<HashMap><database>biostudies-literature</database><scores/><additional><submitter>Duran Meza AL</submitter><funding>National Science Foundation</funding><pagination>e0336376</pagination><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/S-EPMC12694869</full_dataset_link><repository>biostudies-literature</repository><omics_type>Unknown</omics_type><volume>20(12)</volume><pubmed_abstract>The capsid protein of cowpea chlorotic mottle virus (CCMV) has been used extensively for in vitro packaging of heterologous RNA. The associated virus-like particles (VLPs) are spherical with a 3nm-thick/28nm-diameter protein shell and are therefore limited in the amount of RNA they can package. As shown in earlier work, when RNA lengths are longer than ~3500nt the RNA is no longer self-assembled exclusively into a single VLP. Rather, it is shared by two or more 28nm-diameter capsids in the form of doublets, triplets, and higher-order multiplets, with the RNA threaded through the naturally- occurring ~1.5nm-diameter holes in the 180-subunit/icosahedrally-symmetric protein shells. Consistent with this fact we find in the present work that 3500nt is the maximum length of packaged RNA that is </pubmed_abstract><journal>PloS one</journal><pubmed_title>How much genetic information in RNA form can be protected by a CCMV virus-like particle?</pubmed_title><pmcid>PMC12694869</pmcid><funding_grant_id>MCB 2103700</funding_grant_id><pubmed_authors>Porak SC</pubmed_authors><pubmed_authors>Gelbart WM</pubmed_authors><pubmed_authors>Knobler CM</pubmed_authors><pubmed_authors>Chapman A</pubmed_authors><pubmed_authors>Duran Meza AL</pubmed_authors></additional><is_claimable>false</is_claimable><name>How much genetic information in RNA form can be protected by a CCMV virus-like particle?</name><description>The capsid protein of cowpea chlorotic mottle virus (CCMV) has been used extensively for in vitro packaging of heterologous RNA. The associated virus-like particles (VLPs) are spherical with a 3nm-thick/28nm-diameter protein shell and are therefore limited in the amount of RNA they can package. As shown in earlier work, when RNA lengths are longer than ~3500nt the RNA is no longer self-assembled exclusively into a single VLP. Rather, it is shared by two or more 28nm-diameter capsids in the form of doublets, triplets, and higher-order multiplets, with the RNA threaded through the naturally- occurring ~1.5nm-diameter holes in the 180-subunit/icosahedrally-symmetric protein shells. Consistent with this fact we find in the present work that 3500nt is the maximum length of packaged RNA that is </description><dates><release>2025-01-01T00:00:00Z</release><publication>2025</publication><modification>2026-06-06T01:24:24.454Z</modification><creation>2026-05-24T03:11:48.659Z</creation></dates><accession>S-EPMC12694869</accession><cross_references><pubmed>41370351</pubmed><doi>10.1371/journal.pone.0336376</doi></cross_references></HashMap>