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February 18, 2011SHILAP Revista de lepidopterología1,527 citationsOpen Access

A Modular Cloning System for Standardized Assembly of Multigene Constructs

EWE. WeberCECarola EnglerRGRamona Gruetzner

Key Points

  • Develop a standardized, hierarchical modular cloning system to assemble complex multigene eukaryotic constructs efficiently from basic genetic parts.
  • Utilized type IIS restriction enzymes to enable directional, one-pot assembly of multiple DNA fragments in a predefined linear order.
  • Established a hierarchical framework (MoClo) to assemble basic regulatory and coding modules into multigene transcription units across successive cloning tiers.
  • Constructed a 33 kb DNA molecule encoding 11 transcription units assembled from 44 individual basic modules in three successive cloning steps.
  • Demonstrated a high-efficiency cloning strategy suitable for automation in gene stacking and metabolic engineering pipelines.

Abstract

The field of synthetic biology promises to revolutionize biotechnology through the design of organisms with novel phenotypes useful for medicine, agriculture and industry. However, a limiting factor is the ability of current methods to assemble complex DNA molecules encoding multiple genetic elements in various predefined arrangements. We present here a hierarchical modular cloning system that allows the creation at will and with high efficiency of any eukaryotic multigene construct, starting from libraries of defined and validated basic modules containing regulatory and coding sequences. This system is based on the ability of type IIS restriction enzymes to assemble multiple DNA fragments in a defined linear order. We constructed a 33 kb DNA molecule containing 11 transcription units made from 44 individual basic modules in only three successive cloning steps. This modular cloning (MoClo) system can be readily automated and will be extremely useful for applications such as gene stacking and metabolic engineering.

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Cite This Study

Weber et al. (2011) studied this question.

synapsesocial.com/papers/69d78d156cc86f5f11b8a3echttps://doi.org/10.1371/journal.pone.0016765
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