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921.
Priming of synaptic vesicles (SVs) is essential for synaptic transmission. UNC-13 proteins are required for priming. Current models propose that UNC-13 stabilizes the open conformation of Syntaxin, in which the SNARE helix is available for interactions with Synaptobrevin and SNAP-25. Here we show that Tomosyn inhibits SV priming. Tomosyn contains a SNARE motif, which forms an inhibitory SNARE complex with Syntaxin and SNAP-25. Mutants lacking Tomosyn have increased synaptic transmission, an increased pool of primed vesicles, and increased abundance of UNC-13 at synapses. Behavioral, imaging, and electrophysiological studies suggest that SV priming was reconstituted in unc-13 mutants by expressing a constitutively open mutant Syntaxin, or by mutations eliminating Tomosyn. Thus, priming is modulated by the balance between Tomosyn and UNC-13, perhaps by regulating the availability of open-Syntaxin. Even when priming was restored, synaptic transmission remained defective in unc-13 mutants, suggesting that UNC-13 is also required for other aspects of secretion. 相似文献
922.
Rogers J Garcia R Shelledy W Kaplan J Arya A Johnson Z Bergstrom M Novakowski L Nair P Vinson A Newman D Heckman G Cameron J 《Genomics》2006,87(1):30-38
Rhesus macaques (Macaca mulatta) are the most widely used nonhuman primate species in biomedical research. To create new opportunities for genetic and genomic studies using rhesus monkeys, we constructed a genetic linkage map of the rhesus genome. This map consists of 241 microsatellite loci, all previously mapped in the human genome. These polymorphisms were genotyped in five pedigrees of rhesus monkeys totaling 865 animals. The resulting linkage map covers 2048 cM including all 20 rhesus autosomes, with average spacing between markers of 9.3 cM. Average heterozygosity among those markers is 0.73. This linkage map provides new comparative information concerning locus order and interlocus distances in humans and rhesus monkeys. The map will facilitate whole-genome linkage screens to locate quantitative trait loci (QTLs) that influence individual variation in phenotypic traits related to basic primate anatomy, physiology, and behavior, as well as QTLs relevant to risk factors for human disease. 相似文献
923.
Peng Y Shao H Ke Y Zhang P Xiang J Kaplan HJ Sun D 《Journal of immunology (Baltimore, Md. : 1950)》2006,176(8):5006-5014
In a previous study, we demonstrated that immunization with the uveitogenic peptide interphotoreceptor retinoid-binding protein (IRBP) 1-20 induces both CD4 and CD8 uveitogenic T cells in the B6 mouse. In the current study, we determined the role of the CD8 IRBP-specific T cells in the pathogenesis of experimental autoimmune uveitis. We also determined the conditions that facilitated the activation of CD8 autoreactive T cells. Our results showed that the beta2-microglobulin(-/-) mouse had a greatly decreased susceptibility to induction of experimental autoimmune uveitis by adoptive transfer of IRBP-specific T cells from B6 mice. We also showed that unlike CD4 autoreactive T cells, activated CD8 autoreactive T cells produced only a limited number and amounts of growth factors. As a result, in the absence of exogenously supplied growth factor(s), CD8 T cell activation and expansion were aborted. However, the growth and expansion of triggered CD8 autoreactive T cells could be supported by various cytokines. In addition to factors produced by activated CD4 autoreactive T cells, factors produced by nonlymphoid cells, such as IL-7 and IL-15, and unidentified factors in the culture supernatants of astrocytes and retinal pigment epithelial cells support the CD8 autoreactive T cells as well. Finally, we showed that, although several cytokines augmented the CD8 T cell response in vitro, different cytokines appeared to act on different CD8 subsets or on different activation/differentiation phases of CD8 autoreactive T cells. As a result, cytokines, such as IL-7, supported the proliferation and survival of CD8 IRBP-specific T cells, while others had only a growth-promoting effect. 相似文献
924.
Ding D Mehta H McCune WJ Kaplan MJ 《Journal of immunology (Baltimore, Md. : 1950)》2006,177(9):5878-5889
Systemic lupus erythematosus (SLE) is characterized by a systemic autoimmune response with profound and diverse T cell changes. Dendritic cells (DCs) are important orchestrators of immune responses and have an important role in the regulation of T cell function. The objective of this study was to determine whether myeloid DCs from individuals with SLE display abnormalities in phenotype and promote abnormal T cell function. Monocyte-derived DCs and freshly isolated peripheral blood myeloid DCs from lupus patients displayed an abnormal phenotype characterized by accelerated differentiation, maturation, and secretion of proinflammatory cytokines. These abnormalities were characterized by higher expression of the DC differentiation marker CD1a, the maturation markers CD86, CD80, and HLA-DR, and the proinflammatory cytokine IL-8. In addition, SLE patients displayed selective down-regulation of the maturation marker CD83 and had abnormal responses to maturation stimuli. These abnormalities have functional relevance, as SLE DCs were able to significantly increase proliferation and activation of allogeneic T cells when compared with control DCs. We conclude that myeloid DCs from SLE patients display significant changes in phenotype which promote aberrant T cell function and could contribute to the pathogenesis of SLE and organ damage. 相似文献
925.
Melikoglu M Uysal S Krueger JG Kaplan G Gogus F Yazici H Oliver S 《Journal of immunology (Baltimore, Md. : 1950)》2006,177(9):6415-6421
Beh?et's disease (BD) is a multisystem inflammatory disorder of unknown etiology characterized by recurrent oral and genital ulcerations and uveitis, with varying other manifestations associated with vascular inflammation. A unifying feature of BD inflammation is the skin pathergy reaction (SPR), a nonspecific tissue hyperreactivity to minor trauma involving epithelial disruption. This study compared skin responses to needle prick in BD patients and normal healthy volunteers. Two study groups, each consisting of 10 BD patients with SPR(+) and 6 controls, were evaluated using either immunohistochemistry or quantitative real-time PCR to measure inflammatory cell and cytokine levels in biopsy specimens obtained serially from independent sites at 0, 8, and 48 h after needle prick. We found similar cellular infiltration patterns in response to needle prick in BD patients and controls between 0 and 8 h. Further development of this immune response was limited in skin of normal control subjects, with stable or decreased inflammatory mediators observed at 48 h. In contrast, in BD-derived skin specimens, increased influxes of mature dendritic cells, monocytes, and lymphocytes, including T regulatory cells, were noted by 48 h. Similarly, increases in cytokines (IFN-gamma, IL-12 p40, IL-15), chemokines (MIP3-alpha, IP-10, Mig, and iTac), and adhesion molecules (ICAM-1, VCAM-1) were noted at 48 h in the skin of BD patients with SPR(+) but not in the skin of normal controls. These results suggest that, in contrast to the self-limited inflammation associated with epithelial disruption of normal skin, BD patients experience marked cellular influxes into the injury site, leading to an exaggerated lymphoid Th1-type response. 相似文献
926.
The RuvAB proteins catalyze branch migration of Holliday junctions during DNA recombination in Escherichia coli. RuvA binds tightly to the Holliday junction, and then recruits two RuvB pumps to power branch migration. Previous investigations have studied RuvA in conjunction with its cellular partner RuvB. The replication fork helicase DnaB catalyzes branch migration like RuvB but, unlike RuvB, is not dependent on RuvA for activity. In this study, we specifically analyze the function of RuvA by studying RuvA in conjunction with DnaB, a DNA pump that does not work with RuvA in the cell. Thus, we use DnaB as a tool to dissect RuvA function from RuvB. We find that RuvA does not inhibit DnaB-catalyzed branch migration of a homologous junction, even at high concentrations of RuvA. Hence, specific protein-protein interaction is not required for RuvA mobilization during branch migration, in contrast to previous proposals. However, low concentrations of RuvA block DnaB unwinding at a Holliday junction. RuvA even blocks DnaB-catalyzed unwinding when two DnaB rings are acting in concert on opposite sides of the junction. These findings indicate that RuvA is intrinsically mobile at a Holliday junction when the DNA is undergoing branch migration, but RuvA is immobile at the same junction during DNA unwinding. We present evidence that suggests that RuvA can slide along a Holliday junction structure during DnaB-catalyzed branch migration, but not during unwinding. Thus, RuvA may act as a sliding collar at Holliday junctions, promoting DNA branch migration activity while blocking other DNA remodeling activities. Finally, we show that RuvA is less mobile at a heterologous junction compared to a homologous junction, as two opposing DnaB pumps are required to mobilize RuvA over heterologous DNA. 相似文献
927.
928.
929.
930.
为了分析汉族人群一氧化氮合酶基因NOS3 A-922G、NOS3 T-786C与NOS3 G894T单核苷酸多态性(sin-gle nucleotide polymorphism,SNP)的等位基因及其组合分布与高血压病的相关性,选取无亲缘关系的高血压病人192例(男97例,女95例)以及无亲缘关系的健康个体122例(男76例,女46例)为对照组,提取静脉血白细胞基因组DNA,采用等位基因特异性引物PCR技术检测NOS3 A-922G、NOS3 T-786C与NOS3 G894T 3个位点的基因型.其结果显示:高血压病组与对照组NOS3 G894T、NOS3A-922G及NOS3 T-786C各等位基因型及其基因单倍型频率比较无显著性差异(P>0.05).男、女性别分层研究:无论男亚组还是女亚组均未发现NOS3 A-922G、NOS3T-786C与NOS3 G894T各个位点SNP与高血压病有相关性.等位基因组合分布研究发现NOS3 G894G A-922G T-786T组合基因型总体频率分布在高血压病组与正常对照组之间有显著性差异(P<0.05,x2=4.5944).男、女性别分层研究:男亚组上述3个位点SNP的各个组合基因型分布频率在高血压病组与正常对照组之间无显著性差异(P>0.05);女亚组中携带NOS3 G894G A-922G T-786C的组合基因型分布频率在高血压病组与正常对照组之间有显著性差异(P<0.01,x2=8.502).研究发现,在中国汉族人群中NOS3A-922 G、NOS3 T-786C与NOS3G894T SNP与高血压病无明确的相关性,且无性别差异.组合分布研究发现,NOS3 G894G A-922G T-786C的组合基因型分布频率在高血压病女性亚组较健康女性亚组明显减低,提示携带该组合基因型女性人群可能不易患高血压病. 相似文献