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An Alternative Role of RluD in the Fidelity of Translation Initiation in Escherichia coli.
Lahry, Kuldeep; Gopal, Aiswarya; Sahu, Amit Kumar; Marbaniang, Carmelita Nora; Shah, Riyaz Ahmad; Mehta, Avani; Varshney, Umesh.
Affiliation
  • Lahry K; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India. Electronic address: https://twitter.com/kdlahry.
  • Gopal A; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India. Electronic address: https://twitter.com/gopal_aiswarya.
  • Sahu AK; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India. Electronic address: https://twitter.com/sahuamit12.
  • Marbaniang CN; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India.
  • Shah RA; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India. Electronic address: https://twitter.com/Ribo_riyaz.
  • Mehta A; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India.
  • Varshney U; Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India; Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore 560064, India. Electronic address: varshney@iisc.ac.in.
J Mol Biol ; 434(12): 167588, 2022 06 30.
Article in En | MEDLINE | ID: mdl-35439479
ABSTRACT
The fidelity of initiator tRNA (i-tRNA) selection in the ribosomal P-site is a key step in translation initiation. The highly conserved three consecutive GC base pairs (3GC pairs) in the i-tRNA anticodon stem play a crucial role in its selective binding in the P-site. Mutations in the 3GC pairs (3GC mutant) render the i-tRNA inactive in initiation. Here, we show that a mutation (E265K) in the unique C-terminal tail domain of RluD, a large ribosomal subunit pseudouridine synthase, results in compromised fidelity of initiation and allows initiation with the 3GC mutant i-tRNA. RluD modifies the uridine residues in H69 to pseudouridines. However, the role of its C-terminal tail domain remained unknown. The E265K mutation does not diminish the pseudouridine synthase activity of RluD, or the growth phenotype of Escherichia coli, or cause any detectable defects in the ribosomal assembly in our assays. However, in our in vivo analyses, we observed that the E265K mutation resulted in increased retention of the ribosome binding factor A (RbfA) on 30S suggesting a new role of RluD in contributing to RbfA release, a function which may be attributed to its (RluD) C-terminal tail domain. The studies also reveal that deficiency of RbfA release from 30S compromises the fidelity of i-tRNA selection in the ribosomal P-site.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Peptide Chain Initiation, Translational / Ribosomal Proteins / Escherichia coli Proteins / Escherichia coli Language: En Journal: J Mol Biol Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Peptide Chain Initiation, Translational / Ribosomal Proteins / Escherichia coli Proteins / Escherichia coli Language: En Journal: J Mol Biol Year: 2022 Document type: Article