We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vectors compatible with both traditional and Golden Gate cloning, utilizing the Type IIS restriction enzyme Esp3I, and have demonstrated its use for Golden Gate cloning in Escherichia coli. Ideal for synthetic biology and other applications, this modular system allows a rapid, low-cost assembly of new vectors tailored to specific tasks. Using the principles outlined here, new modules (e.g., origin of replication for plasmids in other bacteria) can easily be designed for specific applications. It is hoped that this vector construction system will be expanded by the scientific community over time by creation of novel modules through an open source ap...
We developed a generic method for high-throughput cloning in bacteria that are less amenable to conv...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Background: As engineered biological systems become more complex, it is increasingly common to expre...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
Bacillus subtilis combines natural competence for genetic transformation with highly efficient homol...
Here we present a modification of the widely used pET29 expression vector for use in rapid and strai...
Preparation of expression vectors using conventional cloning strategies is laborious and not suitabl...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
© 2020 The Authors.Robust synthetic biology applications rely heavily on the design and assembly of ...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
Robust synthetic biology applications rely heavily on the design and assembly of DNA parts with spec...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
Synthetic Biology requires efficient and versatile DNA assembly systems to facilitate the building o...
We developed a generic method for high-throughput cloning in bacteria that are less amenable to conv...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Background: As engineered biological systems become more complex, it is increasingly common to expre...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
We present a Bacterial Expression Vector Archive (BEVA) for the modular assembly of bacterial vector...
Bacillus subtilis combines natural competence for genetic transformation with highly efficient homol...
Here we present a modification of the widely used pET29 expression vector for use in rapid and strai...
Preparation of expression vectors using conventional cloning strategies is laborious and not suitabl...
The Golden Gate (GG) modular assembly approach offers a standardized, inexpensive and reliable way t...
© 2020 The Authors.Robust synthetic biology applications rely heavily on the design and assembly of ...
Assembling composite DNA modules from custom DNA parts has become routine due to recent technologica...
Robust synthetic biology applications rely heavily on the design and assembly of DNA parts with spec...
<div><p>Standardized DNA assembly strategies facilitate the generation of multigene constructs from ...
Standardized DNA assembly strategies facilitate the generation of multigene constructs from collecti...
Synthetic Biology requires efficient and versatile DNA assembly systems to facilitate the building o...
We developed a generic method for high-throughput cloning in bacteria that are less amenable to conv...
Molecular cloning is a crucial technique in genetic engineering that enables the precise design of s...
Background: As engineered biological systems become more complex, it is increasingly common to expre...