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11.
Kras is commonly mutated in colon cancers, but mutations in Nras are rare. We have used genetically engineered mice to determine whether and how these related oncogenes regulate homeostasis and tumorigenesis in the colon. Expression of K-Ras(G12D) in the colonic epithelium stimulated hyperproliferation in a Mek-dependent manner. N-Ras(G12D) did not alter the growth properties of the epithelium, but was able to confer resistance to apoptosis. In the context of an Apc-mutant colonic tumor, activation of K-Ras led to defects in terminal differentiation and expansion of putative stem cells within the tumor epithelium. This K-Ras tumor phenotype was associated with attenuated signaling through the MAPK pathway, and human colon cancer cells expressing mutant K-Ras were hypersensitive to inhibition of Raf, but not Mek. These studies demonstrate clear phenotypic differences between mutant Kras and Nras, and suggest that the oncogenic phenotype of mutant K-Ras might be mediated by noncanonical signaling through Ras effector pathways.  相似文献   
12.
Powell K 《Nature》2002,420(6914):356-358
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14.
Microsatellites are a ubiquitous class of simple repetitive DNA sequence. An excess of such repetitive tracts has been described in all eukaryotes analyzed and is thought to result from the mutational effects of replication slippage. Large-scale genomic and EST sequencing provides the opportunity to evaluate the abundance and relative distribution of microsatellites between transcribed and nontranscribed regions and the relationship of these features to haploid genome size. Although this has been studied in microbial and animal genomes, information in plants is limited. We assessed microsatellite frequency in plant species with a 50-fold range in genome size that is mostly attributable to the recent amplification of repetitive DNA. Among species, the overall frequency of microsatellites was inversely related to genome size and to the proportion of repetitive DNA but remained constant in the transcribed portion of the genome. This indicates that most microsatellites reside in regions pre-dating the recent genome expansion in many plants. The microsatellite frequency was higher in transcribed regions, especially in the untranslated portions, than in genomic DNA. Contrary to previous reports suggesting a preferential mechanism for the origin of microsatellites from repetitive DNA in both animals and plants, our findings show a significant association with the low-copy fraction of plant genomes.  相似文献   
15.
Erythropoiesis in an avian thymus   总被引:1,自引:0,他引:1  
M D Kendall  P Ward 《Nature》1974,249(455):366-367
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16.
Construction of maps from "odd bits of information"   总被引:1,自引:0,他引:1  
Kendall DG 《Nature》1971,231(5299):158-159
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17.
Zusammenfassung Neue Erkenntnisse über die quantitativen Zusammenhänge von fixierten, negativen Ladungen an Zellmembranen und ihren Interaktionen mit Kalzium-Ionen. Die elektrophoretische Analyse der Bindung von Ca-Ionen an menschliche polymorphkernige Leukozyten und rote Blutkörperchen deutet die Anwesenheit von mindestens 3 verschiedenen anionischen Ladungskonfigurationen in der peripheren Zone der Zellen an. Die zwischen den Ca-Ionen und den Oberflächen-Anionen existierenden elektrochemischen freien Bindungsenergien sind relativ schwach; daraus folgert, dass die Ca-Ionen nur schlechte Komponenten für eine direkte interzelluläre überbrückung darstellen.  相似文献   
18.
Powell K 《Nature》2004,428(6983):676-677
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19.
Stipend survival     
Powell K 《Nature》2004,428(6978):102-103
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20.
Mid-mantle deformation inferred from seismic anisotropy   总被引:2,自引:0,他引:2  
Wookey J  Kendall JM  Barruol G 《Nature》2002,415(6873):777-780
With time, convective processes in the Earth's mantle will tend to align crystals, grains and inclusions. This mantle fabric is detectable seismologically, as it produces an anisotropy in material properties--in particular, a directional dependence in seismic-wave velocity. This alignment is enhanced at the boundaries of the mantle where there are rapid changes in the direction and magnitude of mantle flow, and therefore most observations of anisotropy are confined to the uppermost mantle or lithosphere and the lowermost-mantle analogue of the lithosphere, the D" region. Here we present evidence from shear-wave splitting measurements for mid-mantle anisotropy in the vicinity of the 660-km discontinuity, the boundary between the upper and lower mantle. Deep-focus earthquakes in the Tonga-Kermadec and New Hebrides subduction zones recorded at Australian seismograph stations record some of the largest values of shear-wave splitting hitherto reported. The results suggest that, at least locally, there may exist a mid-mantle boundary layer, which could indicate the impediment of flow between the upper and lower mantle in this region.  相似文献   
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