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1 of eIF5 and eIF2beta mutations and increases leaky scanning.
2 did not result in any reduced translation or leaky scanning.
3  affinity of eIF5B and increase AUG skipping/leaky scanning.
4 internal ribosomal entry site rather than by leaky scanning.
5  proteins from a single RNA molecule through leaky scanning.
6 he downstream P gene translated by ribosomal leaky scanning.
7 y have been complicated by the occurrence of leaky scanning along with reinitiation.
8 UG initiation codon, a significant degree of leaky scanning also occurred in its translation.
9 ranslation induction is governed by means of leaky scanning and not re-initiation.
10  allows scanning 40S subunits to proceed via leaky scanning and re-initiation to the major ORF, where
11       However, the mRNA elements controlling leaky scanning and their biological relevance have rarel
12                                    To reduce leaky scanning and translation initiation at the p110 st
13 es bypass the uORFs, including reinitiation, leaky scanning, and internal initiation of translation w
14  of ORF7b appears to be mediated by ribosome leaky scanning, and the protein has biochemical properti
15 de of translational initiation regulation is leaky scanning, and this regulatory process has not been
16 ur results demonstrate that mRNAs undergoing leaky scanning are a new class of endogenous NMD substra
17  UUG codons (Sui(-) phenotype) and decreases leaky scanning at AUG, while the NTT mutation 17-21 supp
18 els of 40S-bound eIF5 and eIF1 and increases leaky scanning at the GCN4 uORF1.
19 tion of the major ORF of IFRD1 involves both leaky scanning at the upstream AUG codon and re-initiati
20  is responsive to stress conditions and that leaky scanning can induce ORF translation by bypassing p
21 lexiviruses and found that the efficiency of leaky scanning caused by the short 5' UTR of sgRNA1, a w
22 ffects 40S occupancy of eIF3, and produces a leaky scanning defect indicative of a deregulation of th
23 trong initiation codon (i.e. one preventing 'leaky scanning') derived from this work is GXX AUG C/UCX
24 AUG rule--reinitiation and context-dependent leaky scanning--enable downstream AUG codons to be acces
25                       Our data indicate that leaky scanning like re-initiation is responsive to stres
26 mini that are translationally initiated by a leaky scanning mechanism at these CUG and GUG codons.
27 mini are synthesized in mammalian cells by a leaky scanning mechanism that employs multiple alternati
28 ct as negative regulators through a ribosome leaky scanning mechanism.
29 titis B e antigen translation by a ribosomal leaky scanning mechanism.
30  of the c-Myc S proteins, suggesting that a "leaky scanning" mechanism leads to the translation of th
31                                      While a leaky scanning model using Kozak contexts (-4 to +1 arou
32                                            A leaky-scanning model of translation based on Kozak trans
33                                        Thus, leaky scanning occurs in yeast, similar to its occurrenc
34 upt their interactions with the RRM increase leaky scanning of an AUG codon.
35 onic transcripts is consistent with episodic leaky scanning of ORF 1 to allow translation at ORF 2.
36                              We propose that leaky scanning of the first translational initiation cod
37 e) in all of the mutants, most likely due to leaky scanning of the first upstream open reading frame
38 1) AUG codons that either permit or prevent 'leaky scanning' of mRNA encoding AREA, the transcription
39 ps5 that reduced bulk initiation, conferred 'leaky-scanning' of AUGs; and lowered initiation fidelity
40                                              Leaky scanning past the uORFs facilitates ORF35 expressi
41 cess to the HER-2 initiation codon either by leaky scanning past the upstream AUG codon or by reiniti
42 ey tryptophan residues results in the severe leaky scanning phenotype partially suppressible by overe
43 gion (UTR) of the most upstream ORF promotes leaky scanning, potentially fine-tuning the translation
44  three escape mechanisms - context-dependent leaky scanning, reinitiation, and possibly direct intern
45 ation is facilitated by an extreme degree of leaky scanning, requiring the negotiation of 13 upstream
46                                         Such leaky scanning resulted in the suppression of mouse MOR
47 the question, using constructs that preclude leaky scanning, shows barely detectable reinitiation fro
48  translation of uORFs on uORF1 and attenuate leaky scanning that bypasses uORFs.
49 at the four BAG-1 isoforms are translated by leaky scanning, the patterns of isoform expression in vi
50            The loss of SUA5 causes increased leaky scanning through AUG codons, +1 frameshifting, and
51  translation initiation by re-initiation and leaky scanning using downstream AUG codons.
52                                              Leaky scanning, which supplies ribosomes to downstream o