), Alpha350 (-346 bp) and Alpha200 (-200 bp). The promoter activity was the highest in the 200bp construct (about 6-fold higher than Alpha3000) suggesting that this fragment contains all the crucial elements necessary to support basal transcription of the alpha-1 sGC gene. Analysis of the 200 bp of the 5’ UTR of the alpha-1 gene was performed using the MATINSPECTOR V2.2 software for putative transcription factors. The constructs containing the deleted sites for NFY and Sp1 showed a significant decrease in constitutive promoter activity by almost 80% and 60% respectively, implying that these transcription factors are crucial elements in the basal expression of the of sGC alpha-1 subunit. Treatment of RLF-6 cells with genistein 50 microM and mithramycinA 100 nM, known to inhibit the NFY and Sp1 binding to DNA respectively, reflected the same effects. Furthermore the cGMP content of the cells was significantly reduced by both inhibitors, almost completely by genistein, and by about 40 % by mithramycinA. Electrophoretic mobility-shift assay (EMSA) clearly showed the formation of multiple complexes with the biotinylated ODN (decoy oligodeoxynucleotide) probes for NFY and Sp1 when incubated with RLF-6 nuclear extract. A “supershift” observed in the presence of antibodies to the individual transcription factors confirmed that these factors were present in the shifted band, indeed. NFY and Sp1 are instrumental in several physiological and pathophysiological effects mediated by several growth factors in smooth muscle cells. Thus the regulation of the promoter, in response to serum, was also analysed. 10% foetal calf serum led to decreased alpha-1 sGC level as shown by western blots performed with rat aorta. Decreased sGC alpha-1 mRNA expression was observed in RLF-6 cells and cultured rat aortic smooth muscle cells incubated with FCS for 24 hours. This decrease was reflected in the promoter activity in RLF-6 cells using both Alpha3000 and Alpha200 constructs confirming that the regulation took place at promoter level. EMSA performed with nuclear extracts from FCS treated RLF-6 cells led to diminished binding to NFY, but to an enhanced binding to Sp1 site. We concluded that the factors Sp1 and NFY (the sites overlapping) compete for binding, and in the presence of FCS, it is Sp1 that binds stronger, and hence results in diminishing promoter activity. In order to delineate the post-transcriptional regulation of sGC alpha-1 subunit, studies were performed to demonstrate the regulation of expression of the mRNA stabilizing protein HuR. It has been observed that exposure of isolated rat aortic segments to the activator of adenylyl cyclase, forskolin, strongly reduced sGC alpha-1/beta-1 and HuR protein and mRNA expression in a time-dependent and actinomycin D-sensitive fashion. Transcription factor decoy approach proved that the cAMP-induced down-regulation of HuR is mediated by the activation of AP-1. It has been established that HuR stabilises the sGC alpha-1 and beta-1 mRNA. However the pathway underlying this regulation remains unknown. In order to identify the mechanism of this regulation, we looked for HuR interacting proteins employing the yeast two hybrid assay. The enzyme of the polyamine catabolic pathway spermidine/spermine N1-acetyltransferase (SSAT) was found to interact with the hinge region of HuR. This interaction was confirmed by performing immunoprecipitation and GST-pulldown experiments. A direct effect of these proteins on each other’s biological activity was not visible as tested through the SSAT activity assay and HuR gel shift. It might be possible that SSAT-mediated modulation of local polyamine concentrations enhances/reduces HuR activity and sGC expression to affect cell proliferation. In summary, this study represents an analysis of the rat sGC alpha-1 promoter regulation in rat fibroblast cells and identifies NFY and Sp1 as important factors in sGC alpha-1 expression. It also gives first evidence of sGC regulation at the transcriptional level in response to an external stimulus, and proposes the possible mechanism. It also identifies SSAT as a HuR interacting protein. These might have implications in the various pathophysiological conditions where sGC plays an important role.
Auxiliar-vermittelte Synthese von nicht-natürlichen Aminosäuren als Bausteine für RNA-Liganden
(2005)
In den letzten Jahren wurde deutlich, daß mRNAs regulatorische Elemente aufweisen.Ein Beispiel hierfür ist z. B. die Transkription des Human Immunodeficiency Virus Typ1 (HIV-1). Die Arginin-reiche Domäne des Tat-Proteins interagiert hierbei mit einer Bindungstelle innerhalb der Bulge-Region der TAR-RNA. Das Vorliegen des hochkonservierten Tat-TAR-Komplexes ist die Voraussetzung für die effiziente Transkription viraler Gene. Eine kompetitive Bindung synthetischer Liganden an die Bulge-Region sollte daher den viralen Vermehrungszyklus unterbrechen. Hochspezifische Liganden mit inhibitorischem Potential sind somit von größtem Interesse. Für eine hohe Liganden-Affinität sind neben ionischen Wechselwirkungen und HBrücken-Interaktionen vor allem auch Stapelwechselwirkungen (stacking) von entscheidender Bedeutung. Die Ligandensuche wurde auf Tripeptide fokussiert. Da die Anzahl natürlich vorkommender aromatischer Aminosäuren sehr limitiert ist,erfolgte im Rahmen dieser Arbeit zunächst eine stereoselektive Synthese von neuen,nicht-natürlichen Aminosäuren mit heteroaromatischen Seitenketten. Um den generellen Einsatz dieser Bausteine in kombinatorischen Bibliotheken zu demonstrieren,wurden zunächst Tripeptide des Musters Arg-X-Arg hergestellt. Bereits diese Tripeptide zeigten in einem Fluoreszenz-Assay inhibierende Effekte auf den Tat- TAR-Komplex von HIV-1 mit IC50-Werten von 2 - 80 µM. Diese vielversprechenden Liganden wiesen auch in einem Tat-TAR kontrollierten Reportergen-Assay stark inhibierende Wirkung in den Zellkulturen auf. Am Beispiel eines Peptides ließ sich mittels NMR-Spektroskopie eine Komplexkonformation bestimmen, die der des bekannten TAR-Argininamid-Komplexes entspricht. Durch den Einsatz von nichtnatürlichen und Standard-Aminosäuren in kombinatorischen Tripeptidbibliotheken (split and combine-Methode) konnte die Suche von potentiellen Peptid-Liganden um ein Vielfaches erweitert werden. Über ein on-bead-Screening ließen sich weitere vielversprechende TAR-bindende Tripeptide identifizieren. Die RNA-Ligandensuche wurde desweiteren auf die psi-RNA (HIV-1) und auf die mRNA des onkogenen bcr-abl Proteins ausgeweitet. Auch hier konnten einige RNA-bindende Tripeptide isoliert werden.