EP0347845A2

Insulin precursors, their preparation, and DNA sequences, expression vehicles and primers and a process for producing human insulin and analogues.

Abstract

The invention relates to insulin precursors having the amino acid sequence B(1-29)-X1-X2-Y2-Y1-A(1-21) wherein B(1-29) are the 29 first amino acid residues of the B chain of human insulin, A(1-21) are the 21 amino acid residues of the A chain of human insulin, X1 represents a peptide bond or one or more amino acid residues, X2 represents Glu or Asp, and Y1 and Y2 each represent Lys or Arg, the positions A6 and A11, A7 and B7 and A20 and B19, respectively, being connected through sulphur bridges, and, optionally, one or more of the amino acid residues of chains B(1-29) and A(1-21) are substituted by another amino acid residue. The insulin precursors are prepared by culturing a yeast strain transformed with a replicable expression vehicle comprising a DNA sequence encoding the insulin precursor and isolating it from the culture medium. The insulin precursors can be converted into human insulin or insulin analogues by enzymatic treatment.

EP0347845A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 20 June 2009, 17.3 years ago.

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13 claims: 6 independent, 7 dependent

  1. 1
    Insulin precursors, characterized by the amino acid sequence B(1-29)-X₁-X₂-Y₂-Y₁-A(1-21) wherein B(1-29) are the 29 first amino acid residues of the B chain of human insulin starting from the N-terminus, A(1-21) are the 21 amino acid residues of the A chain of human insulin, X₁ represents a peptide bond or one or more arbitrary amino acid residues, X₂ represents Glu or Asp, and Y₁ and Y₂ each represent Lys or Arg, the positions A6 and A11, A7 and B7 and A20 and B19, respectively, are connected through sulphur bridges, and, if desired, one or more of the amino acid residues of the chains B(1-29) and A(1-21) are substituted by another amino acid residue.
  2. 4
    Insulin precursors of one of claims 1-3, characterized in that one or more of the glutamic acid residues in the positions A4, A17, B13 and B21 are substituted by another amino acid residue having an uncharged side chain.
  3. 5
    DNA sequence, characterized by encoding an insulin precursor of one of claims 1-4.
  4. 8
    A process for the production of des-(B30)-insulin, characterized in that an insulin precursor according to one of claims 1 - 4 is converted into des-(B30)-­insulin by tryptic digestion.
  5. 10
    A process for the production of human insulin or insulin analogues, characterized in that an insulin precursor according to one of claims 1-4, is converted into human insulin or an insulin analogue by enzymatic treatment.
  6. 13
    Use of the insulin precursors according to one of claims 1-4 for preparing human or animal insulin and derivatives thereof.