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Jesús Aguirre-Hernández Bruce S Milne Chris Queen Patricia CM O'Brien Tess Hoather Sean Haugland Malcolm A Ferguson-Smith Jane M Dobson David R Sargan 《BMC veterinary research》2009,5(1):1-18
Background
In dogs in the western world neoplasia constitutes the most frequently diagnosed cause of death. Although there appear to be similarities between canine and human cancers, rather little is known about the cytogenetic and molecular alterations in canine tumours. Different dog breeds are susceptible to different types of cancer, but the genetic basis of the great majority of these predispositions has yet to be discovered. In some retriever breeds there is a high incidence of soft tissue sarcomas and we have previously reported alterations of chromosomes 11 and 30 in two poorly differentiated fibrosarcomas. Here we extend our observations and present a case report on detail rearrangements on chromosome 11 as well as genetic variations in a tumour suppressor gene in normal dogs. 相似文献164.
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Smid Eddy J Erkus Oylum Spus Maciej Wolkers-Rooijackers Judith CM Alexeeva Svetlana Kleerebezem Michiel 《Microbial cell factories》2014,13(1):1-9
This review describes the recent advances made in the studies of the microbial community of complex and undefined cheese starter cultures. We report on work related to the composition of the cultures at the level of genetic lineages, on the presence and activity of bacteriophages and on the population dynamics during cheese making and during starter culture propagation. Furthermore, the link between starter composition and starter functionality will be discussed. Finally, recent advances in predictive metabolic modelling of the multi-strain cultures will be discussed in the context of microbe-microbe interactions.
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Christopher R. Kinsinger Benjamin F. Gherman Laura Gagliardi Christopher J. Cramer 《Journal of biological inorganic chemistry》2005,10(7):778-789
The tendency for mixed-isotope O2 fragments to exhibit different stretching frequencies in asymmetric environments is examined with various levels of electronic
structure theory for simple peroxides and peroxyl radicals, as well as for a variety of monocopper–O2 complexes. The study of the monocopper species is motivated by their relevance to the active site of galactose oxidase. Extensive
theoretical work with an experimental model characterized by Jazdzewski et al. (J. Biol. Inorg. Chem. 8:381–393, 2003) suggests that the failure to observe a splitting between 16O18O and 18O16O isotopomers cannot be taken as evidence against end-on O2 coordination. Conformational analysis on an energetic basis, however, is complicated by biradical character inherent in all
of the copper–O2 singlet structures.
Electronic Supplementary Material Supplementary material is available for this article at . 相似文献
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