EP1994155B2

Polynucleotide and polypeptide sequences involved in the process of bone remodeling

Abstract

This record has no abstract on file.

EP1994155B2, drawing sheet 1
Sheet 1 of 197

Term

0.4 yearsleft in the term

Expires 13 February 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

16 claims: 9 independent, 7 dependent

  1. 1
    A pharmaceutical composition for use in modulating osteoclast differentiation in vivo, preventing bone disease or treating bone disease comprising an isolated polypeptide comprising a sequence selected from the group consisting of:a) SEQ ID NO.: 48, b) a polypeptide encoded by SEQ ID NO.:1. c) a fragment of any one of a) or b) which is able to promote or inhibit osteoclast differentiation, and d) an analog of any one of a) or b) which is able to promote or inhibit osteoclast differentiation, wherein said analog has at least 90% sequence similarity to the polypeptide of a) or b), and a pharmaceutically acceptable carrier.
  2. 2
    A pharmaceutical composition for use in modulating osteoclast differentiation in vivo, preventing bone disease or treating bone disease, the pharmaceutical composition comprising an isolated polynucleotide selected from the group consisting of:a) a polynucleotide comprising SEQ ID NO.:1, b) a polynucleotide comprising the open reading frame of nucleotides 150-1136 of SEQ ID NO.:1, c) a polynucleotide comprising a sequence at least 80% identical overthe entire length of the polynucleotide to a), d) a polynucleotide comprising a sequence at least 90% identical overthe entire length of the polynucleotide to b), e) a polynucleotide comprising a sequence at least 80% complementary over the entire length of the polynucleotide to a), and f) a polynucleotide comprising a sequence at least 90% complementary over the entire length of the polynucleotide to b), and a pharmaceutically acceptable carrier.
  3. 3
    An isolated polynucleotide selected from the group consisting of:a) a polynucleotide comprising SEQ ID NO.:1, b) a polynucleotide comprising the open reading frame of nucleotides 150-1136 of SEQ ID NO.:1, c) a polynucleotide comprising a sequence at least 80% identical overthe entire length of the polynucleotide to a), d) a polynucleotide comprising a sequence at least 90% identical overthe entire length of the polynucleotide to b), e) a polynucleotide comprising a sequence at least 80% complementary over the entire length of the polynucleotide to a), and f) a polynucleotide comprising a sequence at least 90% complementary over the entire length of the polynucleotide to b), for use in modulating osteoclast differentiation in vivo, preventing bone disease or treating a bone disease.
  4. 5
    An isolated polypeptide comprising a sequence selected from the group consisting of:a) SEQ ID NO.: 48, b) a polypeptide encoded by SEQ ID NO.:1, c) a fragment of any one of a) or b) which is able to promote or inhibit osteoclast differentiation, and d) an analog of any one of a) or b) which is able to promote or inhibit osteoclast differentiation, wherein said analog has at least 90% sequence similarity to the polypeptide of a) or b), for use in modulating osteoclast differentiation in vivo, preventing bone disease or treating a bone disease.
  5. 7
    A compound capable of interfering with the activity or expression of a polypeptide selected from SEQ ID NO.:48 or a polypeptide encoded by SEQ ID NO.:1 for use in preventing bone disease or treating a bone disease in an individual in need thereof, wherein said compound is selected from the group consisting of an isolated or purified antibody or antigen-binding fragment thereof capable of specifically binding to a polypeptide consisting of SEQ ID NO.: 48, and an siRNA or shRNA inhibiting specifically expression of a polypeptide encoded by SEQ ID NO.: 1.
  6. 10
    The compound for use in preventing bone disease or treating a bone disease according to any one of claims 7-9, wherein the individual in need of treatment is a mammal, and wherein the bone disease is selected from the group consisting of osteoporosis, osteopenia, osteomalacia, hyperparathyroidism, hyperthyroidism, hypogonadism, thyrotoxicosis, systemic mastocytosis, adult hypophosphatasia, hyperadrenocorticism, osteogenesis imperfecta, Paget's disease, Cushing's disease/syndrome, Turner syndrome, Gaucher disease, Ehlers-Danlos syndrome, Marfan's syndrome, Menkes' syndrome, Fanconi's syndrome, multiple myeloma, hypercalcemia, hypocalcemia, arthritides, periodontal disease, rickets, fibrogenesis imperfecta ossium, osteosclerotic disorders and damage caused by macrophage-mediated inflammatory processes.
  7. 11
    Use of an isolated polynucleotide or isolated polypeptide as defined in any one of claims 3 or 5 in the manufacture of a medicament for modulating osteoclast differentiation in vivo, preventing bone disease or treating a bone disease, or use of a compound as defined in any one of claims 7, 8 or 9 in the manufacture of a medicament for preventing bone disease or treating a bone disease.
  8. 13
    Use of at least one polynucleotide selected from the group consisting of; a) a polynucleotide comprising SEQ ID NO.:1;b) a polynucleotide comprising the open reading frame of nucleotides 150-1136 of SEQ ID NO.:1;c) a polynucleotide comprising a sequence at least 80% identical over the entire length of the polynucleotide to a);d) a polynucleotide comprising a sequence at least 90% identical over the entire length of the polynucleotide to b), e) a polynucleotide comprising a sequence at least 80% complementary over the entire length of the polynucleotide to a), and f) a polynucleotide comprising a sequence at least 90% complementary over the entire length of the polynucleotide to b), in the in vitro diagnosis of a bone disease.
  9. 15
    A method for identifying an inhibitory compound able to impair the expression or function of a polypeptide of SEQ ID NO.:48, or a polypeptide encoded by SEQ ID NO.:1, the method comprising contacting said polypeptide or a cell expressing said polypeptide with a candidate compound and measuring the expression or function of said polypeptide whereby a reduction in the ability of the polypeptide to promote osteoclast differentiation positively identifies a suitable inhibitory compound.