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1.
The mechanism of decay of polycistronic trp messenger RNA in Escherichia coli was studied by size analyses of decaying populations. By measuring the sizes of only those molecules that contained the most proximal (E mRNA) of the five messages it was shown directly that cleavages occur, probably at intercistronic junctions, and each one does so independently of cleavages or decay at any other sites, i.e. occurs with random kinetics. The polycistronic fragments of less than full-length size did not arise from premature terminations within the operon. These results agree with earlier conclusions for the lac and gal operons and suggest that the basic mechanisms of decay of polycistronic mRNAs are probably the same with internal cleavages occurring only at the intercistronic junctions.  相似文献   

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O Melefors  A von Gabain 《Cell》1988,52(6):893-901
The stability of ompA mRNA is growth-rate dependent. We show that the 5' noncoding region of this mRNA provides a target for site-specific endonucleases. The rate of degradation of ompA mRNA parallels the rate of these endonucleolytic cleavages, implying that endonucleolytic rather than exonucleolytic attack is the initial step in ompA mRNA degradation. Thus the 5' noncoding region appears to be a determinant of mRNA stability, and endonucleolytic cleavages in the 5' noncoding region may well regulate expression of the ompA gene.  相似文献   

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Specific endonucleolytic cleavage sites for decay of Escherichia coli mRNA   总被引:43,自引:0,他引:43  
The polycistronic lac mRNA of Escherichia coli contains three messages. The rate of degradation of the second (lacY) message was observed to be equal to that of the third (lacA), and each decayed twice as fast as did the first (lacZ). Specific 5'- and 3'-ended lacY mRNA molecules could be recovered from cells; most likely, they are generated from endonucleolytic cleavages that are a part of the degradative process. They were observed by S1 nuclease mapping, and the exact 5'- and 3'-end oligonucleotides of many of them were identified by direct sequencing. Almost all of the molecules started with a 5' adenosine that would be preceded by a pyrimidine. The specificity was further restricted by neighboring nucleotides, and analysis of the data suggested that 5'-U-U decreases-A-U- is especially vulnerable. Also, computer analyses predicted the most stable secondary structures of selected segments of the mRNA and suggested that cleavages may only occur in regions of single strandedness. A model of mRNA degradation is proposed based on these observations and earlier ones. There is no unique target on a message for the initial inactivating attack: any region free of ribosomes is vulnerable, but for statistical reasons the initial attack of most molecules is near the ribosome-loading site. With no further ribosome loading, the newly unprotected 5' ends are "chopped off" at one of the next preferred target sites almost as fast as the last ribosomes moves down the mRNA.  相似文献   

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Jain C 《IUBMB life》2002,54(6):315-321
Degradation of messenger RNAs (mRNAs) is a universal process that occurs in every cell and has important implications for nucleotide metabolism and gene expression. One organism in which mRNA degradation has been thoroughly studied is the bacterium Escherichia coli (E. coli). In this review I describe what is presently known about the different processes involved in the conversion of mRNAs from high molecular weight species to mononucleotides in E. coli. The ribonucleases and accessory factors involved in mRNA degradation, and features on mRNAs that make them resistant or sensitive to degradation will also be described. At the conclusion of this review, some of the anticipated directions of future research on this topic will be discussed.  相似文献   

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We have detected specific endonucleolytic cleavages of mouse albumin mRNA by S1 nuclease protection analysis of total RNA from fetal mouse liver using a cDNA probe spanning the middle, coding region of albumin mRNA. With the use of probe labeled at its 5' end, three prominent cleavages were detected which were confirmed and their endonucleolytic nature was established by further analysis using 3' end-labeled probe. The latter probe also revealed one more cleavage which was not detected with the 5' end-labeled probe. These cleavages mapped to positions on the mRNA which included a unique sequence motif CCAN1-3CUGN0-1UGAU. Degradation intermediates corresponding to these cleavages were consistently observed, specifically in fetal liver but not in normal or regenerating adult liver and appeared to have originated in vivo. Their levels decreased progressively from 18th day of gestation and became undetectable by 20 days after birth. No detectable changes in the levels of any of the prominent degradation products of alpha-fetoprotein (a homologue of albumin) mRNA could be observed during this period of development. Since accumulation of degradation intermediates is known to correlate with higher rate of mRNA turnover, our observations raise the possibility that the stability of albumin mRNA may be lower in fetal than in adult mouse liver.  相似文献   

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Lindane was degraded by Escherichia coli isolated from rat feces. About 10% of the added lindane was metabolized by the bacterium in Trypticase soy broth containing the pesticide. A single metabolite, 2,3,4,5,6-pentachloro-1-cyclohexene, was detected and identified by gas chromatography and mass spectrometry.  相似文献   

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The transduction of energy through biological membranes was investigated in Escherichia coli strains defective in the ATP synthetase complex. Everted vesicles prepared from strains containing an uncA or uncB mutation were compared with those of the parental strain for their ability to couple energy derived from the oxidation of substrates by the electron transport chain or from the hydrolysis of ATP by the Mg2+-adenosine triphosphatase, as measured by the energy-dependent quenching of quinacrine fluorescence or the active transport of 45Ca2+. Removal of the Mg2+-adenosine triphosphatase from membranes derived from the parental or an uncA strain caused a loss of energy-linked functions and a concomitant increase in the permeability of the membrane for protons. Proton impermeability was restored by treatment with N,N'-dicyclohexylcarbodiimide. When membranes of the uncB strain were treated in a similar manner, there was no loss of respiratory-driven functions, nor was there a change in proton permeability. These observations suggest that the uncB mutation specifically results in alteration of an intrinsic membrane protein channel necessary for the generation of utilzation of the electrochemical gradient of protons by that complex. Loss of the function of the proton channel is believed to prevent the transduction of energy through the ATP synthetase complex.  相似文献   

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Degradation of RNA in Escherichia coli. A hypothesis   总被引:10,自引:0,他引:10  
Summary A hypothesis to explain RNA degradation in Escherichia coli is proposed. In this hypothesis all classes of RNA are potentially degradable unless they are protected. The proposed mechanism for mRNA degradation requires a combination of endonuclease(s) and exonuclease(s) which degrades RNA in the 3 to 5 direction. Ribosomes attached to the newly synthesized 5 end of an mRNA molecule protect it from being attacked endonucleolytically; a delay in attachment of ribosomes to this end exposes it to endonucleolytic cleavage, followed by exonucleolytic digestion from the newly exposed 3 end to the 5 end. This mechanism is consistent with an overall 5 to 3 direction of degradation for mRNA. Exoribonucleases that degrade polyribonucleotides from the 5 end to 3 end are not required. The 3 end of the messenger is protected by its association with DNA. In order to enable the mRNA to remain anchored to the DNA while serving as an efficient template for protein synthesis, a special region near the 3 end of the mRNA is envisaged. This hypothetical region would not be translated.  相似文献   

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The Escherichia coli secA gene, whose translation is responsive to the proficiency of protein export within the cell, is the second gene in a three-gene operon and is flanked by gene X and mutT. By using gene fusion and oligonucleotide-directed mutagenesis techniques, we have localized this translationally regulated site to a region at the end of gene X and the beginning of secA. This region has been shown to bind SecA protein in vitro. These studies open the way for a direct investigation of the mechanism of secA regulation and its coupling to the protein secretion capability of the cell.  相似文献   

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