Cargando…

Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions

Extracellular small RNAs (sRNAs) are abundant in many biofluids, but little is known about their mechanisms of transport and stability in RNase-rich environments. We previously reported that high-density lipoproteins (HDLs) in mice were enriched with multiple classes of sRNAs derived from the endoge...

Descripción completa

Detalles Bibliográficos
Autores principales: Michell, Danielle L., Allen, Ryan M., Cavnar, Ashley B., Contreras, Danielle M., Yu, Minzhi, Semler, Elizabeth M., Massick, Clark, Raby, Chase A., Castleberry, Mark, Ramirez, Marisol A., Zhu, Wanying, May-Zhang, Linda, Ifrim, Anca, Carr, John Jeffrey, Terry, James G., Schwendeman, Anna, Davies, Sean S., Sheng, Quanhu, Linton, MacRae F., Vickers, Kasey C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9133651/
https://www.ncbi.nlm.nih.gov/pubmed/35447119
http://dx.doi.org/10.1016/j.jbc.2022.101952
_version_ 1784713618388942848
author Michell, Danielle L.
Allen, Ryan M.
Cavnar, Ashley B.
Contreras, Danielle M.
Yu, Minzhi
Semler, Elizabeth M.
Massick, Clark
Raby, Chase A.
Castleberry, Mark
Ramirez, Marisol A.
Zhu, Wanying
May-Zhang, Linda
Ifrim, Anca
Carr, John Jeffrey
Terry, James G.
Schwendeman, Anna
Davies, Sean S.
Sheng, Quanhu
Linton, MacRae F.
Vickers, Kasey C.
author_facet Michell, Danielle L.
Allen, Ryan M.
Cavnar, Ashley B.
Contreras, Danielle M.
Yu, Minzhi
Semler, Elizabeth M.
Massick, Clark
Raby, Chase A.
Castleberry, Mark
Ramirez, Marisol A.
Zhu, Wanying
May-Zhang, Linda
Ifrim, Anca
Carr, John Jeffrey
Terry, James G.
Schwendeman, Anna
Davies, Sean S.
Sheng, Quanhu
Linton, MacRae F.
Vickers, Kasey C.
author_sort Michell, Danielle L.
collection PubMed
description Extracellular small RNAs (sRNAs) are abundant in many biofluids, but little is known about their mechanisms of transport and stability in RNase-rich environments. We previously reported that high-density lipoproteins (HDLs) in mice were enriched with multiple classes of sRNAs derived from the endogenous transcriptome, but also from exogenous organisms. Here, we show that human HDL transports tRNA-derived sRNAs (tDRs) from host and nonhost species, the profiles of which were found to be altered in human atherosclerosis. We hypothesized that HDL binds to tDRs through apolipoprotein A-I (apoA-I) and that these interactions are conferred by RNA-specific features. We tested this using microscale thermophoresis and electrophoretic mobility shift assays and found that HDL binds to tDRs and other single-stranded sRNAs with strong affinity but did not bind to double-stranded RNA or DNA. Furthermore, we show that natural and synthetic RNA modifications influenced tDR binding to HDL. We demonstrate that reconstituted HDL bound to tDRs only in the presence of apoA-I, and purified apoA-I alone were able to bind sRNA. Conversely, phosphatidylcholine vesicles did not bind tDRs. In summary, we conclude that HDL binds to single-stranded sRNAs likely through nonionic interactions with apoA-I. These results highlight binding properties that likely enable extracellular RNA communication and provide a foundation for future studies to manipulate HDL–sRNA interactions for therapeutic approaches to prevent or treat disease.
format Online
Article
Text
id pubmed-9133651
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-91336512022-06-04 Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions Michell, Danielle L. Allen, Ryan M. Cavnar, Ashley B. Contreras, Danielle M. Yu, Minzhi Semler, Elizabeth M. Massick, Clark Raby, Chase A. Castleberry, Mark Ramirez, Marisol A. Zhu, Wanying May-Zhang, Linda Ifrim, Anca Carr, John Jeffrey Terry, James G. Schwendeman, Anna Davies, Sean S. Sheng, Quanhu Linton, MacRae F. Vickers, Kasey C. J Biol Chem Research Article Extracellular small RNAs (sRNAs) are abundant in many biofluids, but little is known about their mechanisms of transport and stability in RNase-rich environments. We previously reported that high-density lipoproteins (HDLs) in mice were enriched with multiple classes of sRNAs derived from the endogenous transcriptome, but also from exogenous organisms. Here, we show that human HDL transports tRNA-derived sRNAs (tDRs) from host and nonhost species, the profiles of which were found to be altered in human atherosclerosis. We hypothesized that HDL binds to tDRs through apolipoprotein A-I (apoA-I) and that these interactions are conferred by RNA-specific features. We tested this using microscale thermophoresis and electrophoretic mobility shift assays and found that HDL binds to tDRs and other single-stranded sRNAs with strong affinity but did not bind to double-stranded RNA or DNA. Furthermore, we show that natural and synthetic RNA modifications influenced tDR binding to HDL. We demonstrate that reconstituted HDL bound to tDRs only in the presence of apoA-I, and purified apoA-I alone were able to bind sRNA. Conversely, phosphatidylcholine vesicles did not bind tDRs. In summary, we conclude that HDL binds to single-stranded sRNAs likely through nonionic interactions with apoA-I. These results highlight binding properties that likely enable extracellular RNA communication and provide a foundation for future studies to manipulate HDL–sRNA interactions for therapeutic approaches to prevent or treat disease. American Society for Biochemistry and Molecular Biology 2022-04-18 /pmc/articles/PMC9133651/ /pubmed/35447119 http://dx.doi.org/10.1016/j.jbc.2022.101952 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Michell, Danielle L.
Allen, Ryan M.
Cavnar, Ashley B.
Contreras, Danielle M.
Yu, Minzhi
Semler, Elizabeth M.
Massick, Clark
Raby, Chase A.
Castleberry, Mark
Ramirez, Marisol A.
Zhu, Wanying
May-Zhang, Linda
Ifrim, Anca
Carr, John Jeffrey
Terry, James G.
Schwendeman, Anna
Davies, Sean S.
Sheng, Quanhu
Linton, MacRae F.
Vickers, Kasey C.
Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title_full Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title_fullStr Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title_full_unstemmed Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title_short Elucidation of physico-chemical principles of high-density lipoprotein–small RNA binding interactions
title_sort elucidation of physico-chemical principles of high-density lipoprotein–small rna binding interactions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9133651/
https://www.ncbi.nlm.nih.gov/pubmed/35447119
http://dx.doi.org/10.1016/j.jbc.2022.101952
work_keys_str_mv AT michelldaniellel elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT allenryanm elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT cavnarashleyb elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT contrerasdaniellem elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT yuminzhi elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT semlerelizabethm elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT massickclark elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT rabychasea elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT castleberrymark elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT ramirezmarisola elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT zhuwanying elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT mayzhanglinda elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT ifrimanca elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT carrjohnjeffrey elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT terryjamesg elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT schwendemananna elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT daviesseans elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT shengquanhu elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT lintonmacraef elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions
AT vickerskaseyc elucidationofphysicochemicalprinciplesofhighdensitylipoproteinsmallrnabindinginteractions