Activated collagen scaffold materials and their special fused active restoration factors
Provided are activated collagen scaffold materials as well as their special fused active restoration factors useful for promoting tissue repair, such as bone damage repair or nerve injury repair. The special fused active restoration factors are fusion proteins comprising a collagen-binding domain (CBD) at N-/C-terminus of cytokines, wherein the collagen-binding domain is a polypeptide consisting of 7-27 amino acid residues with a conservative sequence shown in SEQ ID NO:1 at N-terminus.
1. A fusion protein comprising a collagen binding domain fused to the amino terminus or the carboxyl terminus of a cytokine, wherein the collagen binding domain is a polypeptide consisting of 7-27 amino acid residues, wherein the first 7 amino acid residues from its amino terminal are set forth in SEQ ID NO: 1.
2. The fusion protein according to claim 1 , wherein the cytokine is Bone morphogenetic protein 2 (BMP2), Bone morphogenetic protein 3 (BMP3), Platelet derived growth factor (PDGF), Fibroblast growth factor (FGF), Epidermal growth factor (EGF), Transforming growth factor (TGF), Vascular endothelial growth factor (VEGF), Nerve growth factor (NGF), or Neurotrophin3/4 (NT3/4).
3. The fusion protein according to claim 1 , wherein the cytokine is BMP2, PDGF, Basic Fibroblast growth Factor (bFGF), or NGF-β.
4. The fusion protein according to claim 3 , wherein the amino acid sequence of the fusion protein is SEQ ID NO: 2.
5. The fusion protein according to claim 3 , wherein the amino acid sequence of the fusion protein is SEQ ID NO: 4, SEQ ID NO: 8 or SEQ ID NO: 12.
6. The fusion protein according to claim 1 , wherein the amino terminus of the fusion protein is linked to a histidine-affinity tag sequence consisting of 6 histidine residues.
7. An activated collagen restoration material which is a collagen loaded with the fusion protein according to claim 1 .
8. The collagen restoration material according to claim 7 , wherein the loading quantity of the fusion protein is 1-4000 pmol protein/mg collagen.
9. A method for expressing a fusion protein comprising: constructing a recombinant expression vector containing a nucleic acid that encodes the fusion protein of claim 1 ; transforming the constructed recombinant expression vector into a host cell; culturing the host cell to express the fusion protein; and obtaining the fusion protein.
10. The method according to claim 9 , wherein the initial vector for constructing the recombinant expression vector is pET-28a, pET-28b, pET-28c, pET-21a(+) or pET-30a.
11. The method according to claim 9 , wherein the recombinant expression vector is pET-28a-BMP2-h, pET-CBD-NGF, pET-CBD-PDGF or pET-CBD-bFGF.
12. The method according to claim 9 , wherein the host is E. coli BL21(DE3), E. coli BL21(DE3)plys, E. coli BLR(DE3) or E. coli B834, and the recombinant strain constructed with E. coli BL21(DE3) as a host is BL21(DE3)-pET-28a-BMP2-h, BL21(DE3)-pET-CBD-NGF, BL21(DE3)-pET-CBD-PDGF or BL21(DE3)-pET-CBD-bFGF.
13. The method according to claim 9 , wherein IPTG inducer is added at a concentration of 0.8-1.2 mmol/L when culturing the recombinant E. coli host, at a culturing temperature of 35-39° C. for an induction period of 2-4 hours.
14. A method of preparing a restoration material for animal tissues comprising the step of activating a collagen scaffold material with the fusion protein of claim 1 .
15. The method according to claim 14 , wherein the restoration material for animal tissues is injury restoration material, nerve injury restoration material, or bone damage restoration material.