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21.
Evidence that the G1-S and G2-M transitions are controlled by different cdc2 proteins in higher eukaryotes. 总被引:71,自引:0,他引:71
Xenopus eggs contain two distinct cdc2 homologs of 34 and 32 kd. We show that the 32 kd cdc2 protein, like the 34 kd protein, is a kinase. However, unlike the 34 kd homolog, the 32 kd cdc2 kinase activity does not decrease dramatically at the end of mitosis. The 32 kd protein does not associate with mitotic cyclins B1 and B2 but does associate with cyclin A and a novel doublet of proteins of 54 kd that may regulate its activity. We also show that depletion of the 32 kd cdc2 homolog from a Xenopus extract blocks DNA replication, but does not inhibit entry into mitosis. By contrast, depletion of the 34 kd cdc2 homolog or absence of mitotic cyclins from an extract does not inhibit replication, but does block entry into mitosis. Our results indicate that in higher eukaryotes, DNA replication (G1-S) and mitosis (G2-M) may be controlled by distinctly different cdc2 proteins. 相似文献
22.
Rong-Xiang Fang Zhen Pang Dong-Ming Gao Ke-Qiang Mang Nam-Hai Chua 《Plant molecular biology》1991,17(6):1255-1257
23.
M. Yang Fang Ming J. Hubble A. D. Lockett R. R. Rathbone J. A. Howell 《Biotechnology Techniques》1992,6(5):409-412
A simple thermal monitoring technique has been successfully applied to an adsorption system using a novel ion exchanger with
a large internal void volume (voidage) which can be operated at high superficial velocity (SV). Temperature changes resulting
from heats of adsorption could be followed effectively using semi-conductor thermistor devices inserted into the resin through
the column wall. Results show that, despite the high feed rates adopted, the thermal signals generated can be consistently
related to the position of the breakthrough front within the bed. 相似文献
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Stereospecificity for nicotinamide nucleotides in enzymatic and chemical hydride transfer reactions 总被引:3,自引:0,他引:3
K S You 《CRC critical reviews in biochemistry》1985,17(4):313-451
The pyridine nucleotide (NAD and NADP)-linked enzymes are a large class of enzymes constituting approximately 17% of all classified enzymes. When these enzymes catalyze their reactions, the hydride transfer between the substrate and the reaction site (i.e., C-4 of the nicotinamide/dihydronicotinamide ring) of the coenzyme takes place in a stereospecific manner. Thus, in the reaction of oxidation of the reduced coenzyme, one group of enzymes catalyzes the extraction of only the hydrogen having the R configuration at the No. 4 carbon, while the other group catalyzes the removal of only that with the S configuration. Because this aspect of enzyme stereospecificity provides essential information for a given enzyme's reaction mechanism, active site structure, and evolutionary relationship with other enzymes, intensive effort has been made to establish the stereospecificities of as many enzymes as possible. This review presents the compilation of the stereospecificities of these enzymes. Some empirical rules, which are useful but not definitive, in predicting a given enzyme's stereospecificity are also described. In addition, the stereospecificity in enzymatic reactions is compared to the stereo-preference in chemical oxidoreduction of the coenzyme. In order to elucidate the mechanism for the enzyme stereospecificity, the conformations of the coenzyme in free-state and enzyme-bound state are extensively discussed here. 相似文献
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Conserved sequences in both coding and 5'' flanking regions of mammalian opal suppressor tRNA genes. 总被引:3,自引:0,他引:3
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The rabbit genome encodes an opal suppressor tRNA gene. The coding region is strictly conserved between the rabbit gene and the corresponding gene in the human genome. The rabbit opal suppressor gene contains the consensus sequence in the 3' internal control region but like the human and chicken genes, the rabbit 5' internal control region contains two additional nucleotides. The 5' flanking sequences of the rabbit and the human opal suppressor genes contain extensive regions of homology. A subset of these homologies is also present 5' to the chicken opal suppressor gene. Both the rabbit and the human genomes also encode a pseudogene. That of the rabbit lacks the 3' half of the coding region. Neither pseudogene has homologous regions to the 5' flanking regions of the genes. The presence of 5' homologies flanking only the transcribed genes and not the pseudogenes suggests that these regions may be regulatory control elements specifically involved in the expression of the eukaryotic opal suppressor gene. Moreover the strict conservation of coding sequences indicates functional importance for the opal suppressor tRNA genes. 相似文献
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