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981.
In metazoans, spliceosome assembly is initiated through recognition of the 5' splice site by U1 snRNP and the polypyrimidine tract by the U2 small nuclear ribonucleoprotein particle (snRNP) auxiliary factor, U2AF. U2AF is a heterodimer comprising a large subunit, U2AF65, and a small subunit, U2AF35. U2AF65 directly contacts the polypyrimidine tract and is required for splicing in vitro. In comparison, the role of U2AF35 has been puzzling: U2AF35 is highly conserved and is required for viability, but can be dispensed with for splicing in vitro. Here we use site-specific crosslinking to show that very early during spliceosome assembly U2AF35 directly contacts the 3' splice site. Mutational analysis and in vitro genetic selection indicate that U2AF35 has a sequence-specific RNA-binding activity that recognizes the 3'-splice-site consensus, AG/G. We show that for introns with weak polypyrimidine tracts, the U2AF35-3'-splice-site interaction is critical for U2AF binding and splicing. Our results demonstrate a new biochemical activity of U2AF35, identify the factor that initially recognizes the 3' splice site, and explain why the AG dinucleotide is required for the first step of splicing for some but not all introns. 相似文献
982.
983.
984.
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986.
This article describes the first results from the recent revision to The ONS classification of local and health authorities of Great Britain to allow for boundary changes. For each local and health authority of Great Britain as at April 1999 it presents 'most similar' authorities as measured by a selection of 37 socioeconomic and demographic variables from the 1991 Census. These results will assist local and health authorities in identifying other appropriate authorities for comparative studies. A second article, to be published in Population Trends 99, will present the results of the analysis to identify groups of authorities in a hierarchy of new Clusters, Groups and Families for the revised classification. 相似文献
987.
988.
Bacterial suicide through stress 总被引:9,自引:0,他引:9
Outside of the laboratory, bacterial cells are constantly exposed to stressful conditions, and an ability to resist those
stresses is essential to their survival. However, the degree of stress required to bring about cell death varies with growth
phase, amongst other parameters. Exponential phase cells are significantly more sensitive to stress than stationary phase
ones, and a novel hypothesis has recently been advanced to explain this difference in sensitivity, the suicide response. Essentially,
the suicide response predicts that rapidly growing and respiring bacterial cells will suffer growth arrest when subjected
to relatively mild stresses, but their metabolism will continue: a burst of free-radical production results from this uncoupling
of growth from metabolism, and it is this free-radical burst that is lethal to the cells, rather than the stress per se. The
suicide response hypothesis unifies a variety of previously unrelated empirical observations, for instance induction of superoxide
dismutase by heat shock, alkyl-hydroperoxide reductase by osmotic shock and catalase by ethanol shock. The suicide response
also has major implications for current [food] processing methods.
Received 29 March 1999; received after revision 14 May 1999; accepted 17 May 1999 相似文献
989.
The one-to-four rule and paralogues of sex-determining genes 总被引:5,自引:0,他引:5
S. Ohno 《Cellular and molecular life sciences : CMLS》1999,55(6-7):824-830
990.
Alberti S 《Cellular and molecular life sciences : CMLS》1999,56(1-2):85-93
A better definition of the structural and thermodynamic determinants of the interaction of nucleic acids with proteins is shedding light on the origin of the genetic code, protein synthesis, and nucleic acid replication. This is also allowing to show a consistent biochemical framework for the appearance of these fundamental synthetic mechanisms. This article reviews recent significant developments in the field, and discusses an integrated model for a biochemically plausible evolution of these fundamental mechanisms of synthesis. This model is based on sequence-specific interactions between abiotically synthesized polynucleotides and polypeptides, and can account for a coordinate evolution of the genetic code, protein synthesis, and nucleic acid replication in living cells. 相似文献