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Modified nucleotides of tRNAPro restrict interactions in the binary primer/template complex of M-MuLV
1Institut de Biologie Moléculaire et Cellulaire, 15 rue Descartes, Strasbourg cedex, 67084, France.
Abstract:
In all retroviruses, reverse transcription is primed by a cellular tRNA, which is base-paired through its 3'-terminal 18 nucleotides to a complementary sequence on the viral RNA genome termed the primer binding site (PBS). Evidence for specific primer-template interactions in addition to this standard interaction has recently been demonstrated for several retroviruses. Here, we used chemical and enzymatic probing to investigate the interactions between Moloney murine leukemia virus (M-MuLV) RNA and its natural primer tRNAPro. The existence of extended interactions was further tested by comparing the viral RNA/tRNAPro complex with simplified complexes in which viral RNA or tRNA were reduced to the 18 nt of the PBS or to the complementary tRNA sequence. These data, combined with computer modeling provide important clues on the secondary structure and three-dimensional folding of the M-MuLV RNA/tRNAPro complex. In contrast with other retroviruses, we found that the interaction between tRNAPro and the M-MuLV RNA template is restricted to the standard PBS interaction. In this binary complex, the viral RNA is highly constrained and the rest of tRNAPro is rearranged, with the exception of the anticodon arm, leading to a very compact structure. Unexpectedly, when a synthetic tRNAPro lacking the post-transcriptional modifications is substituted for the natural tRNAPro primer, the interactions between the primer and the viral RNA are extended. Hence, our data suggest that the post-transcriptional modifications of natural tRNAPro prevent additional contacts between tRNAPro and the U5 region of M-MuLV RNA.
Insights
Moloney murine leukemia virus (M-MuLV) reverse transcription involves a primer binding site (PBS) interaction between viral RNA and tRNAPro. Unlike other retroviruses, M-MuLV RNA/tRNAPro interaction is limited to the PBS, forming a compact structure.
Area of Science:
- * Molecular Biology
- * Virology
- * Structural Biology
Background:
- * Retroviral reverse transcription is initiated by a cellular tRNA primer.
- * This primer binds to a specific sequence on the viral RNA genome called the primer binding site (PBS).
- * Extended primer-template interactions beyond the PBS have been observed in some retroviruses.
Purpose of the Study:
- * To investigate the specific interactions between Moloney murine leukemia virus (M-MuLV) RNA and its natural primer tRNAPro.
- * To determine if M-MuLV exhibits extended primer-template interactions.
- * To elucidate the structural organization of the M-MuLV RNA/tRNAPro complex.
Main Methods:
- * Chemical and enzymatic probing of M-MuLV RNA and tRNAPro interactions.
- * Analysis of simplified complexes using reduced viral RNA or tRNA fragments.
- * Computer modeling to predict RNA/tRNA complex structure.
Main Results:
- * M-MuLV RNA/tRNAPro interaction is confined to the standard PBS interaction, unlike other retroviruses.
- * The viral RNA is constrained, and tRNAPro rearranges into a compact structure, excluding the anticodon arm.
- * Synthetic tRNAPro lacking post-transcriptional modifications showed extended interactions with M-MuLV RNA.
Conclusions:
- * Post-transcriptional modifications on natural tRNAPro likely prevent additional contacts with the M-MuLV RNA U5 region.
- * The M-MuLV RNA/tRNAPro complex adopts a unique, highly constrained structure.
- * Understanding these interactions is crucial for retroviral replication mechanisms.