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排序方式: 共有894条查询结果,搜索用时 171 毫秒
101.
Merola E Mattioli E Minimo C Zuo W Rabitti C Cicala M Caviglia R Pollice L Gabbrielli A Giordano A Claudio PP 《Journal of cellular physiology》2006,207(2):512-519
Control of the G1/S-phase transition as well as angiogenic switch are two of the most studied mechanisms in cancer. The current study examined the correlation between the immunohistochemical expression of pRb2/p130, VEGF, EZH2, p53, p16, p21waf-1, p27, and PCNA in Barrett's esophagus (BE). Overall, p53 showed a much higher expression in BE patients (up to 50%) than in controls (1-10%) (P < 0.005). Also p21 showed a downregulation in BE when compared to normal esophagus (70% of cells vs. 65%), but the difference did not show any statistical significance (P = 0.45). pRb2/p130 was detected in 80% of cells in normal controls, but showed positive in only 20% of cells in BE biopsies. Additionally, Rb2/p130 expression was inversely correlated to that of VEGF, EZH2, and PCNA (P < 0.0001, P = 0.0032, P < 0.001, respectively). p27 stained more intensely and in a widespread manner (70%) cells in normal esophageal tissues but about only 30% in BE samples (P < 0.001). Lastly, in accordance with other reports, we also found p16 expressed by immunohistochemistry at high levels in normal controls and at low levels in BE (P < 0.001). In conclusion, p16, p21, p27, and p53 staining confirmed previously published data. Interestingly, pRb2/p130 expression was found significantly decreased in metaplastic epithelium compared to normal controls and showed significant inverse correlation with the expression of other markers, such as VEGF, EZH2, and PCNA. These data, taken together, indicate that these molecular events occurring in Barrett's metaplasia (BM) may represent one of the many steps taking place during esophageal malignant progression such as impairment of cell-cycle control, altered differentiation, and unbalanced angiogenesis. 相似文献
102.
Matteo Busconi Luca Sebastiani Corrado Fogher 《Molecular breeding : new strategies in plant improvement》2006,17(1):59-68
A set of 14 SCAR markers were developed starting from RAPD, AFLP and SAMPL analysis of several olive germplasm accessions.
Eight RAPD, two AFLP and four SAMPL fragments were converted into dominant and codominant SCARs by cloning and sequencing
the selected fragments. The markers obtained were evaluated on forty different olive cultivars from different Italian production
areas (mainly from Liguria). The combined use of these SCARs made possible to univocally identify 26 cultivars while the remaining
14 will require the development of further markers since most of them are placed in a main group containing six genetically
similar cultivars (among which Frantoio and Taggiasca) and four minor groups containing two cultivars each. A total of 31
different haplotypes were identified and the analysis of several individual plants indicated no intra-cultivar variability.
Considering the SCAR polymorphism two alleles were scored for each markers with the only exception of markers IGPS3 and IGPS4
showing 4 alleles with 7 recognised groups and 5 alleles with 4 groups, respectively. Though less polymorphic in comparison
with other markers like SSRs, the developed SCARs proved useful in genotype identification. In addition, they could potentially
be used for breeding applications and forensic analysis.
An erratum to this article is available at . 相似文献
103.
Some studies have demonstrated that a few biological systems are affected by weak, extremely low frequency (ELF) electromagnetic fields (EMFs), lower than 10 mT. However, to date there is scanty evidence of this effect on Protists in the literature. Due to their peculiarity as single-cell eukaryotic organisms, Protists respond directly to environmental stimuli, thus appearing as very suitable experimental systems. Recently, we showed the presence of propionylcholinesterase (PrChE) activity in single-cell amoebae of Dictyostelium discoideum. This enzyme activity was assumed to be involved in cell-cell and cell-environment interactions, as its inhibition affects cell aggregation and differentiation. In this work, we have exposed single-cell amoebae of D. discoideum to an ELF-EMF of about 200 microT, 50 Hz, for 3 h or 24 h at 21 degrees C. A delay in the early phase of the differentiation was observed in 3 h exposed cells, and a significant decrease in the fission rate appeared in 24 h exposed cells. The PrChE activity was significantly lower in 3 h exposed cells than in the controls, whereas 24 h exposed cells exhibited an increase in this enzyme activity. However, such effects appeared to be transient, as the fission rate and PrChE activity values returned to the respective control values after a 24 h stay under standard conditions. 相似文献
104.
Clark Tapia Ricardo Cecilia Alfonso Corrado María C. Mandujano Francisco Molina-Freaner 《Evolutionary ecology》2006,20(2):131-142
Stenocereus eruca is a prostrated, self-incompatible cactus endemic to the Sonoran Desert that regenerates primarily through clonal propagation.
Clonal growth is expected to affect mate availability by influencing the number and spatial distribution of mating types.
In this paper we examine the role of clonal growth on female fecundity through a series of pollination experiments in a population
of S. eruca. We set up a pollen supplementation experiment using five distance treatments with pollen collected at 1, 10, 100, 1000 and
25000 m from receptor flowers during the years 2001 and 2002 and evaluated genetic sifmilarities between pairs of receptor-donor
ramets through RAPD markers. Our data on fruit set, number of seeds/fruit, germination and overall fecundity revealed that
S. eruca show a significant reduction in female fecundity when pollination occurs between ramets located at short distances (1 and
10 m), while genetic data showed high levels of similarity at those distances. The reduction in female fecundity is apparently
a consequence of geitonogamy and inbreeding depression. Our data suggest that clonal growth and geitonogamy are likely to
be partially responsible for the low levels of sexual reproduction and seedling recruitment observed in populations of S. eruca.
Co-ordinating editor: H. Kudoh 相似文献
105.
106.
D'Aniello S D'Aniello E Locascio A Memoli A Corrado M Russo MT Aniello F Fucci L Brown ER Branno M 《Differentiation; research in biological diversity》2006,74(5):222-234
The tadpole larvae prosencephalon of the ascidian Ciona intestinalis contains a single large ventricle, along the inner walls of which lie two sensory organs: the otolith (a gravity-sensing organ) and the ocellus (a photo-sensing organ composed of a single cup-shaped pigment cell, about 20 photoreceptor cells, and three lens cells). Comparison has been drawn between the morphology and physiology of photoreceptor cells in the ascidian ocellus and the vertebrate eye. The development of vertebrate and invertebrate eyes requires the activity of several conserved genes and it is regulated by precise expression patterns and cell fate decisions common to several species. We have isolated a Ciona homeobox gene (Ci-Rx) that belongs to the paired-like class of homeobox genes. Rx genes have been identified from a variety of organisms and have been demonstrated to have a role in vertebrate eye formation. Ci-Rx is expressed in the anterior neural plate in the middle tailbud stage and subsequently in the larval stage in the sensory vesicle around the ocellus. Loss of Ci-Rx function leads to an ocellus-less phenotype that shows a loss of photosensitive swimming behavior, suggesting the important role played by Ci-Rx in basal chordate photoreceptor cell differentiation and ocellus formation. Furthermore, studies on Ci-Rx regulatory elements electroporated into Ciona embryos using LacZ or GFP as reporter genes indicate the presence of Ci-Rx in pigment cells, photoreceptors, and neurons surrounding the sensory vesicle. In Ci-Rx knocked-down larvae, neither basal swimming activity nor shadow responses develop. Thus, Rx has a role not only in pigment cells and photoreceptor formation but also in the correct development of the neuronal circuit that controls larval photosensitivity and swimming behavior. The results suggest that a Ci-Rx "retinal" territory exists, which consists of pigment cells, photoreceptors, and neurons involved in transducing the photoreceptor signals. 相似文献
107.
108.
Bertazzon N Raiola A Castiglioni C Gardiman M Angelini E Borgo M Ferrari S 《Plant cell reports》2012,31(1):133-143
Grapevine is an economically important crop, and the recent completion of its genome makes it possible to study the function
of specific genes through reverse genetics. However, the analysis of gene function by RNA interference (RNAi) in grapevine
is difficult, because the generation of stable transgenic plants has low efficiency and is time consuming. Recently, transient
expression of genes in grapevine leaves has been obtained by Agrobacterium tumefaciens infiltration (agroinfiltration). We therefore tested the possibility to silence grapevine genes by agroinfiltration of RNAi
constructs. A construct to express a double strand RNA (dsRNA) corresponding to the defense-related gene VvPGIP1, encoding a polygalacturonase-inhibiting protein (PGIP), was obtained and transiently expressed by agroinfiltration in leaves
of grapevine plants grown in vitro. Expression of VvPGIP1 and accumulation of PGIP activity were strongly induced by infiltration with control bacteria, but not with bacteria carrying
the dsRNA construct, indicating that the gene was efficiently silenced. In contrast, expression of another defense-related
gene, VST1, encoding a stilbene synthase, was unaffected by the dsRNA construct. We have therefore demonstrated the possibility of transient
down-regulation of grapevine genes by agroinfiltration of constructs for the expression of dsRNA. This system can be employed
to evaluate the effectiveness of constructs that can be subsequently used to generate stable RNAi transgenic plants. 相似文献
109.
The protective actions of prostacyclin (PGI(2) ) are mediated by cyclic AMP (cAMP) which is reduced by type 4 phosphodiesterases (PDE4) which hydrolyze cAMP. Superoxide (O2(-)) from NADPH oxidase (Nox) is associated with impaired PGI(2) bioactivity. The objective of this study, therefore, was to study the relationship between Nox and PDE4 expression in human umbilical vein endothelial cells (HUVECs). HUVECs were incubated with the thromboxane A(2) analog, U46619, 8-isoprostane F(2α) (8IP), or tumor necrosing factor alpha (TNFα) [±iloprost (a PGI(2) analog)] and the expression of PDE4A, B, C, and D and splice variants thereof assessed using Western blotting and qPCR and mRNA silencing of Nox4 and Nox5. Effects on cell replication and angiogenesis were also studied. U46619, 8IP, and TNFα increased the expression of Nox 4 and Nox 5 and all PDE4 isoforms as well as cell replication and tubule formation (index of angiogenesis), effects inhibited by mRNA silencing of Nox4 (but not Nox5) and iloprost and rolipram. These data demonstrate that upregulation of Nox4 leads to an upregulation of PDE4A, B, and D and increased hydrolysis of cAMP which in turn augments cell replication and angiogenesis. This mechanism may be central to vasculopathies associated with endothelial dysfunction since the PGI(2)-cAMP signaling axis plays a key role in mediating functions that include hemostasis and angiogenesis. 相似文献
110.
The polyamines and their catabolic products are significant players in the turnover of nitrogenous molecules in plants 总被引:1,自引:0,他引:1
PN Moschou J Wu A Cona P Tavladoraki R Angelini KA Roubelakis-Angelakis 《Journal of experimental botany》2012,63(14):5003-5015
Polyamines (PAs) are nitrogenous molecules which play a well-established role in most cellular processes during growth and development under physiological or biotic/abiotic stress conditions. The molecular mode(s) of PA action have only recently started to be unveiled, and comprehensive models for their molecular interactions have been proposed. Their multiple roles are exerted, at least partially, through signalling by hydrogen peroxide (H(2)O(2)), which is generated by the oxidation/back-conversion of PAs by copper amine oxidases and PA oxidases. Accumulating evidence suggests that in plants the cellular titres of PAs are affected by other nitrogenous compounds. Here, we discuss the state of the art on the possible nitrogen flow in PAs, their interconnection with nitrogen metabolism, as well as the signalling roles of PA-derived H(2)O(2) during some developmental processes and stress responses. 相似文献