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31.
Amal S. El-Shal Nader M. Aly Sahar M. Abdel Galil Mohamed A. Moustafa Wael A. Kandel 《Joint, bone, spine : revue du rhumatisme》2013,80(6):626-631
ObjectiveTo investigate whether miRNA-499 (rs3746444) and miRNA-146a (rs2910164) genes polymorphisms are independent factors for rheumatoid arthritis (RA) in Egyptians, and whether they influence disease severity and activity.MethodsTwo hundred and seventeen RA patients and 245 healthy controls were enrolled in this study. Polymorphisms of miRNA-146a and miRNA-499 genes were detected using polymerase chain reaction restriction fragment length polymorphism (PCR-RFLP).ResultsThe miRNA-499 CT genotype was an independent factor of RA. The miRNA-499 CT, CC genotypes and C allele frequencies were significantly increased in erosive RA group. Moreover, the heterozygote CT had more severe and more active form of the disease compared with homozygote CC or TT. However, we did not find any significant association of miRNA-146a polymorphism with RA risk, severity, and activity.ConclusionThe miRNA-499 polymorphism is an independent factor of RA, and influences disease severity and activity. 相似文献
32.
33.
Synaptobrevin/vesicle-associated membrane protein (VAMP) of Aplysia californica: structure and proteolysis by tetanus toxin and botulinal neurotoxins type D and F. 总被引:3,自引:1,他引:3 下载免费PDF全文
S Yamasaki Y Hu T Binz A Kalkuhl H Kurazono T Tamura R Jahn E Kandel H Niemann 《Proceedings of the National Academy of Sciences of the United States of America》1994,91(11):4688-4692
Synaptobrevin/vesicle-associated membrane protein (VAMP) and syntaxin are potential vesicle donor and target membrane receptors of a docking complex that requires N-ethylmaleimide-sensitive factor (NSF) and soluble NSF-attachment proteins as soluble factors for vesicle fusion with target membranes. Members of this docking complex are the target of clostridial neurotoxins that act as zinc-dependent proteases. Molecular cloning of the Aplysia californica synaptobrevin cDNA revealed a 180-residue polypeptide (M(r), 19,745) with a central transmembrane region and an atypically large C-terminal intravesicular domain. This polypeptide integrates into membranes at both the co- and posttranslational level, as shown by modification of an artificially introduced N-glycosylation site. The soluble and membrane-anchored forms of synaptobrevin are cleaved by the light chains of the botulinal toxins type D and F and by tetanus toxin involving the peptide bonds Lys49-Ile50, Gln48-Lys49, and Gln66-Phe67, respectively. The active center of teh tetanus toxin light chain was identified by site-specific mutagenesis. His233, His237, Glu234, and Glu270/271 are essential to this proteolytic activity. Modification of histidine residues resulted in loss of zinc binding, whereas a replacement of Glu234 only slightly reduced the zinc content. 相似文献
34.
Agnihotri NT Hawkins RD Kandel ER Kentros C 《Proceedings of the National Academy of Sciences of the United States of America》2004,101(10):3656-3661
The hippocampus is critical for formation of spatial memories. Hippocampal pyramidal neurons in freely behaving animals exhibit spatially selective firing patterns, which taken together form an internal representation of the environment. This representation is thought to contribute to the hippocampal spatial memory system. Behavioral long-term memories differ from short-term memories in requiring the synthesis of new proteins. Does the development of the internal hippocampal representation also require the synthesis of new proteins? We found that blocking protein synthesis in the brain of mice by 95% does not affect short-term stability of newly formed hippocampal place fields but abolishes stability in the long term. By contrast, inhibiting protein synthesis does not affect the retention and recall of previously established fields in a familiar environment, indicating that protein synthesis-dependent reconsolidation is not required for recall. Our results indicate that place fields parallel both behavioral memories and the late phase of long-term potentiation in requiring the synthesis of new proteins for consolidation. 相似文献
35.
Skehel PA Fabian-Fine R Kandel ER 《Proceedings of the National Academy of Sciences of the United States of America》2000,97(3):1101-1106
VAMP/synaptobrevin is a synaptic vesicle protein that is essential for neurotransmitter release. Intracellular injection of antisera against the Aplysia californica VAMP/synaptobrevin-binding protein ApVAP33 inhibited evoked excitatory postsynaptic potentials (EPSPs) in cultured cells, suggesting that this association may regulate the function of VAMP/synaptobrevin. We have identified and characterized a mouse homologue of ApVAP33, mVAP33. The overall domain structure of the proteins is conserved, and they have similar biochemical properties. mVAP33 mRNA is detectable in all mouse tissues examined, in contrast to the more restricted expression seen in A. californica. We analyzed the cellular distribution of mVAP33 protein in brain slices and cultured cortical cells by light and electron microscopy. Although present at higher levels in neurons, immunoreactivity was detected throughout both neurons and glia in a reticular pattern similar to that of endoplasmic reticulum-resident proteins. mVAP33 does not colocalize with VAMP/synaptobrevin at synaptic structures, but expression overlaps with lower levels of VAMP/synaptobrevin in the soma. Ultrastructural analysis revealed mVAP33 associated with microtubules and intracellular vesicles of heterogeneous size. In primary neuronal cultures, large aggregates of mVAP33 are also detected in short filamentous structures, which are occasionally associated with intracellular membranes. There is no evidence for accumulation of mVAP33 on synaptic vesicles or at the plasma membrane. These data suggest that mVAP33 is an endoplasmic-reticulum-resident protein that associates with components of the cytoskeleton. Any functional interaction between mVAP33 and VAMP/synaptobrevin, therefore, most likely involves the delivery of components to synaptic terminals rather than a direct participation in synaptic vesicle exocytosis. 相似文献
36.
Theta frequency stimulation up-regulates the synaptic strength of the pathway from CA1 to subiculum region of hippocampus 下载免费PDF全文
Huang YY Kandel ER 《Proceedings of the National Academy of Sciences of the United States of America》2005,102(1):232-237
The subiculum (SB) is the principal target of the axons of the CA1 pyramidal cells and serves as the final relay in the trisynaptic loop between the entorhinal cortex and the hippocampus. We have examined synaptic plasticity in the synaptic pathway between the CA1 pyramidal cells and the SB in hippocampal slices and compared it under the same experimental condition with the synaptic plasticity in Shaffer collateral pathway (CA3-CA1). We find that the frequency response curve of synaptic strength induced by prolonged low-frequency stimulation (1-5 Hz) is systematically up-shifted from Shaffer collateral to the CA1-SB pathway. The up-regulation of synaptic strength is mediated by the activity-dependent modulation by beta-adrenergic transmission. Because the CA3-CA1 and the CA1-SB synaptic pathways are in series and the beta-adrenergic modulation is region-specific, this modulation seems to be involved in the selective control of signal transmission between the different regions of hippocampus. 相似文献
37.
Reconstitution of the hippocampal mossy fiber and associational-commissural pathways in a novel dissociated cell culture system. 总被引:3,自引:1,他引:3 下载免费PDF全文
D Baranes J C López-García M Chen C H Bailey E R Kandel 《Proceedings of the National Academy of Sciences of the United States of America》1996,93(10):4706-4711
Synapses of the hippocampal mossy fiber pathway exhibit several characteristic features, including a unique form of long-term potentiation that does not require activation of the N-methyl-D-aspartate receptor by glutamate, a complex postsynaptic architecture, and sprouting in response to seizures. However, these connections have proven difficult to study in hippocampal slices because of their relative paucity (<0.4%) compared to commissural-collateral synapses. To overcome this problem, we have developed a novel dissociated cell culture system in which we have enriched mossy fiber synapses by increasing the ratio of granule-to-pyramidal cells. As in vivo, mossy fiber connections are composed of large dynorphin A-positive varicosities contacting complex spines (but without a restricted localization). The elementary synaptic connections are glutamatergic, inhibited by dynorphin A, and exhibit N-methyl-D-aspartate-independent long-term potentiation. Thus, the simplicity and experimental accessibility of this enriched in vitro mossy fiber pathway provides a new perspective for studying nonassociative plasticity in the mammalian central nervous system. 相似文献
38.
Thomas E. Hamilton Douglas Barnhart Kenneth Gow Fernando Ferrer Jessica Kandel Richard Glick Roshni Dasgupta Arlene Naranjo Ying He Eric Gratias James Geller Elizabeth Mullen Peter Ehrlich 《Journal of pediatric surgery》2014
Purpose
The Children's Oncology Group (COG) renal tumor study (AREN03B2) requires real-time central review of radiology, pathology, and the surgical procedure to determine appropriate risk-based therapy. The purpose of this study was to determine the inter-rater reliability of the surgical reviews.Methods
Of the first 3200 enrolled AREN03B2 patients, a sample of 100 enriched for blood vessel involvement, spill, rupture, and lymph node involvement was selected for analysis. The surgical assessment was then performed independently by two blinded surgical reviewers and compared to the original assessment, which had been completed by another of the committee surgeons. Variables assessed included surgeon-determined local tumor stage, overall disease stage, type of renal procedure performed, presence of tumor rupture, occurrence of intraoperative tumor spill, blood vessel involvement, presence of peritoneal implants, and interpretation of residual disease. Inter-rater reliability was measured using the Fleiss' Kappa statistic two-sided hypothesis tests (Kappa, p-value).Results
Local tumor stage correlated in all 3 reviews except in one case (Kappa = 0.9775, p < 0.001). Similarly, overall disease stage had excellent correlation (0.9422, p < 0.001). There was strong correlation for type of renal procedure (0.8357, p < 0.001), presence of tumor rupture (0.6858, p < 0.001), intraoperative tumor spill (0.6493, p < 0.001), and blood vessel involvement (0.6470, p < 0.001). Variables that had lower correlation were determination of the presence of peritoneal implants (0.2753, p < 0.001) and interpretation of residual disease status (0.5310, p < 0.001).Conclusion
The inter-rater reliability of the surgical review is high based on the great consistency in the 3 independent review results. This analysis provides validation and establishes precedent for real-time central surgical review to determine treatment assignment in a risk-based stratagem for multimodal cancer therapy. 相似文献39.
40.
The role of polo-like kinase 3 in the response of BRAF-mutant cells to targeted anticancer therapies
Mahamat Babagana Julia V. Kichina Hannah Slabodkin Sydney Johnson Alexei Maslov Lorin Brown Kristopher Attwood Mikhail A. Nikiforov Eugene S. Kandel 《Molecular carcinogenesis》2020,59(1):5-14
The activation of oncogenic mitogen-activated protein kinase cascade via mutations in BRAF is often observed in human melanomas. Targeted inhibitors of BRAF (BRAFi), alone or as a part of a combination therapy, offer a significant benefit to such patients. Unfortunately, some cases are initially nonresponsive to these drugs, while others become refractory in the course of treatment, underscoring the need to understand and mitigate the underlying resistance mechanisms. We report that interference with polo-like kinase 3 (PLK3) reduces the tolerance of BRAF-mutant melanoma cells to BRAFi, while increased PLK3 expression has the opposite effect. Accordingly, PLK3 expression correlates with tolerance to BRAFi in a panel of BRAF-mutant cell lines and is elevated in a subset of recurring BRAFi-resistant melanomas. In PLK3-expressing cells, R406, a kinase inhibitor whose targets include PLK3, recapitulates the sensitizing effects of genetic PLK3 inhibitors. The findings support a role for PLK3 as a predictor of BRAFi efficacy and suggest suppression of PLK3 as a way to improve the efficacy of targeted therapy. 相似文献