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81.
82.
Untangling the molecular nature of sperm-egg interactions is fundamental if we are to understand fertilization. These phenomena
have been studied for many years using biochemical approaches such as antibodies and ligands that interact with sperm or with
eggs and their vestments. However, when homologous genetic recombination techniques were applied, most of the phenotypic factors
of the gene-manipulated animals believed “essential” for fertilization were found to be dispensable. Of course, all biological
systems contain redundancies and compensatory mechanisms, but as a whole the old model of fertilization clearly requires significant
modification. In this review, we use the results of gene manipulation experiments in animals to propose the basis for a new
vision.
Received 26 January 2007; received after revision 7 March 2007; accepted 17 April 2007 相似文献
83.
Minagawa H Yoshida Y Kenmochi N Furuichi M Shimada J Kaneko H 《Cellular and molecular life sciences : CMLS》2007,64(1):77-81
Lactate oxidase is used in biosensors to measure the concentration of lactate in the blood and other body fluids. Increasing
the thermostability of lactate oxidase can significantly prolong the lifetime of these biosensors. We have previously obtained
a variant of lactate oxidase from Aerococcus viridans with two mutations (E160G/V198I) that is significantly more thermostable than the wild-type enzyme. Here we have attempted
to further improve the thermostability of E160G/V198I lactate oxidase using directed evolution. We made a mutant lactate oxidase
gene library by applying error-prone PCR and DNA shuffling, and screened for thermostable mutant lactate oxidase using a plate-based
assay. After three rounds of screening we obtained a thermostable mutant lactate oxidase, which has six mutations (E160G/V198I/G36S/T103S/A232S/F277Y).
The half-life of this lactate oxidase at 70 °C was about 2 times that of E160G/V198I and about 36 times that of the wild-type
enzyme. The amino acid mutation process suggests that the combined neutral mutations are important in protein evolution.
Received 15 September 2006; received after revision 21 October 2006; accepted 2 November 2006 相似文献
84.
Crnković-Mertens I Wagener N Semzow J Gröne EF Haferkamp A Hohenfellner M Butz K Hoppe-Seyler F 《Cellular and molecular life sciences : CMLS》2007,64(9):1137-1144
Cancer cells are typically characterized by apoptosis deficiency. In order to investigate a possible role for the anti-apoptotic
livin gene in renal cell cancer (RCC), we analyzed its expression in tumor tissue samples and in RCC-derived cell lines. In addition,
we studied the contribution of livin to the apoptotic resistance of RCC cells by RNA interference (RNAi). Livin gene expression was detected in a significant portion of RCC tumor tissue specimens (13/14, 92.9%) and tumor-derived cell
lines (12/15, 80.0%). Moreover, targeted inhibition of livin by RNAi markedly sensitized RCC cells towards proapoptotic stimuli, such as UV irradiation or the chemotherapeutic drugs
etoposide, 5-fluorouracil, and vinblastine. These effects were specific for livin expressing tumor cells. We conclude that livin can contribute significantly to the apoptosis resistance of RCC cells. Targeted inhibition of livin could represent a novel therapeutic strategy to increase the sensitivity of renal cancers towards pro-apoptotic agents.
Received 30 November 2006; received after revision 22 February 2007; accepted 20 March 2007 相似文献
85.
86.
The role of hypoxia-inducible factors in cancer 总被引:7,自引:0,他引:7
87.
88.
Advances in our understanding of cardiac development have fuelled research into cellular approaches to myocardial repair of
the damaged heart. In this collection of reviews we present recent advances into the basic mechanisms of heart development
and the resident and non-resident progenitor cell populations that are currently being investigated as potential mediators
of cardiac repair. Together these reviews illustrate that despite our current knowledge about how the heart is constructed,
caution and much more research in this exciting field is essential. The current momentum to evaluate the potential for cardiac
repair will in turn accelerate research into fundamental aspects of myocardial biology. 相似文献
89.
90.