The conformation of the initiator tRNA and of the 16S rRNA from Escherichia coli during the formation of the 30S initiation complex

Author(s):  
Pascale Romby ◽  
Hiroshi Wakao ◽  
Eric Westhof ◽  
Marianne Grunberg-Manago ◽  
Bernard Ehresmann ◽  
...  
2016 ◽  
Vol 113 (41) ◽  
pp. E6126-E6134 ◽  
Author(s):  
Sunil Shetty ◽  
Umesh Varshney

Ribosome biogenesis, a complex multistep process, results in correct folding of rRNAs, incorporation of >50 ribosomal proteins, and their maturation. Deficiencies in ribosome biogenesis may result in varied faults in translation of mRNAs causing cellular toxicities and ribosomopathies in higher organisms. How cells ensure quality control in ribosome biogenesis for the fidelity of its complex function remains unclear. Using Escherichia coli, we show that initiator tRNA (i-tRNA), specifically the evolutionarily conserved three consecutive GC base pairs in its anticodon stem, play a crucial role in ribosome maturation. Deficiencies in cellular contents of i-tRNA confer cold sensitivity and result in accumulation of ribosomes with immature 3′ and 5′ ends of the 16S rRNA. Overexpression of i-tRNA in various strains rescues biogenesis defects. Participation of i-tRNA in the first round of initiation complex formation licenses the final steps of ribosome maturation by signaling RNases to trim the terminal extensions of immature 16S rRNA.


Biochemistry ◽  
1990 ◽  
Vol 29 (35) ◽  
pp. 8144-8151 ◽  
Author(s):  
Hiroshi Wakao ◽  
Pascale Romby ◽  
Soumaya Laalami ◽  
Jean Pierre Ebel ◽  
Chantal Ehresmann ◽  
...  

1997 ◽  
Vol 179 (14) ◽  
pp. 4457-4463 ◽  
Author(s):  
G A Cangelosi ◽  
W H Brabant

2020 ◽  
Author(s):  
Liu Wen-qiang ◽  
Xia Nan ◽  
Zhang Jing-wen ◽  
Wang Ren-hu ◽  
Jiang Gui-miao

ABSTRACTObjectiveThe aim of this study was to identify the biological features, influence factor and Genome-wide properties of pathogenic donkey Escherichia coli (DEC) isolates associated with severe diarrhea in Northern China.MethodsThe isolation and identification of DEC isolates were carried out by the conventional isolation、automatic biochemical analysis system、serotype identification、16S rRNA test、animal challenge and antibiotics sensitivity examination. The main virulence factors were identified by PCR. The complete genomic re-sequence and frame-sequence were analyzed.Results216 strains of DEC were isolated from diarrhea samples, conforming to the bacterial morphology and biochemical characteristics of E.coli. The average size of the pure culture was 329.4 nm×223.5 nm. Agglutination test showed that O78 (117/179, 65.4%) was the dominant serotype and ETEC(130/216, 60.1%) was the dominant pathogenic type. Noticeable pathogenic were observed in 9 of 10 (90%) randomly selected DEC isolates caused the death of test mice (100%, 5/5) within 6h∼48h, 1 of 10 (10%) isolates caused the death of test mice (40%, 2/5) within 72h. Our data confirmed that DEC plays an etiology role in dirarrea/death case of donkey foal. Antibiotics sensitivity test showed significant susceptibility to DEC isolates were concentrated in Nor、EFT、ENR、CIP and AMK,while the isolates with severe antibiotic resistance was AM、TE、APR、FFC、RL and CN. Multi-drug resistance was also observed. A total of 15 virulence gene fragments were determined from DEC(n=30) including OMPA (73%), safD (77%), traTa (73%), STa(67%), EAST1 (67%), astA (63%), kspII (60%), irp2 (73%), iucD (57%), eaeA (57%), VAT (47%), iss (33%), cva (27%), ETT2 (73%) and K88 (60%) respectively. More than 10 virulence genes from 9 of 30(30%) DEC strains were detected, while 6 of 30(20%) DEC strains detected 6 virulence factors. phylogenetic evolutionary tree of 16S rRNA gene from different isolates shows some variability. The original data volume obtained from the genome re-sequencing of DEC La18 was 2.55G and Genome framework sequencing was carried out to demonstrate the predicted functions and evolutionary direction and genetic relationships with other animal E.coli.ConclusionsThese findings provide firstly fundamental data that might be useful in further study of the role of DEC and provide a new understanding of the hazards of traditional colibacillosis due to the appear of new production models.


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