Nova Patents
EP0459630A2

Polypeptides.

Abstract

Derivatives of naturally occurring G-CSF having at least one of the biological properties of naturally occurring G-CSF, and a solution stability of at least 35% at 5 mg/ml are disclosed in which the derivative has at least Cys¹⁷ of the native sequence replaced by a Ser¹⁷ residue and Asp²⁷ of the native sequence replaced by a Ser²⁷ residue. Nucleotide sequences coding for part or all of the amino acid sequence of the derivatives of the invention may be incorporated into autonomously replicating plasmid or viral vectors employed to transform or transfect suitable procaryotic or eucaryotic host cells such as bacteria, yeast or vertebrate cells in culture.

EP0459630A2, drawing sheet 1
Sheet 1 of 50

Term

Term ended

Projected expiry passed 29 April 2011, 15.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

15 claims: 12 independent, 3 dependent

  1. 1
    A derivative of naturally occurring G-CSF having at least one of the biological properties of naturally occurring G-CSF and a solution stability (as herein defined) of at least 35% at 5 mg/ml, the said derivative having at least Cys¹⁷ of the native sequence replaced by a Ser¹⁷ residue and Asp²⁷ of the native sequence replaced by a Ser²⁷ residue.
  2. 4
    A derivative as claimed in any one of the preceeding claims selected from:- [Arg¹¹,Ser 17,27,6O,65 ]hu G-CSF;[Glu¹⁵,Ser 17,27 ,Ala 26,28 ,Lys 3O ]hu G-CSF;[Arg¹¹,Glu¹⁵,Ser 17,27,6O,65 ,Ala 26,28 ,Lys 3O ]hu G-CSF;[Arg 11,165 Glu¹⁵ Ser 17,27,6O,65 Ala 26,28 ,Lys 3O,58 ]hu G-CSF;[Arg 11,23 ,Ser 17,27,6O,65 ]hu G-CSF;[Arg 11,4O ,Ser 17,27,6O,65 ]hu G-CSF;[Glu 15,111 ,Ser 17,27,6O,65,115,116 ,Ala 26,28 Lys 3O ]hu G-CSF [Ala¹,Thr³,Tyr⁴,Arg 5,11 ,Ser 17,27,6O,65 ]hu G-CSF [Glu¹⁵,Ser 17,27 ,Ala 26,28 ,Arg 3O ]hu G-CSF [Ser 17,27,6O,65 ]hu G-CSF [Arg¹¹,Ser 17,27,65 ]hu G-CSF [Ser 17,27,65 ]hu G-CSF said derivative, if desired having a presequence methionine.
  3. 5
    A DNA sequence encoding all or part of the amino acid sequence of a derivative as claimed in any one of the preceding claims.
  4. 6
    A recombinant vector containing a DNA sequence as defined in claim 5.
  5. 7
    A process for the preparation of a recombinant vector as defined in claim 6 which comprises inserting a DNA sequence as defined in claim 5 into a vector.
  6. 8
    A procaryotic or eucaryotic host cell stably transformed or transfected with a recombinant vector as defined in claim 6.
  7. 9
    A process for the preparation of a procaryotic or eucaryotic host cell as defined in claim 8 which comprises transforming or transfecting a procaryotic or eucaroytic cell with a recombinant vector as defined in claim 6 whereby to yield a stably transformed or transfected procaryotic or eucaryotic host.
  8. 10
    A process for the preparation of a derivative of naturally occurring G-CSF as defined in any one of claims 1 to 4 which comprises culturing a procaryotic or eucaryotic host cell as defined in claim 8 whereby to obtain said derivative.
  9. 11
    A pharmaceutical composition comprising as active ingredient at least one derivative of naturally occurring G-CSF as claimed in any one of claims 1 to 4 in association with a pharmaceutically aceeptable carrier or excipient.
  10. 12
    A method for providing haematopoietic therapy to a mammal which comprises administering an effective amount of a derivative as claimed in any one of claims 1 to 4.
  11. 13
    A method for arresting the proliferation of leukaemic cells which comprises administering an effective amount of a derivative as defined in any of claims 1 to 4.
  12. 14
    A process for extracting a derivative as claimed in any one of claims 1 to 4 from an inclusion body thereof which comprises 1) suspending said inclusion body in a detergent, 2) oxidation, 3) removal of detergent and 4) maintaining the solution obtained following removal of detergent at an elevated temperature whereby to precipitate contaminating bacterial protein, product oligomers and/or degradation products, whilst retaining said derivative in solution in active form.