EP2159288A2

Multi-gene expression constructs containing modified inteins

Abstract

Methods and constructs for the introduction of multiple genes into plants using a single transformation event are described. Constructs contain a single 5' promoter operably linked to DNA encoding a modified intein splicing unit. The splicing unit is expressed as a polyprotein and consists of a first protein fused to an intein fused to a second protein. The splicing unit has been engineered to promote excision of all non-essential components in the polyprotein but prevent the ligation reactions normally associated with protein splicing. Additional genetic elements encoding inteins and additional proteins can be fused in frame to the 5'-terminus of the coding regions for the second protein to form a construct for expression of more than two proteins. A single 3' termination sequence, such as a polyadenylation sequence when the construct is to be expressed in eucaryotic cells, follows the last coding sequence. These methods and constructs are particularly useful for creating plants with stacked input traits, illustrated by glyphosate tolerant plants producing BT toxin, and/or value added products, illustrated by the production of polyhydroxyalkanoates in plants.

EP2159288A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 9 February 2021, 5.6 years ago.

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29 claims: 7 independent, 22 dependent

  1. 1
    A DNA construct for expression of multiple gene products in a cell, the DNA construct comprising a cassette that consists of the features shown, in the 5' to 3' direction, in the following formula:(i)-(ii)-[(iii)-(iv)]n-(v) (a) wherein: (i) is a single promoter at the 5' end of the cassette, (ii) is a DNA sequence that encodes an N-terminal extein protein, (iii) is a DNA sequence that encodes an intein, (iv) is a DNA sequence that encodes a C-terminal extein protein, and (v) is a 3' non-coding region that is operable as a transcription termination sequence, (b) wherein n is an integer of one or more, (c) wherein (ii)-[(iii)-(iv)] n as shown in the above formula together encode a modified intein splicing unit that is expressed as a single precursor polyprotein and which catalyzes excision of the exteins from the or each intein, and prevents ligation of the exteins, and (d) wherein the expression of the modified intein splicing unit in the cell results in the production of extein proteins that have no alteration compared to the native amino acid sequences of the proteins encoded by the exteins, or that have no alteration to the native amino acid sequences of the proteins encoded by the exteins except optionally for one modified N-terminal residue.
  2. 14
    The DNA construct of any preceding claim wherein the modified intein splicing unit comprises extein sequences that encode enzymes that catalyse different steps in a metabolic pathway.
  3. 18
    A method of expressing multiple genes in cells comprising transforming the cells with the construct of any one of claims 1-17, wherein the cells are selected from the group consisting of bacterial and eucaryotic cells, such as cells selected from the group consisting of mammalian cells, plant cells and yeast cells, wherein if the cells are eukaryotic cells then the transcription termination sequence comprises a polyadenylation signal at the 3' end of the construct, and wherein if the cells are animal cells then the method is an in vitro method.
  4. 19
    A cell producing recombinant proteins comprising the construct of any of claims 1-17, wherein the recombinant proteins have amino acid sequences that have no alteration compared to the native amino acid sequences of the proteins encoded by the exteins, or that have no alteration to the native amino acid sequences of the proteins encoded by the exteins except optionally for one modified N-terminal residue.
  5. 26
    A DNA construct comprising:a) a single plant-specific promoter at the 5' end of the construct, b) a first coding region downstream of the plant-specific promoter;c) an intein sequence fused to the 3' end of the first coding region and to the 5' end of a second coding region;and d) a transcription termination sequence;wherein the first coding region, intein sequence and second coding region together encode a modified intein splicing unit that is expressed as a single precursor polyprotein and which catalyzes excision of the protein sequences encoded by first and second coding regions from the intein, and prevents ligation of the protein sequences encoded by first and second coding regions;and wherein the expression of the modified intein splicing unit in a plant cell results in the production of extein proteins that have no alteration to the native amino acid sequences of the proteins encoded by the exteins, or that have no alteration to the native amino acid sequences of the proteins encoded by the exteins except optionally for one modified N-terminal residue.
  6. 28
    A plant cell comprising a construct as defined by Claim 26.
  7. 29
    The use of a DNA sequence that encodes a modified intein for coordinated multi-protein expression in eukaryotes, wherein the modified intein catalyzes the excision of exteins from the intein, and prevents ligation of the excised exteins.