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121.
Isabel Feito Ma Angeles Gea Belen Fernández Roberto Rodríguez 《Plant Growth Regulation》1996,19(2):101-108
Rooting ability of three different materials, namely cotyledonar linking areas, cotyledonary portions and embryonic microshoots from walnut seeds was determined. It was shown that while cotyledonar linking areas may be defined as a espontaneous rooting system, the other two tissue types correspond to inducible rooting systems, needing exogenous application of auxins for root induction. Endogenous zeatin and isopentenyl type cytokinins, indole-3-acetic acid (IAA), and abscisic acid (ABA) contents were determined in the three kinds of plant material prior to their culture. Our results show that the most active rooting systems has high levels of cytokinins, particularly dihydrozeatin (diH)Z and its riboside, and low levels of IAA and ABA. This situation could indicate that oxidative metabolism was taking place in cotyledonar linking areas, which is generally associated with the initiation phase of the rooting process. So that, we can assume that the induction phase is already overpassed in these tissues. On the contrary, the other two systems in which high levels of auxins and reduced levels of cytokinins were found, need to undergo the induction phase to be able to show root manifestation. In this case, the exogenous auxins are responsible for triggering this process, by enhancement of oxidative conditions. Therefore, it can be conclude that dynamics of growth regulators levels during the different phases of rooting are more important than specific single levels at fixed time. 相似文献
122.
Exploring the influence of shrubs on herbaceous communities in a Mediterranean climatic context of two spatial scales 总被引:1,自引:0,他引:1
Jaime Madrigal Jose Antonio García-Rodriguez Roberto Julian Angel Puerto Belen Fernández-Santos 《Plant Ecology》2008,199(2):225-234
Communities of plants determine nonrandom spatial patterns defined by the intervention of abiotic and biotic factors acting
at different spatial scales. We consider the influence of shrubs as one of the most important factors (biotic) affecting these
spatial patterns at microscale. The macroclimate could be considered one of the most important factors (abiotic) at regional
scale. To study the role and the floristic implications of each factor on the global patterns of herbaceous communities, we
have developed a stratified sampling design that integrates both micro and macroscale on a 100 Km-long transect (east–west)
in western central Spain. The results suggest that macroclimate could be one of the most important factors in determining
herbaceous spatial patterns. Moreover, shrubs create a microspatial environmental heterogeneity that could alter such global
climate patterns, modifying the spatial affinities established among species. This implies that environmental heterogeneity
related to microhabitat could play a key role in spatial patterns at broad spatial scales, and consequently in the dynamics
of the distribution and establishment of herbaceous species. 相似文献
123.
Zhao H Rubio B Sapra P Wu D Reddy P Sai P Martinez A Gao Y Lozanguiez Y Longley C Greenberger LM Horak ID 《Bioconjugate chemistry》2008,19(4):849-859
CPT-11, also known as irinotecan, is a prodrug that is approved for the treatment of advanced colorectal cancer. The active metabolite of CPT-11, SN38 (7-ethyl-10-hydroxy-camptothecin), has 100- to 1000-fold more potent cytotoxic activity in tissue cell culture compared with CPT-11. However, parental administration of SN38 is not possible because of its inherently poor water solubility. It is reported here that a multiarm poly(ethylene glycol) (PEG) backbone linked to four SN38 molecules (PEG-SN38) has been successfully prepared with high drug loading and significantly improved water solubility (400- to 1000-fold increase). Three different protecting strategies have been developed in order to selectively acylate the 20-OH of SN38 to preserve its E-ring in the lactone form (the active form of SN38 with cytotoxic activities) while PEG is still attached. One chemical process has been optimized to make a large quantity of the PEG-SN38 conjugate with a high yield that can be readily adapted for scale-up production. The PEG-SN38 conjugates have shown excellent in vitro anticancer activity, with potency similar to that of native SN38, in a panel of cancer cell lines. The PEG-SN38 conjugates also have demonstrated superior anticancer activity in the MX-1 xenograft mice model compared with CPT-11. Among the four conjugates, PEG-Gly-(20)-SN38 (23) has been selected as the lead candidate for further preclinical development. 相似文献
124.
Juarez-Jimenez B Rodelas B Martinez-Toledo MV Gonzalez-Lopez J Crognale S Gallo AM Pesciaroli C Fenice M 《International journal of biological macromolecules》2008,43(1):27-31
Nineteen bacterial isolates were grown in shaken cultures in media containing chitin as carbon source and different additional nitrogen sources such as yeast nitrogen base (YNB), yeast extract (YE), corn steep liquor (CSL) and ammonium sulfate. Strain BM17 showed the highest activity (200 U/l) in medium containing Chitin (1%) and YNB (0.5%). Molecular analysis of the 16S rRNA gene showed that strain BM17 belongs to the species Paenibacillus pabuli (99.72% homology). The enzyme activity started after 12-24 h; exponential enzyme production was recorded from the 24th h and lasted till the 96th h of incubation when activity peaked to decrease thereafter. Medium optimisation was carried out by Response Surface Methodology (RSM) considering the effects of chitin, corn steep liquor and yeast extract. BM17 chitinolytic activity was induced by chitin but the increase of its concentration did not have significant effects on the enzyme activity. By contrast, the nitrogen source, particularly YE, strongly affected the enzyme production. 相似文献
125.
Cuadrado Yolanda Guerra Hilario Belen Martin Ana Gallego Piedad Hita Oscar Dorado Ana Villalobos Nieves 《Plant Cell, Tissue and Organ Culture》2001,67(2):145-151
The different invertase activities in embryogenic and non-embryogenic calli induced from explants (cotyledons, petioles, hypocotyls and leaves) obtained from Medicago arborea L. subsp. arborea seedlings were evaluated. Total invertase activity was lower in the calli with the greatest embryogenic capacity. The greatest fraction of this activity corresponded to soluble invertase. Wall-bound invertase showed maximum activity during the first two months of culture and the highest activities of this type were found in non-embryogenic calli. Extracellular invertase formed the smallest fraction of the total invertase activity evaluated. Acid and alkaline invertase activities were found in all calli but differences were detected between the embryogenic and non-embryogenic calli. In the former, the activity of both types of invertase exhibited a similar type of behaviour but different from that observed in the non-embryogenic calli. The calli with the greatest embryogenic capacity had very low levels of acid invertase and very high levels of the alkaline form. Soluble invertase – both acid and alkaline – accounted for the highest fraction after the first two months of culture and was present in lower amounts in the embryogenic than in the non-embryogenic calli. Regarding bound invertase, the highest production was seen to correspond to acid invertase. The extracellular invertase evaluated corresponded to the acid form since the alkaline extracellular invertase did not show any physiologically significant activity. 相似文献
126.
Santos-Sierra S Lemonnier M Nuñez B Hargreaves D Rafferty J Giraldo R Andreu JM Díaz-Orejas R 《Plasmid》2003,50(2):120-130
Kid and Kis are, respectively, the toxin and antitoxin encoded by the parD operon of plasmid R1. The recently solved crystal structure of Kid has revealed that this protein closely resembles the CcdB toxin of plasmid F. In CcdB, the residues involved in toxicity are located at the carboxy-terminal end of the protein. However, an analogous information on the Kid toxin was not available. Here, we have characterized a collection of non-toxic mutants of the Kid protein and identified the residues that affected the toxicity but not the co-regulatory activity of Kid. These are located in two discrete regions of the protein, at the amino and carboxy-terminal ends. Particularly, residues E18 and R85, that are conserved in the Escherichia coli ChpAK and RelE toxins, are affected by amino-acid changes that alter neither the overall structure of the protein nor its state of association, as shown by CD and sedimentation equilibrium analyses. However, thermal denaturation and intrinsic tryptophan fluorescence emission data point to subtle local changes at the N-terminal end of the protein. The implications of these results in the current model on the structure and function of Kid-related bacterial toxins are discussed. 相似文献
127.
Alvarado-Sanchez Belen G. Salgado-Ceballos Hermelinda Torres-Castillo Sergio Rodriguez-Silverio Juan Lopez-Hernandez Monica E. Quiroz-Gonzalez Salvador Sanchez-Torres Stephanie Mondragón-Lozano Rodrigo Fabela-Sanchez Omar 《Neurochemical research》2019,44(2):498-506
Neurochemical Research - Spinal cord injury (SCI) is a condition that puts the patient’s life at risk in the acute phase and, during the chronic stage, results in permanent deficits in motor,... 相似文献
128.
Dynamic protrusive cell behaviour generates force and drives early matrix contraction by fibroblasts 总被引:1,自引:0,他引:1
Dahlmann-Noor AH Martin-Martin B Eastwood M Khaw PT Bailly M 《Experimental cell research》2007,313(20):4158-4169
We investigated the cellular mechanisms underlying force generation and matrix contraction, using human corneal, Tenon's and scleral fibroblasts in a standard collagen matrix. We used timelapse light and confocal reflection microscopy to analyse concomitantly cell behaviour and matrix remodeling during contraction and devised a novel index to quantify dynamic cell behaviour in 3D. Based on the previously described culture force monitor, a novel simultaneous imaging and micro-culture force monitor system (SIM-CFM) was developed to measure the mechanical strain generated during matrix contraction whilst simultaneously recording cell and matrix behaviour. Ocular fibroblasts show marked differences in macroscopic matrix contraction profiles, with corneal fibroblasts inducing the strongest, and scleral the weakest, contraction. We identified four factors that determine the early matrix contraction profile: 1) cell size, 2) intrinsic cellular force, 3) dynamic cell protrusive activity and 4) net pericellular matrix displacement. Intrinsic cellular force and dynamic activity appear to be independent unique characteristics of each cell type and might serve as predictors of matrix contraction. The identification of these factors raises the fundamental new possibilities of predicting the ability of tissues to contract and scar and of modulating tissue contraction by targeting intracellular pathways linked to protrusive activity and force generation. 相似文献
129.
Langguth B Stadtlaender H Landgrebe M Elgoyhen AB Coors H Vielsmeier V Kleinjung T 《Neuro endocrinology letters》2007,28(5):554-555
Tinnitus is a frequent and often debilitating condition. There is consensus in the scientific community that there exist various forms of tinnitus, which differ in their pathogenesis. Here we report a series of five cases where the onset of tinnitus was associated with viral infections. In all five patients elevated antibodies against Coxsackie B have been detected. This observation suggests that Coxsackie B Virus infections might be involved in the development of some cases of tinnitus and indicate that further systematic investigations are warranted. 相似文献
130.
Paula Carpintero-Fernndez Michela Borghesan Olga Eleftheriadou Belen Pan-Castillo Juan Antonio Fafin-Labora Tom P. Mitchell Alejandro Yuste Muge Ogrunc Thomas D. Nightingale Maria Mayan Ana OLoghlen 《Cell death & disease》2022,13(2)
During this last decade, the development of prosenescence therapies has become an attractive strategy as cellular senescence acts as a barrier against tumour progression. In this context, CDK4/6 inhibitors induce senescence and reduce tumour growth in breast cancer patients. However, even though cancer cells are arrested after CDK4/6 inhibitor treatment, genes regulating senescence in this context are still unknown limiting their antitumour activity. Here, using a functional genome-wide CRISPR/Cas9 genetic screen we found several genes that participate in the proliferation arrest induced by CDK4/6 inhibitors. We find that downregulation of the coagulation factor IX (F9) using sgRNA and shRNA prevents the cell cycle arrest and senescent-like phenotype induced in MCF7 breast tumour cells upon Palbociclib treatment. These results were confirmed using another breast cancer cell line, T47D, and with an alternative CDK4/6 inhibitor, Abemaciclib, and further tested in a panel of 22 cancer cells. While F9 knockout prevents the induction of senescence, treatment with a recombinant F9 protein was sufficient to induce a cell cycle arrest and senescence-like state in MCF7 tumour cells. Besides, endogenous F9 is upregulated in different human primary cells cultures undergoing senescence. Importantly, bioinformatics analysis of cancer datasets suggest a role for F9 in human tumours. Altogether, these data collectively propose key genes involved in CDK4/6 inhibitor response that will be useful to design new therapeutic strategies in personalised medicine in order to increase their efficiency, stratify patients and avoid drug resistance.Subject terms: Senescence, Tumour biomarkers 相似文献