Author: Haley R. Harrington; Matthew H. Zimmer; Laura M. Chamness; Veronica Nash; Wesley D. Penn; Thomas F. Miller; Suchetana Mukhopadhyay; Jonathan P. Schlebach
Title: Cotranslational Folding Stimulates Programmed Ribosomal Frameshifting in the Alphavirus Structural Polyprotein Document date: 2019_10_2
ID: 4ju3x2bf_24_1
Snippet: (which was not peer-reviewed) is the author/funder. It . https://doi.org/10.1101/790444 doi: bioRxiv preprint nascent chain and molecular chaperones are known to ratchet polypeptides across the membrane, 48, 49 and may therefore contribute to pulling forces. This could potentially account for the fact that the deletion of components of the ribosome-associated chaperone complex has been found to attenuate -1PRF in yeast. 50 Future investigations a.....
Document: (which was not peer-reviewed) is the author/funder. It . https://doi.org/10.1101/790444 doi: bioRxiv preprint nascent chain and molecular chaperones are known to ratchet polypeptides across the membrane, 48, 49 and may therefore contribute to pulling forces. This could potentially account for the fact that the deletion of components of the ribosome-associated chaperone complex has been found to attenuate -1PRF in yeast. 50 Future investigations are needed to evaluate the full range of -1PRF effectors and how these are potentially exploited for regulatory purposes.
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