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31.
J. S. Kahle C. W. Cotman 《Experimental brain research. Experimentelle Hirnforschung. Expérimentation cérébrale》1993,94(1):97-104
Paired-pulse potentiation of the glutamate-mediated excitatory postsynaptic potential (EPSP) recorded in the dentate gyrus molecular layer is thought to be mediated presynaptically. It is known that the activation of adenosine (A1) and GABAB receptors results in the reduction of glutamate release in the dentate molecular layer via presynaptic mechanisms. To examine possible modulatory roles of these receptors on paired-pulse potentiation, we examined the effects of adenosine and baclofen (a GABAB agonist) on paired-pulse potentiation using extracellular recording from the lateral perforant path in rat hippocampal slices maintained in vitro. We compared these effects with those of l--amino-4-phosphonobutyric acid (l-AP4) over a wide range of interstimulus intervals (ISIs). l-AP4 enhanced paired-pulse potentiation over the full range of ISIs tested (40–800 ms), whereas adenosine enhanced paired-pulse potentiation only at ISIs of 40–100 ms. In contrast, baclofen reduced paired-pulse potentiation only at ISIs of 400–800 ms. Furthermore, baclofen increased the amplitude of lateral perforant path field potentials, previously reported to be baclofen-insensitive. These results suggest that paired-pulse potentiation can be modulated through the activation of adenosine and baclofen receptors, indicate that this modulation is dependent on ISI, and show that there are at least two pharmacologically separable components of paired-pulse potentiation in the dentate gyrus. 相似文献
32.
天然免疫系统通常籍模式识别受体识别病原体相关分子模式。取决于感染的性质,模式识别受体通过细胞外 或细胞内途径识别病原体,并传导相应的信号,激活宿主防御应答,消灭入侵病原体。 相似文献
33.
Summary Derepression of lysine biosynthetic enzymes of Saccharomyces cerevisiae was investigated in lys9 auxotrophs which lack saccharopine reductase activity. Five enzymes (homocitrate synthase, homoisocitrate dehydrogenase, -aminoadipate aminotransferase, -aminoadipate reductase and saccharopine dehydrogenase) were constitutively derepressed in all lys9 mutants with up to eight-fold higher enzyme levels than in isogenic wild-type cells. Levels of these enzymes in lys2, lys14, and lys15 S mutants were the same or lower than those in wild-type cells. The regulatory property of lys9 mutants exhibited recessiveness to the wild-type gene in heterozygous diploids. Unlike the mating type effect, homozygous diploids resulting from crosses between lys9 auxotrophs exhibited even higher levels of derepressed enzymes than the haploid mutants. Addition of a higher concentration of lysine to the growth medium resulted in reduction of enzyme levels although they were still derepressed. These results suggest that lys9 mutants represent a lesion for the saccharopine reductase and may represent a repressor mutation which in the wild-type cells simultaneously represses unlinked structural genes that encode for five of the lysine biosynthetic enzymes. 相似文献
34.
35.
Velayos A Fuentes-Vicente M Aguilar-Elena R Eslava AP Iturriaga EA 《Current genetics》2004,45(6):371-377
Two Mucor circinelloides
structural genes involved in isoprenoid biosynthesis were isolated and characterised. The isoA gene encodes a typical eukaryotic farnesyl diphosphate synthase (EC 2.5.1.10), whereas the isoB gene deduced amino acid sequence shows similarity to fungal medium-chain prenyl diphosphate synthases. By functional complementation in Escherichia coli, the isoB gene product was shown to be a solanesyl diphosphate synthase (EC 2.5.1.11), which is the first fungal enzyme reported having this specificity. In addition, a M. circinelloides one-marker-per-chromosome map was completed by contour-clamped homogeneous electric field localisation of isoA, isoB and three other isoprenoid biosynthesis genes to individual chromosomes.Abbreviations FPP
farnesyl diphosphate (or pyrophosphate)
- GGPP
geranylgeranyl diphosphate
- PrenylPP
prenyl diphosphate
- DPP
decaprenyl diphosphate
- HPP
hexaprenyl diphosphate
- SPP
solanesyl diphosphate 相似文献
36.
Pre‐conditioning activates adenosine utilization in a cost‐effective way during myocardial ischaemia
G. Wikstrm M. Kavianipour G. Ronquist A. Waldenstrm 《Acta physiologica (Oxford, England)》2001,173(2):185-194
During pre‐conditioning the interstitial concentration of adenosine, in contrast to lactate, presents a die‐away curve‐pattern for every successive episode of ischaemia. This die‐away pattern might not necessarily be attributed to diminished adenosine production. The present study was undertaken to investigate whether pre‐conditioning alters the metabolic turnover of adenosine as observed by the lactate production during ischaemia. Interstitial levels of metabolites in pre‐conditioned (n=21) and non‐preconditioned (n=21) porcine hearts were monitored with microdialysis probes inserted in both ischaemic and non‐ischaemic tissue in an open chest heart model. Three subgroups perturbated with either plain microdialysis buffer (control), buffer containing adenosine (375 μM ), or buffer containing deoxyadenosine (375 μM ) were studied. All animals were subjected to 90 min of equilibrium microdialysis before 40 min of regional myocardial ischaemia and 120 min of reperfusion. Pre‐conditioning consisted of four repetitive episodes of 10 min of ischaemia and 20 min of reperfusion. Significantly higher levels of inosine and lactate were found in the ischaemic tissue of the pre‐conditioned subgroup receiving adenosine (P < 0.05) compared with the other two subgroups receiving deoxyadenosine and plain buffer, respectively. This difference was only valid for pre‐conditioned ischaemic myocardium, and hence equal amounts of inosine and lactate were produced in the non‐preconditioned ischaemic myocardium regardless of the presence of adenosine or deoxyadenosine. In the non‐ischaemic myocardium baseline levels of metabolites were measured in all subgroups. Pre‐conditioning favoured degradation of exogenous adenosine to inosine successively ending up in enhanced lactate production. This was probably because of the involvement of the hexose monophosphate pathway in the pre‐conditioned ischaemic myocardium. This route may therefore be supplementary in energy metabolism as a metabolic flow can be started by adenosine ending up in lactate without initial adenosine 5′‐triphosphate (ATP) investment. Utilization of adenosine in this way may also explain the successive die‐away pattern of adenosine seen in consecutive pre‐conditioning cycles. 相似文献
37.
上皮间质转化(EMT)及其分子机制 总被引:7,自引:0,他引:7
上皮细胞受到细胞外因子刺激后向间质细胞转化的现象与肿瘤的浸润转移密切相关。在此过程中上皮细胞的极性丧失,迁移和运动能力增强,同时上皮表型丢失而逐渐获得间质表型。参与这一过程的细胞内信号转导途径有受体酪氨酸激酶Ras-MAPK途径,Src激酶,Rho家族激酶,PI3K/AKT途径,Wnt信号通路,转录因子等。 相似文献
38.
VRML metabolic network visualizer 总被引:1,自引:0,他引:1
Rojdestvenski I 《Computers in biology and medicine》2003,33(2):169-182
39.
胸腹水组织因子及组织因子途径抑制物的检测及其意义 总被引:2,自引:0,他引:2
目的研究三组疾病胸腹水组织因子(Tissue factor,TF)及组织因子途径抑制物(Tissue factor pathway inhibitor,TFPI)的表达及其鉴别诊断意义。方法TF和TFPI采用ELISA法测定抗原表达。结果胸腹水TF水平和TFPI水平,恶性肿瘤组(570.04±627.53)ng/L,(28.60±15.57)μg/L和结核病组(283.82±143.16)ng/L,(31.16±12.26)μg/L明显高于肝硬化组(60.83±66.87)ng/L,(7.84±5.45)μg/L,P<0.01。TF/TFPI比值则为恶性肿瘤组(32.17±44.19)明显高于结核病组(13.55±13.15)和肝硬化组(11.22±9.05,P<0.05)。在恶性肿瘤组中,胸腹水癌细胞阳性组的TF表达(1106.92±1244.28)ng/L高于阴性组(331.08±295.84)ng/L,P<0.05。而阳性组的TFPI水平(27.35±17.75)μg/L与阴性组(30.34±13.20)μg/L无明显差异(P>0.05)。TF/TFPI比值则为阳性组(59.59±65.10)明显高于阴性组(11.54±8.37,P<0.01)。结论检测胸腹水TF和TFPI并分析TF/TFPI比值可以作为临床实验室有鉴别诊断意义的辅助指标,同时还可了解疾病的某些病理机制,尤其是肿瘤的某些生物学行为。 相似文献
40.
The cardiac neural crest is located in a transitional area on the neuraxis between trunk and cephalic regions and gives rise to both the dorsolateral and ventrolateral crest cell populations. Around stage 18 of chick development, a mass of E/C8+ cells surrounds the postotic pharyngeal arches and forms a crescent-shaped arch, termed the circumpharyngeal ridge. Using immunohistochemistry and quail-chick chimeras, it was determined that the E/C8+ cell mass located in the circumpharyngeal ridge derives from the dorsolateral component of the cardiac neural crest. The ventrolateral cell population of the cardiac crest is located more medially and shows long-persistent HNK-1 immunoreactivity dorsolateral to the foregut. The crest cells that populate the gut arise from the caudal portion of the circumpharyngeal crest and are always located caudal to the caudalmost pharyngeal ectomesenchyme. Circumpharyngeal crest cells continuously populate the pharyngeal arch ectomesenchyme and enteric nervous system on the lateral side of the foregut wall, as well as the hypoglossal pathway which develops within the ventral portion of the circumpharyngeal ridge. E/C8 and HNK-1 immunoreactivity are associated with the cells migrating via the dorsolateral (circumpharyngeal) and ventrolateral pathways, respectively, with one exception: there is a population of putative crest cells along the proximal course of the vagal intestinal branch that shows both immunoreactivities around stage 20. Dil labeling of the cells in the circumpharyngeal ridge suggests that the cells are contributed from the circumpharyngeal ridge to this population. Thus, the distribution of the circumpharyngeal crest cells and their derivatives coincides with the peripheral branch distribution of the cranial nerves IX, X, and XII, whose development is selectively affected in the absence of the cardiac neural crest, the source of the circumpharyngeal crest.© Willey-Liss, Inc. 相似文献