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1.
The soluble fraction extracted from Escherichia coli A19 (Hfr, rel met rns) during early and late times of phenotypic and genotypic induced relaxed control have been examined for the possible accumulation of ribosomal proteins (r-proteins) and rRNA species during this time of unbalanced macromolecular synthesis. Ribosomal proteins and rRNA species were not found to accumulate within the soluble fraction at any time during this period of relaxed control; even after the typical rRNA accumulation had ceased, r-proteins did not accumulate. It is concluded, from these and related observations, that the r-proteins and rRNA species known to be produced during relaxation must immediately associate to form the unusual ribonucleoprotein particles (e.g. 'relaxed particles' and 'chloramphenicol particles') characteristic of periods of relaxed control. Since r-proteins do not accumulate even when net RNA accumulation halts, it appears that some elements of the normal, basic co-ordination between rRNA and r-protein synthesis/stability persist even during relaxed control.  相似文献   

2.
Overproduction of rRNA was artificially induced in Escherichia coli cells to test whether the synthesis of ribosomal protein (r-protein) is normally repressed by feedback regulation. When rRNA was overproduced more than twofold from a hybrid plasmid carrying the rrnB operon fused to the lambda pL promoter (pL-rrnB), synthesis of individual r-proteins increased by an average of about 60%. This demonstrates that the synthesis of r-proteins is repressed under normal conditions. The increase of r-protein production, however, for unknown reasons, was not as great as the increase in rRNA synthesis and resulted in an imbalance between the amounts of rRNA and r-protein synthesis. Therefore, only a small (less than 20%) increase in the synthesis of complete 30S and 50S ribosome subunits was detected, and a considerable fraction of the excess rRNA was degraded. Lack of complete cooperativity in the assembly of ribosome subunits in vivo is discussed as a possible explanation for the absence of a large stimulation of ribosome synthesis observed under these conditions. In addition to the induction of intact rRNA overproduction from the pL-rrnB operon, the effects of unbalanced overproduction of each of the two large rRNAs, 16S rRNA and 23S rRNA, on r-protein synthesis were examined using pL-rrnB derivatives carrying a large deletion in either the 23S rRNA gene or the 16S rRNA gene. Operon-specific derepression after 23S or 16S rRNA overproduction correlated with the overproduction of rRNA containing the target site for the operon-specific repressor r-protein. These results are discussed to explain the apparent coupling of the assembly of one ribosomal subunit with that of the other which was observed in earlier studies on conditionally lethal mutants with defects in ribosome assembly.  相似文献   

3.
J Dodd  J M Kolb  M Nomura 《Biochimie》1991,73(6):757-767
Earlier studies have shown that the reconstitution of Escherichia coli 50S as well as 30S ribosomal subunits from component rRNA and ribosomal protein (r-protein) molecules in vitro is not completely cooperative and binding of more than one r-protein to a single 16S rRNA (or 23S rRNA) molecule is required to initiate a successful 30S (or 50S) ribosome assembly reaction. We first confirmed this conclusion by carrying out 30S subunit reconstitution in the presence of a constant amount of 16S rRNA together with various amounts of total 30S r-proteins (TP30) and by analyzing the physical state of reconstituted particles rather than by assaying protein synthesizing activity of the particles as was done in the earlier studies. As expected, under conditions of excess rRNA, the efficiency of 30S subunit reconstitution per unit amount of TP30 decreased greatly with the decrease in the ratio of TP30 to rRNA, indicating the lack of complete cooperativity in the assembly reaction. We then asked the question whether the cooperativity of ribosome assembly is complete in vivo. We treated exponentially growing E coli cells with low concentrations of chloramphenicol which is known to inhibit protein synthesis without inhibiting rRNA synthesis, creating conditions of excess synthesis of rRNA relative to r-proteins. Several concentrations of chloramphenicol (ranging from 0.4 to 4.0 micrograms/ml) were used so that inhibition of protein synthesis ranged from 40 to 95%. Under these conditions, we examined the synthesis of RNA, ribosomal proteins and 50S ribosomal subunits as well as the synthesis of total protein. We found that the synthesis of 50S subunits was not inhibited as much as the synthesis of total protein at lower concentrations of chloramphenicol, but the degree of inhibition of 50S subunit synthesis increased sharply with increasing concentrations of chloramphenicol and was in fact greater than the degree of inhibition of total protein synthesis at chloramphenicol concentrations of 2 micrograms/ml or higher. The inhibition of 50S subunit synthesis was significantly greater than the inhibition of r-protein synthesis at all chloramphenicol concentrations examined. These data are consistent with the hypothesis that the cooperativity of ribosome assembly in vivo is also not complete as is the case for in vitro ribosome reconstitution, but are difficult, if not impossible, to explain on the basis of the complete cooperativity model.(ABSTRACT TRUNCATED AT 400 WORDS)  相似文献   

4.
Production of ribosomes is a fundamental process that occurs in all dividing cells. It is a complex process consisting of the coordinated synthesis and assembly of four ribosomal RNAs (rRNA) with about 80 ribosomal proteins (r-proteins) involving more than 150 nonribosomal proteins and other factors. Diamond Blackfan anemia (DBA) is an inherited red cell aplasia caused by mutations in one of several r-proteins. How defects in r-proteins, essential for proliferation in all cells, lead to a human disease with a specific defect in red cell development is unknown. Here, we investigated the role of r-proteins in ribosome biogenesis in order to find out whether those mutated in DBA have any similarities. We depleted HeLa cells using siRNA for several individual r-proteins of the small (RPS6, RPS7, RPS15, RPS16, RPS17, RPS19, RPS24, RPS25, RPS28) or large subunit (RPL5, RPL7, RPL11, RPL14, RPL26, RPL35a) and studied the effect on rRNA processing and ribosome production. Depleting r-proteins in one of the subunits caused, with a few exceptions, a decrease in all r-proteins of the same subunit and a decrease in the corresponding subunit, fully assembled ribosomes, and polysomes. R-protein depletion, with a few exceptions, led to the accumulation of specific rRNA precursors, highlighting their individual roles in rRNA processing. Depletion of r-proteins mutated in DBA always compromised ribosome biogenesis while affecting either subunit and disturbing rRNA processing at different levels, indicating that the rate of ribosome production rather than a specific step in ribosome biogenesis is critical in patients with DBA.  相似文献   

5.
Despite the rising knowledge about ribosome function and structure and how ribosomal subunits assemble in vitro in bacteria, the in vivo role of many ribosomal proteins remains obscure both in pro- and eukaryotes. Our systematic analysis of yeast ribosomal proteins (r-proteins) of the small subunit revealed that most eukaryotic r-proteins fulfill different roles in ribosome biogenesis, making them indispensable for growth. Different r-proteins control distinct steps of nuclear and cytoplasmic pre-18S rRNA processing and, thus, ensure that only properly assembled ribosomes become engaged in translation. Comparative analysis of dynamic and steady-state maturation assays revealed that several r-proteins are required for efficient nuclear export of pre-18S rRNA, suggesting that they form an interaction platform with the export machinery. In contrast, the presence of other r-proteins is mainly required before nuclear export is initiated. Our studies draw a correlation between the in vitro assembly, structural localization, and in vivo function of r-proteins.  相似文献   

6.
7.
The relative differential synthesis rates2 of individual ribosomal proteins (r-proteins) were determined for Escherichia coli B/r growing in succinate medium (growth rate, μ = 0.65 doublings per hour), glucose medium (μ = 1.36) and glucose-amino acids medium (μ = 1.90). These differential synthesis rates were found to increase co-ordinately with increasing bacterial growth rates; this implies that ribosomes from bacteria growing at different rates are homogeneous with respect to their protein composition (i.e. the stoichiometric amounts of the different r-proteins per ribosome are constant and independent of the bacterial growth rate). Following incorporation into ribosomes, the bulk of the r-proteins were found to be as stable as total protein. Only two r-proteins, S6 and S21, were less stable than total protein; their decay half-lives, measured in succinate and glucose-amino acids cultures, were estimated to be approximately 500 minutes. In addition, post-translational modification of proteins S18, L6 and L11 was observed and the possible relations between modification and in vivo ribosome assembly are discussed. Finally, evidence is presented suggesting that the coordinate production of r-proteins may result, in part, from a mechanism that degrades excess r-proteins that are not rapidly incorporated into ribosomal particles.  相似文献   

8.
Synthesis of individual ribosomal proteins in Escherichia coli B/r   总被引:8,自引:0,他引:8  
The differential synthesis rates of individual ribosomal proteins (r-proteins) were measured in Escherichia coli B/r during the transition period following a nutritional shift-up from succinate minimal to glucose/ammo acids medium. These rates were observed to respond sequentially to the shift-up; the differential synthesis rate of protein L28 begins to increase within 0.1 of a minute following the shift-up, while the protein L29 synthesis rate begins to increase only after a lag of 2.5 minutes. The onset of induction of the remaining r-proteins occurs within this 2.5-minute interval. Furthermore, there was a twofold variation in the acceleration of the differential synthesis rates of individual r-proteins. Within the initial two to ten-minute period following the shift-up the differential synthesis rates of most r-proteins reached values ranging from 2.2 to 3.0-fold higher than the pre-shift rates, before declining to the post-shift steady-state values. It is suggested that the increases in the differential synthesis rates of r-proteins result in part from increases in the translational efficiency of messenger RNA in the post-shift growth medium and in part from increases in the amount of r-protein mRNA that is present.  相似文献   

9.
Summary The regulation of the synthesis of r-proteins in Escherichia coli was investigated by increasing the dosage of the genes for a limited number of ribosomal proteins (r-proteins) using either transducing phage fus 3 (Lindahl et al. 1977) or rif d18 (Kirschbaum and Konrad 1973). During exponential growth the presence in the cell of either lysogenised transducing phage did not increase the rate of synthesis or degradation of any of the 31 r-proteins whose genes are duplicated. Experiments were also performed to determine whether r-protein synthesis during the period of unbalanced r-protein synthesis that follows nutritional enrichment was sensitive to an increase in gene dosage. Duplication of the 27 r-protein genes on fus 3 did not alter the rate of synthesis of any of the r-proteins after enrichment. However, gene dosage effects were detected for at least 3 of the r-proteins whose genes were duplicated of rif d18.  相似文献   

10.
11.
In eukaryotes, in vivo formation of the two ribosomal subunits from four ribosomal RNAs (rRNAs) and approximately 80 ribosomal proteins (r-proteins) involves more than 150 nonribosomal proteins and around 100 small noncoding RNAs. It is temporally and spatially organized within different cellular compartments: the nucleolus, the nucleoplasm, and the cytoplasm. Here, we present a way to analyze how eukaryotic r-proteins of the small ribosomal subunit (SSU) assemble in vivo with rRNA. Our results show that key aspects of the assembly of eukaryotic r-proteins into distinct structural parts of the SSU are similar to the in vitro assembly pathway of their prokaryotic counterparts. We observe that the establishment of a stable assembly intermediate of the eukaryotic SSU body, but not of the SSU head, is closely linked to early rRNA processing events. The formation of assembly intermediates of the head controls efficient nuclear export of the SSU and cytoplasmic pre-rRNA maturation steps.  相似文献   

12.
Despite a decrease in the extent to which confluent monolayers of late compared to early passage CF3 human diploid fibroblasts can be stimulated to proliferate, the time course of DNA synthesis onset is similar regardless of the in vitro age of the cells. A parallel and stoichiometric relationship is maintained between the rate of DNA synthesis and the cellular levels of histone mRNA independent of the age of the cell cultures. Furthermore, DNA synthesis and cellular histone mRNA levels decline in a coordinate manner after inhibition of DNA replication by hydroxyurea treatment. These results indicate that while the proliferative activity of human diploid fibroblasts decreases with passage in culture, those cells that retain the ability to proliferate continue to exhibit a tight coupling of DNA replication and histone gene expression.  相似文献   

13.
The rate of synthesis of ribosomal proteins was investigated as an index of the rate of production of ribosomes in mouse kidney during the first few days after contralateral nephrectomy. Compensatory renal hypertrophy was not associated with a major increase in the synthetic rate of ribosomal proteins and rRNA. Instead, the ratio of the rate of ribosomal-protein synthesis to that of total protein synthesis remained nearly constant. The conformation of glutaraldehyde-fixed ribosomes and ribosomal subunits was unchanged. During the early stages of compensatory renal hypertrophy the accretion of rRNA is due largely to conservation of ribosomes that would otherwise have been degraded.  相似文献   

14.
15.
16.
17.
Regulation of ribosomal protein synthesis in Escherichia coli B/r.   总被引:1,自引:1,他引:0       下载免费PDF全文
The differential synthesis rate of ribosomal protein (r-protein), alpha-r (synthesis rate of r-protein divided by synthesis rate of total protein), was measured during the cell division cycle. It was observed that alpha-r remained essentially constant and was not measurably affected by duplication of the r-protein gene cluster (i.e., str-spc region) during the process of chromosome replication. It was further observed that the rate of total protein synthesis and r-protein synthesis increased continuously and uniformly during the entire cell cycle. This gene dosage independence of the synthesis rate of r-protein was similar to that observed earlier for the synthesis of ribosomal ribonucleic acid (rRNA). These observations indicate that the synthesis rates of the protein and RNA components of the ribosome are coordinately balanced during the entire cell division cycle and are not significantly perturbed by duplication of the r-protein or rRNA genes. Furthermore, this balanced synthesis insures that neither free rRNA nor free r-protein accumulate in appreciable amounts during balanced growth.  相似文献   

18.
Immunological homology between chloroplast ribosomal proteins (r-proteins) from a higher plant (Spinacia) and bacterial r-proteins was examined using antibodies prepared against 35 purified Escherichia coli r-proteins. Cross-reactions were determined on cellulose acetate gels and on nitrocellulose paper, after electrophoretic transfer of r-proteins from one- and two dimensional polyacrylamide gels, using peroxidase and fluorescein-conjugated second antibodies for detection (immunoblotting). The specificity of positive cross-reactions was confirmed by absorption experiments using purified E. coli r-proteins. Antisera against five proteins of the small subunit and six proteins of the large subunit of E. coli ribosome (i.e. anti-S7, -S9, -S11, -S12, and -S19; anti-L1, -L2, -L3, -L6, -L13, and -L17) gave cross-reactions. As an inference from this work, and a recent study on the synthesis of certain chloroplast r-proteins in isolated chloroplasts (Eneas-Filho, J., Hartley, M. R., and Mache, R. (1981) Mol. Gen. Genet. 184, 484-488), we suggest that chloroplast r-proteins S7 and L2 are encoded in the organelle DNA.  相似文献   

19.
Nature of the ribosomal binding site for initiation factor 3 (IF-3)   总被引:2,自引:0,他引:2  
In vitro labelled IF-3 binds to both 16S and 23S rRNA but while one molecule of IF-3 binds to each 30S particle, binding to 50S particles is negligible. If proteins are removed by LiCl or CsCl treatment from either ribosomal subunit, however, binding specificity is lost and new “binding sites” appear on both ribosomal particles. Controlled RNase digestion of the 30S subunits does not cause the loss of any r-protein while controlled trypsin digestion results in the loss or degradation of several r-proteins; compared to the Phe-tRNA binding site, the binding site of IF-3 seems to be more sensitive to RNase than to trypsin digestion. Antibodies against single 30S r-proteins, which inhibit other ribosomal functions, do not prevent the binding of IF-3. RNA-binding dyes (acridine orange and pyronine) inhibit the binding of IF-3 to 30S ribosomal subunits. It is proposed that a segment of the 16S rRNA provides the binding site for IF-3 and that r-proteins confer specificity, restricting the number of available “binding sites”, and stabilize the 30S-IF-3 interaction.  相似文献   

20.
The time of synthesis of ribosomal genes was studied in a haploid (Rana pipiens), and a pseudodiploid (Chinese hamster) cell line. R. pipiens cells were synchronized by amethopterin block. Chinese hamster cells were synchronized by isoleucine starvation followed by hydroxyurea treatment. DNA replicated during three or four selected intervals of the S period was separated from the remainder of the DNA by bromodeoxyuridine density labeling. Purified bromodeoxyuridine substituted DNA was annealed with radioactive-labeled 28S ribosomal RNA (rRNA) to determine when, during different intervals of S, the nuclear DNA homologous to rRNA was replicated. In the R. pipiens and Chinese hamster cell lines, the percent of nuclear DNA homologous to 28S rRNA is highest in the DNA replicated during the first half of the S period.  相似文献   

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