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  • 1995-1999  (4)
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  • 1
    ISSN: 1471-4159
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Medicine
    Notes: Abstract : The inhibitor of apoptosis (IAP) family of anti-apoptoticgenes, originally discovered in baculovirus, exists in animals ranging frominsects to humans. Here, we investigated the ability of IAPs to suppress celldeath in both a neuronal model of apoptosis and excitotoxicity. Cerebellargranule neurons undergo apoptosis when switched from 25 to 5 mMpotassium, and excitotoxic cell death in response to glutamate. We examinedthe endogenous expression of four members of the IAP family, Xchromosome-linked IAP (XIAP), rat IAP1 (RIAP1), RIAP2, and neuronal apoptosisinhibitory protein (NAIP), by semiquantitative reverse PCR and immunoblotanalysis in cultured cerebellar granule neurons. Cerebellar granule neuronsexpress significant levels of RIAP2 mRNA and protein, but expression of RIAP1,NAIP, and XIAP was not detected. RIAP2 mRNA content and protein levels did notchange when cells were switched from 25 to 5 mM potassium. Todetermine whether ectopic expression of IAP influenced neuronal survival afterpotassium withdrawal or glutamate exposure, we used recombinant adenoviralvectors to target XIAP, human IAP1 (HIAP1), HIAP2, and NAIP into cerebellargranule neurons. We demonstrate that forced expression of IAPs efficientlyblocked potassium withdrawal-inducedN-acetly-Asp-Glu-Val-Asp-specific caspase activity and reduced DNAfragmentation. However, neurons were only protected from apoptosis up to 24 hafter potassium withdrawal, not at later time points suggesting that IAPSdelay but do not block apoptosis in cerebellar granule neurons. In contrast,treatment with 100 μM or 1 mM glutamate did not induce caspase activity and adenoviral-mediated expression of IAPs had no influence on subsequent excitotoxic cell death.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1546-170X
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Medicine
    Notes: [Auszug] We show here that transient forebrain ischemia selectively elevates levels of neuronal apoptosis inhibitory protein (NAIP) in rat neurons that are resistant to the injurious effects of this treatment. This observation suggests that increasing NAIP levels may confer protection against ischemic cell ...
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Archives of virology 142 (1997), S. 305-321 
    ISSN: 1432-8798
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary. The currently accepted model for measles virus (MV) transcription and replication assumes the nucleocapsid (NP) protein to possess the ability to bind to RNA, to other NP molecules, and to the phosphoprotein (P) during ribonucleocapsid (RNP) assembly, as well as to the matrix protein (M) during virion assembly. We have cloned the MV NP open reading frame and have expressed the protein in bacteria as a fusion with glutathione-S-transferase (GST). Affinity purified GST-NP fusion protein has been used as a probe to examine the interaction of NP with [35S] methionine labeled proteins from MV-infected cells. We have demonstrated definite and specific interactions between NP and itself and between NP and P, but have been unable to demonstrate any interaction between NP and M. We have been able to provide independent confirmation of this pattern of interaction using the yeast two-hybrid assay. We have, in addition, been able to map the domains of NP involved in these interactions by assays using sets of amino- and carboxy-terminal deletion mutants of GST-NP. The NP-NP interaction domain was found to reside in the highly conserved middle and amino-terminal domains of the protein. The hyper-variable carboxy-terminus and the conserved middle domain appear to constitute separate and independent sites for the binding of P to NP. The significance of these findings in regard to MV transcription and replication is discussed.
    Type of Medium: Electronic Resource
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  • 4
    ISSN: 1573-675X
    Keywords: Apoptosis ; IAP ; NAIP ; TNF
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Abstract Multicellular organisms have evolved elaborate signal transduction pathways for maintaining homeostasis through the control of cell proliferation and death. The recent surge of interest in the regulation of programmed cell death has led to the rapid identification of many proteins involved in controlling and executing apoptosis. The inhibitors of apoptosis proteins (IAPs) constitute a family of highly conserved death suppressing proteins that were first identified in baculoviruses, and that has recently expanded to include at least two homologues in Drosophila melanogaster and four in rodents and humans. In this article we review the current state of IAP research. Two of the IAPs, HIAP-1 and HIAP-2, have been placed within the TNFα induced cell death pathway which involves two receptors for TNFα and multiple, overlapping signal transduction proteins. A third, X-linked gene termed XIAP, is ubiquitously expressed and appears to have a broad range of suppressor activity to a variety of apoptotic triggers. The fourth member, NAIP, has been identified as the protein product of a candidate gene for the inherited neuromuscular disorder, spinal muscular atrophy (SMA). The neuroprotective activity of NAIP in an in vivo model of cerebral ischemia has also been demonstrated.
    Type of Medium: Electronic Resource
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