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(P1241) |
Cardiac regulation and systolic function of PP2A and PP5 in PP2AxPP5 double-transgenic mice |
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M. Dörner, F. Köpp, U. Gergs, J. Neumann (Halle (Saale)) |
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(P1242) |
oxLDL reduces cardiomyocyte function in rats and mice via an autocrine loop of secreted PCSK9 |
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A. Wolf, R. Schreckenberg, M. Weber, S. Rohrbach, L. Li, R. Schulz, K.-D. Schlüter, für die Studiengruppe: AG Schlüter (Gießen) |
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(P1243) |
Effects of dynamic changes in the mechanical environment on fibroblast-cardiomyocyte mechano-electric coupling: an in vitro scar model |
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R. Emig, C. M. Zgierski-Johnston, M. J. Krussig, M. Hörner, W. Weber, P. Kohl, R. Peyronnet (Freiburg im Breisgau) |
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(P1244) |
Chronic isoproterenol stimulation of anxA4a-/- gene-trap mice results in changes in cardiac electrophysiological properties and in gene transcription of cardiac annexins. |
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M. Domnik, F. Pluteanu, C. Rolfes, A. Klemme, A. Heinick, F. U. Müller (Münster) |
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(P1245) |
Annexin A4 interacts specifically with adenylyl cyclase 5, but not adenylyl cyclase 6, whereby several additional proteins may participate in the interaction |
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A. Klemme, C. Rolfes, M. Domnik, A. Heinick, S. König, F. U. Müller (Münster) |
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(P1246) |
Annexin A4 N-Terminus inhibits Adenylyl Cyclase type 5 |
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C. Rolfes, A. Heinick, F. U. Müller (Münster) |
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(P1247) |
Annexin A4 deficient myocytes exhibit an augmented electrophysiological response to acute and chronic isoproterenol stimulation |
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F. Pluteanu, M. Domnik, C. Rolfes, A. Klemme, A. Heinick, F. U. Müller (Münster) |