Seed-specific expression of spider silk protein multimers causes long-term stability

Seeds enable plants to germinate and to grow in situations of limited availability of nutrients. The stable storage of different seed proteins is a remarkable presumption for successful germination and growth. These strategies have been adapted and used in several molecular farming projects. In this...

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Main Authors: Nicola eWeichert, Valeska eHauptmann, Christine eHelmold, Udo eConrad
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-01-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00006/full
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spelling doaj-8560741818044d5b8d9df67796b2b14d2020-11-24T20:59:14ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2016-01-01710.3389/fpls.2016.00006172280Seed-specific expression of spider silk protein multimers causes long-term stabilityNicola eWeichert0Valeska eHauptmann1Christine eHelmold2Udo eConrad3IPK GaterslebenIPK GaterslebenIPK GaterslebenIPK GaterslebenSeeds enable plants to germinate and to grow in situations of limited availability of nutrients. The stable storage of different seed proteins is a remarkable presumption for successful germination and growth. These strategies have been adapted and used in several molecular farming projects. In this study, we explore the benefits of seed-based expression to produce the high molecular weight spider silk protein FLAG using intein-based trans-splicing. Multimers larger than 460 kDa in size are routinely produced, which is above the native size of the FLAG protein. The storage of seeds for eight weeks and one year at an ambient temperature of 15°C does not influence the accumulation level. Even the extended storage time does not influence the typical pattern of multimerized bands. These results show that seeds are the method of choice for stable accumulation of products of complex transgenes and have the capability for long-term storage at moderate conditions, an important feature for the development of suitable downstream processes.http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00006/fullTobaccointeinprotein trans-splicingSeed expressionSpider silk proteins
collection DOAJ
language English
format Article
sources DOAJ
author Nicola eWeichert
Valeska eHauptmann
Christine eHelmold
Udo eConrad
spellingShingle Nicola eWeichert
Valeska eHauptmann
Christine eHelmold
Udo eConrad
Seed-specific expression of spider silk protein multimers causes long-term stability
Frontiers in Plant Science
Tobacco
intein
protein trans-splicing
Seed expression
Spider silk proteins
author_facet Nicola eWeichert
Valeska eHauptmann
Christine eHelmold
Udo eConrad
author_sort Nicola eWeichert
title Seed-specific expression of spider silk protein multimers causes long-term stability
title_short Seed-specific expression of spider silk protein multimers causes long-term stability
title_full Seed-specific expression of spider silk protein multimers causes long-term stability
title_fullStr Seed-specific expression of spider silk protein multimers causes long-term stability
title_full_unstemmed Seed-specific expression of spider silk protein multimers causes long-term stability
title_sort seed-specific expression of spider silk protein multimers causes long-term stability
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2016-01-01
description Seeds enable plants to germinate and to grow in situations of limited availability of nutrients. The stable storage of different seed proteins is a remarkable presumption for successful germination and growth. These strategies have been adapted and used in several molecular farming projects. In this study, we explore the benefits of seed-based expression to produce the high molecular weight spider silk protein FLAG using intein-based trans-splicing. Multimers larger than 460 kDa in size are routinely produced, which is above the native size of the FLAG protein. The storage of seeds for eight weeks and one year at an ambient temperature of 15°C does not influence the accumulation level. Even the extended storage time does not influence the typical pattern of multimerized bands. These results show that seeds are the method of choice for stable accumulation of products of complex transgenes and have the capability for long-term storage at moderate conditions, an important feature for the development of suitable downstream processes.
topic Tobacco
intein
protein trans-splicing
Seed expression
Spider silk proteins
url http://journal.frontiersin.org/Journal/10.3389/fpls.2016.00006/full
work_keys_str_mv AT nicolaeweichert seedspecificexpressionofspidersilkproteinmultimerscauseslongtermstability
AT valeskaehauptmann seedspecificexpressionofspidersilkproteinmultimerscauseslongtermstability
AT christineehelmold seedspecificexpressionofspidersilkproteinmultimerscauseslongtermstability
AT udoeconrad seedspecificexpressionofspidersilkproteinmultimerscauseslongtermstability
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