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71.
Roger M Morris DJ Tennant DA Gutmann MJ Goff JP Hoffmann JU Feyerherm R Dudzik E Prabhakaran D Boothroyd AT Shannon N Lake B Deen PP 《Nature》2007,445(7128):631-634
Sodium cobaltate (Na(x)CoO2) has emerged as a material of exceptional scientific interest due to the potential for thermoelectric applications, and because the strong interplay between the magnetic and superconducting properties has led to close comparisons with the physics of the superconducting copper oxides. The density x of the sodium in the intercalation layers can be altered electrochemically, directly changing the number of conduction electrons on the triangular Co layers. Recent electron diffraction measurements reveal a kaleidoscope of Na+ ion patterns as a function of concentration. Here we use single-crystal neutron diffraction supported by numerical simulations to determine the long-range three-dimensional superstructures of these ions. We show that the sodium ordering and its associated distortion field are governed by pure electrostatics, and that the organizational principle is the stabilization of charge droplets that order long range at some simple fractional fillings. Our results provide a good starting point to understand the electronic properties in terms of a Hubbard hamiltonian that takes into account the electrostatic potential from the Na superstructures. The resulting depth of potential wells in the Co layer is greater than the single-particle hopping kinetic energy and as a consequence, holes preferentially occupy the lowest potential regions. Thus we conclude that the Na+ ion patterning has a decisive role in the transport and magnetic properties. 相似文献
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Hsieh AC Liu Y Edlind MP Ingolia NT Janes MR Sher A Shi EY Stumpf CR Christensen C Bonham MJ Wang S Ren P Martin M Jessen K Feldman ME Weissman JS Shokat KM Rommel C Ruggero D 《Nature》2012,485(7396):55-61
The mammalian target of rapamycin (mTOR) kinase is a master regulator of protein synthesis that couples nutrient sensing to cell growth and cancer. However, the downstream translationally regulated nodes of gene expression that may direct cancer development are poorly characterized. Using ribosome profiling, we uncover specialized translation of the prostate cancer genome by oncogenic mTOR signalling, revealing a remarkably specific repertoire of genes involved in cell proliferation, metabolism and invasion. We extend these findings by functionally characterizing a class of translationally controlled pro-invasion messenger RNAs that we show direct prostate cancer invasion and metastasis downstream of oncogenic mTOR signalling. Furthermore, we develop a clinically relevant ATP site inhibitor of mTOR, INK128, which reprograms this gene expression signature with therapeutic benefit for prostate cancer metastasis, for which there is presently no cure. Together, these findings extend our understanding of how the 'cancerous' translation machinery steers specific cancer cell behaviours, including metastasis, and may be therapeutically targeted. 相似文献
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C Lavialle A G Morris H G Suárez R Cassingena 《Comptes rendus des séances de l'Académie des sciences. Série D, Sciences naturelles》1975,281(16):1203-1206
The production of virions by Chinese hamster kidney cells infected with SV 40 DNA is increased 10 to 100 fold by mitomycin C treatment. This observation has been confirmed for different cell clones. The optimum concentration of mitomycin C has been determined. 相似文献
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Summary Orally administered ethanol produced dose-related suppression of IRI levels and elevation of IRG levels in fed and fasting rats. Plasma glucose levels were unaffected in the fasting rats, but a moderate hyperglycemic response accompanied the decline in IRI and the rise in IRG observed in the fed rats.This research was supported in part by a grant from the National Institute on Alcohol Abuse and Alcoholism (AA-3218) and by a supplemental grant from the National Council on Alcoholism. 相似文献
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