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APOPTIN AND ITS DERIVATIVES AS MOLECULAR CLUES TOWARDS THE DEVELOPMENT OF NOVEL TYROSINE KINASE INHIBITORSPanigrahi, Soumya 03 September 2009 (has links)
The non-receptor tyrosine kinase activity of fusion gene BCR-ABL derived oncoproteins is the key factor responsible for development and progress of Philadelphia positive (Ph+) chronic myeloid leukemia (CML). In the search for a superior and novel peptide-based inhibitor of Bcr-Abl, here I investigated a naturally occurring molecule, called apoptin. Apoptin is a 13.6 kDa protein derived from chicken anemia virus (CAV) and known to induce apoptosis in a wide range of transformed but not in primary cells. Apoptin is a protein without any reported structural and/or functional homolog and is an interesting candidate to initiate protein-protein interactions and subsequent downstream effects.
Initially by an array-based analysis I found that apoptin interacts with the SH3 domain of Abl. By high stringency pull-down and co-immunoprecipitation assays the apoptin and Bcr-Abl interaction was further confirmed. Subsequently, a set of apoptin and Bcr-Abl deletion mutants were used to map this interaction precisely that mainly occurred between a proline rich domain of apoptin and the SH3 domain of Bcr-Abl. I further investigated the role of apoptin on Bcr-Abl. Apoptin was able to modify the phosphorylation of a series of targets (e.g. CrkL, STAT5, c-Myc) downstream of Bcr-Abl kinase. In addition, I used computational algorhythms for protein modeling to study the 3D structure of apoptin and it’s docking with Bcr-Abl at the molecular level. In controlled studies using the 2-pheny-laminopyrimidine derived specific tyrosine kinase inhibitor Imatinib® I found that apoptin has comparable effects on CML cells, suggesting that the interacting segment of the apoptin molecule acts as an adaptor and negatively regulates the Bcr-Abl kinase by deactivating many cell proliferation and anti-apoptotic pathways in CML cells. Briefly, this work provides important insights towards the development of peptide based tyrosine kinase inhibitors as new anti-cancer agents.
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Synthesis and evaluation of potential aromatase inhibitorsNazareth, W. M. A. January 1988 (has links)
No description available.
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Structure-function studies of plasminogen activator inhibitor-1 /Sui, Guang-Chao, January 1900 (has links)
Diss. (sammanfattning) Stockholm : Karol. inst. / Härtill 5 uppsatser.
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Neue niedermolekulare Inhibitoren der Tubulinpolymerisation : Synthese und In-vitro-Prüfung von 9-Benzyliden-naphtho[2,3-b]thiophen-4(9H)-onen /Zuse, Anne. January 2005 (has links)
Univ., Diss.--Münster (Westfalen), 2005. / Zusfassung in dt. Sprache.
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Pharmakokinetik an ausgewählten antidiabetisch wirksamen Substanzen und Untersuchungen zu Hemmstoffen der nicht-enzymatischen Glykosylierung /Degenhardt, Thorsten. January 1995 (has links) (PDF)
Univ., Diss.--Heidelberg, 1995.
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Entwicklung, Synthese, biochemische und pharmakokinetische Charakterisierung von Polyethylenglykol-gekoppelten niedermolekularen Hemmstoffen des Thrombins /Batdorj, Myangantsetseg. January 2004 (has links) (PDF)
Universiẗat, Diss.--Jena, 2004.
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N1-Substituierte Imidazolderivate als Inhibitoren der Zytokinfreisetzung : Synthese, Analytik und Biologische Testung /Kotschenreuther, Dunja. January 2002 (has links)
Thesis (doctoral)--Eberhard-Karls-Universität zu Tübingen, 2002.
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Synthese und Eigenschaften N-acylierter Aziridin-2,3-dicarboxylate als selektive, peptidomimetische Inhibitoren von Cystein-Proteasen der Cathepsin-L-SubfamilieVičík, Radim. Unknown Date (has links) (PDF)
Universiẗat, Diss., 2004--Würzburg.
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Synthese und Testung von Aziridin-2-Carboxylaten als Cystein-Protease-InhibitorenSchulz, Franziska. Unknown Date (has links) (PDF)
Universiẗat, Diss., 2006--Würzburg.
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Untersuchung zur Wirkung und Wirkmechanismus von NHE-1-Inhibitoren auf die Hypertrophie adulter RattenkardiomyozytenKlämbt, Kerstin. January 2005 (has links) (PDF)
Frankfurt (Main), Univ., Diss., 2005.
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