Faithful Expression of Multiple Proteins via 2A-Peptide Self-Processing: A Versatile and Reliable Method for Manipulating Brain Circuits

Точная экспрессия нескольких белков посредством самопроцессинга 2A-пептида: универсальный и надёжный метод манипуляции нейронными контурами мозга
Wannan Tang, Ingrid Ehrlich, Steffen B. E. Wolff, Annette Michalski, Stefan Wölfl, Mazahir T. Hasan, Andreas Lüthi, Rolf Sprengel
2009-07-08

2A-peptide self-processingbrain circuit manipulationinternal ribosomal entry sitemultiprotein coexpressionneurons in vivo
A method allowing for efficient and quantitative coexpression of multiple heterologous proteins in neurons in vivo would be highly valuable for many applications in neuroscience. To date, different approaches, such as internal ribosomal entry site (IRES) elements ([Douin et al., 2004][1]),
1
It focuses on 2A-peptide self-processing as a versatile and reliable strategy for expressing multiple proteins from a single construct.
2
The abstract contrasts this approach with existing strategies, including internal ribosomal entry site (IRES) elements.
3
The method is intended to support precise manipulation and investigation of brain circuits.
4
The paper addresses the need for efficient, quantitative coexpression of multiple heterologous proteins in neurons in vivo.

in vivo neuronal expression systems for coexpressing multiple heterologous proteins

the efficiency, quantitative fidelity, and reliability of 2A-peptide self-processing for coordinated multiple-protein expression and brain-circuit manipulation

Publication Details
Publication Date
2009-07-08
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Wannan Tang
Ingrid Ehrlich
Steffen B. E. Wolff
Annette Michalski
Stefan Wölfl
Mazahir T. Hasan
Andreas Lüthi
Rolf Sprengel
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%