Show simple item record

Author
dc.contributor.author
Vida, István 
Author
dc.contributor.author
Fazekas, Zsolt 
Author
dc.contributor.author
Gyulai, Gergő 
Author
dc.contributor.author
Nagy-Fazekas, Dóra 
Author
dc.contributor.author
Pálfy, Gyula 
Author
dc.contributor.author
Stráner, Pál 
Author
dc.contributor.author
Kiss, Éva 
Author
dc.contributor.author
Perczel, András 
Availability Date
dc.date.accessioned
2021-08-11T12:46:33Z
Availability Date
dc.date.available
2021-08-11T12:46:33Z
Release
dc.date.issued
2021
uri
dc.identifier.uri
http://hdl.handle.net/10831/58715
Abstract
dc.description.abstract
We developed a cost sensitive isotope labelling procedure using a fed-batch fermentation method and tested its efficiency producing the 15 N-, 13 C- and 15 N/13 C-labelled variants of an amyloidogenic miniprotein (E5: EEEAVRLYIQWLKEGGPSSGRPPPS). E5 is a surface active protein, which forms amyloids in solution. Here, we confirm, using both PM-IRRAS and AFM measurements, that the air-water interface triggers structural rearrangement and promotes the amyloid formation of E5, and thus it is a suitable test protein to work out efficient isotope labelling schemes even for such difficult sequences. E. coli cells expressing the recombinant, ubiquitin-fused miniprotein were grown in minimal media containing either unlabelled nutrients, or 15 N-NH4 Cl and/or 13 C-D-Glc. The consumption rates of NH4 Cl and D-Glc were quantitatively monitored during fermentation and their ratio was established to be 1:5 (for NH4 Cl: D-Glc). One- and two-step feeding schemes were custom-optimized to enhance isotope incorporation expressing five different E5 miniprotein variants. With the currently optimized protocols we could achieve a 1.5- to 5-fold increase of yields of several miniproteins coupled to a similar magnitude of cost reduction as compared to flask labelling protocols.
Language
dc.language
Angol

dc.rights
Nevezd meg! - Ne add el! CC BY-NC

dc.rights.uri
https://creativecommons.org/licenses/by-nc/4.0/
Title
dc.title
Bacterial fermentation and isotope labelling optimized for amyloidogenic proteins.
Type
dc.type
folyóiratcikk
Date Change
dc.date.updated
2021-08-11T12:19:40Z
Scope
dc.format.page
1107-1119
Doi ID
dc.identifier.doi
10.1111/1751-7915.13778
Wos ID
dc.identifier.wos
000630754700001
ID Scopus
dc.identifier.scopus
85102747789
MTMT ID
dc.identifier.mtmt
31926173
Issue Number
dc.identifier.issue
3
abbreviated journal
dc.identifier.jabbrev
MICROB BIOTECHNOL
Journal
dc.identifier.jtitle
MICROBIAL BIOTECHNOLOGY
Volume Number
dc.identifier.volume
14
Release Date
dc.description.issuedate
2021
Pubmed ID
dc.identifier.pubmed
33739615
department of Author
dc.contributor.institution
Biológia Doktori Iskola
department of Author
dc.contributor.institution
MTA-ELTE Fehérjemodellező Kutatócsoport
department of Author
dc.contributor.institution
Szerkezeti Kémiai és Biológiai Laboratórium (SzBKL)
department of Author
dc.contributor.institution
Hevesy György Kémia Doktori Iskola
department of Author
dc.contributor.institution
Szerves Kémiai Tanszék
department of Author
dc.contributor.institution
Anyagtudományok és Technológiák Doktori Iskola
department of Author
dc.contributor.institution
MTA Támogatott Kutatócsoportok
department of Author
dc.contributor.institution
Határfelületi- és Nanoszerkezetek Laboratóriuma (HNL)
Author institution
dc.contributor.department
Szerkezeti Kémiai és Biológiai Laboratórium (SzBKL)
Author institution
dc.contributor.department
Hevesy György Kémia Doktori Iskola
Author institution
dc.contributor.department
Határfelületi- és Nanoszerkezetek Laboratóriuma (HNL)
Author institution
dc.contributor.department
Hevesy György Kémia Doktori Iskola
Author institution
dc.contributor.department
Szerkezeti Kémiai és Biológiai Laboratórium (SzBKL)
Author institution
dc.contributor.department
Hevesy György Kémia Doktori Iskola
Author institution
dc.contributor.department
MTA-ELTE Fehérjemodellező Kutatócsoport
Author institution
dc.contributor.department
Határfelületi- és Nanoszerkezetek Laboratóriuma (HNL)
Author institution
dc.contributor.department
MTA-ELTE Fehérjemodellező Kutatócsoport
Author institution
dc.contributor.department
Szerkezeti Kémiai és Biológiai Laboratórium (SzBKL)


Files in this item

Bacterial fermentation and isotope labelling optimized for amyloidogenic proteins.
 

This item appears in the following Collection(s)

Show simple item record

Nevezd meg! - Ne add el! CC BY-NC
Except where otherwise noted, this item's license is described as Nevezd meg! - Ne add el! CC BY-NC