8 research outputs found

    Requirement of Caspase-3 for Apoptotic Calcium Release

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    Monitoring Dynamic Changes In Mitochondrial Calcium Levels During Apoptosis Using A Genetically Encoded Calcium Sensor

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    Dynamic changes in intracellular calcium concentration in response to various stimuli regulates many cellular processes such as proliferation, differentiation, and apoptosis1. During apoptosis, calcium accumulation in mitochondria promotes the release of pro-apoptotic factors from the mitochondria into the cytosol2. It is therefore of interest to directly measure mitochondrial calcium in living cells in situ during apoptosis. High-resolution fluorescent imaging of cells loaded with dual-excitation ratiometric and non-ratiometric synthetic calcium indicator dyes has been proven to be a reliable and versatile tool to study various aspects of intracellular calcium signaling. Measuring cytosolic calcium fluxes using these techniques is relatively straightforward. However, measuring intramitochondrial calcium levels in intact cells using synthetic calcium indicators such as rhod-2 and rhod-FF is more challenging. Synthetic indicators targeted to mitochondria have blunted responses to repetitive increases in mitochondrial calcium, and disrupt mitochondrial morphology3. Additionally, synthetic indicators tend to leak out of mitochondria over several hours which makes them unsuitable for long-term experiments. Thus, genetically encoded calcium indicators based upon green fluorescent protein (GFP)4 or aequorin5 targeted to mitochondria have greatly facilitated measurement of mitochondrial calcium dynamics. Here, we describe a simple method for real-time measurement of mitochondrial calcium fluxes in response to different stimuli. The method is based on fluorescence microscopy of 'ratiometric-pericam' which is selectively targeted to mitochondria. Ratiometric pericam is a calcium indicator based on a fusion of circularly permuted yellow fluorescent protein and calmodulin4. Binding of calcium to ratiometric pericam causes a shift of its excitation peak from 415 nm to 494 nm, while the emission spectrum, which peaks around 515 nm, remains unchanged. Ratiometric pericam binds a single calcium ion with a dissociation constant in vitro of ~1.7 μM4. These properties of ratiometric pericam allow the quantification of rapid and long-term changes in mitochondrial calcium concentration. Furthermore, we describe adaptation of this methodology to a standard wide-field calcium imaging microscope with commonly available filter sets. Using two distinct agonists, the purinergic agonist ATP and apoptosis-inducing drug staurosporine, we demonstrate that this method is appropriate for monitoring changes in mitochondrial calcium concentration with a temporal resolution of seconds to hours. Furthermore, we also demonstrate that ratiometric pericam is also useful for measuring mitochondrial fission/fragmentation during apoptosis. Thus, ratiometric pericam is particularly well suited for continuous long-term measurement of mitochondrial calcium dynamics during apoptosis

    Epigenetische Repression des NFATc1 Transkriptionsfakors in menschlichen Lymphomen

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    We examined the regulation of NFATc1 in different lymphomas and observed an inversed correlation between the methylation status and expression of NFATc1. Our data demonstrate that aberrant DNA methylation associated with chromatin remodeling within nfatc1 locus is a major mechanism for the repression of NFATc1 expression, suggesting that the DNA methylation-mediated transcriptional silencing of NFATc1 may be a critical event in the tumorogenesis of ALCLs and cHLs. Furthermore, the DNA methylation of human nfatc1 promoter region could be used as a novel biomarker of tumor progression. Our results indicate a close link between the loss of immunoreceptor signaling and NFATc1 expression in human lymphomas. For both ALCLs and cHLs, defects in immunoreceptor signaling have been described which result in a loss of receptor-mediated gene expression programs (Schwering et al., 2003; Bonzheim et al., 2004; Marafioti et al., 2004). In T cells, one indicator gene of these programs appears to be the nfatc1 gene whose expression is controlled by TCR signals (Chuvpilo et al., 2002a). In contrast, in T cells NFATc1 expression is unaffected by TCR signals, and NFATc2 was found to be expressed at normal levels in ALCLs and cHLs (L.K., unpubl. data). Moreover, the activity of NF-kappaB factors which can bind to certain NFAT binding sites and share a distantly-related DNA binding domain with NFATs is strongly elevated in cHL cells (Bargou et al., 1997; Hinz et al., 2001; Hinz et al., 2002) suggesting that NFATs and NF-kappaBs exert very different effects on generation and maintenance of Hodgkin’s lymhomas. However, it should be mentioned that in Burkitt’s and further B cell lymphomas in which NFATc1 proteins are strongly expressed and controlled by receptor signals (Kondo et al., 2003), they could exert a promoting function in tumor development. The genes of p53 family members p63 and p73 are prominent examples for mammalian genes whose products can act both as oncoproteins and tumor suppressor genes (Hibi et al., 2000; Stiewe and Putzer, 2002), and it is likely that more genes exist which encode both tumor suppressors and oncoproteins. It remains to be shown whether the nfatc1 gene is one of them.Wir haben die Regulation von NFATc1 in verschiedenen Lymphomen untersucht und beobachteten eine umgekehrte Korrelation zwischen dem Ausmaß an Methylierung und der Expression von NFATc1. Unsere Daten demonstrieren, dass eine aberrante DNA-Methylierung, die mit veränderter Chromatinstruktur innerhalb des nfatc1 Lokus assoziiert ist, der Hauptmechanismus für die Repression der NFATc1-Expression ist. Es wäre zu vermuten, dass die durch DNA-Methylierung verursachte transkriptionelle Abschaltung von NFATc1 der kritische Schritt bei der Tumorgenese von ALCLs und cHLs ist. Des weiteren könnte das Ausmaß der DNA-Methylierung in der humanen nfatc1-Promotorregion als neuer Biomarker für Tumorprogression genutzt werden. Unsere Daten indizieren eine enge Verbindung zwischen dem Verlust von Immunrezeptorsignalen und der NFATc1-Expression in humanen Lymphomen. Für sowohl ALCLs als auch cHLs wurden Defekte in der Immunrezeptorsignalgebung beschrieben, welche sich im Verlust des Rezeptor vermittelten Genexpressionsprogramms niederschlagen (Schwering et al., 2003; Bonzheim et al., 2004; Marafioti et al., 2004). In T-Zellen scheint das nfatc1-Gen eins der Indikatorgene dieses Programms zu sein, dessen Expression durch TCR-Signale kontrolliert wird (Chuvpilo et al., 2002a). Im Gegensatz dazu bleibt die NFATc2-Expression in T-Zellen unbeeinflusst von TCR-Signalen, weshalb NFATc2 in ALCLs und cHLs auch in normalem Ausmaß exprimiert wird (L.K., unpubl. data). Andererseits ist die Aktivität der NF-kappaB-Faktoren, die auch an bestimmte NFAT-Bindungsstellen binden können und deren DNA-Bindungsdomäne entfernt mit der der NFATs verwandt ist, in cHL-Zellen stark erhöht (Bargou et al., 1997; Hinz et al., 2001; Hinz et al., 2002). Das lässt vermuten, dass NFATc1 und die NF-kappa-Faktoren eine sehr unterschiedliche Rolle bei der Entstehung und dem Erhalt der Hodgkinlymphome spielen. Es sollte aber erwähnt werden, dass in Burkitts und anderen B-Zelllymphomen, in denen NFATc1-Proteine stark exprimiert und darüber hinaus durch Rezeptorsignale kontrolliert sind (Kondo et al., 2003), diese eine Tumor fördernde Funktion ausüben könnten. Die Gene der p53-Familienmitglieder p63 und p73 sind prominente Beispiele für Säugergene, deren Produkte sowohl als Onkoproteine als auch als Tumorsuppressoren fungieren können (Hibi et al., 2000; Stiewe and Putzer, 2002), und es ist wahrscheinlich, dass es noch weitere Gene gibt, die beide Funktionen ausüben. Es wird zu zeigen sein, ob das nfatc1-Gen eins von ihnen ist
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