Efficient Production and Characterization of Recombinant Human NELL1 Protein in Human Embryonic Kidney 293-F Cells

被引:0
作者
Ai Hasebe
Hiroki Tashima
Teruhiko Ide
Masumi Iijima
Nobuo Yoshimoto
Kang Ting
Shun’ichi Kuroda
Tomoaki Niimi
机构
[1] Nagoya University,Graduate School of Bioagricultural Sciences
[2] University of California Los Angeles,Dental and Craniofacial Research Institute
来源
Molecular Biotechnology | 2012年 / 51卷
关键词
NELL-1; Osteoblast differentiation; Bone regeneration; Extracellular matrix;
D O I
暂无
中图分类号
学科分类号
摘要
NELL1 is a secretory protein that induces osteogenic differentiation and bone formation by osteoblastic cells. Because of its potent osteoinductive activity, NELL1 may be useful for bone regeneration therapy. However, at present, we have little knowledge regarding NELL1 receptors and NELL1-mediated signaling pathways. We have previously produced NELL1 using an insect’s cell expression system; however, the protein was relatively unstable and was degraded by proteases released from dead cells. In the present study, NELL1 protein was expressed in human embryonic kidney 293-F cells. Stable cell lines expressing NELL1 fused to a C-terminal hexahistidine-tag were obtained by G418 selection of transfected cells. Cells grown in serum-free medium showed high levels of NELL1 protein production (approximately 4 mg/l cell culture) for up to 6 months. NELL1 protein was purified from culture medium using a one-step nickel-chelate affinity chromatography protocol. Purified NELL1 protein immobilized onto culture dishes induced the expression of both early and late osteogenic markers on mouse mesenchymal C3H10T1/2 cells. When NELL1-expressing 293-F cells were grown on gelatin-coated glass cover slips, recombinant NELL1 was deposited in the extracellular matrix after detachment of cells. These results suggest that NELL1 acts as an extracellular matrix component. Recombinant NELL1 formed multimers and was glycosylated. An abundant source of functionally active NELL1 protein will be useful for more advanced studies, such as the development of novel techniques for bone regeneration.
引用
收藏
页码:58 / 66
页数:8
相关论文
共 249 条
[1]  
Zhang X(2010)The role of NELL-1, a growth factor associated with craniosynostosis, in promoting bone regeneration Journal of Dental Research 89 865-878
[2]  
Zara J(1999)Human NELL-1 expressed in unilateral coronal synostosis Journal of Bone and Mineral Research 14 80-89
[3]  
Siu RK(2002)Craniosynostosis in transgenic mice overexpressing Nell-1 Journal of Clinical Investigation 110 861-870
[4]  
Ting K(2006)Nell1-deficient mice have reduced expression of extracellular matrix proteins causing cranial and vertebral defects Human Molecular Genetics 15 1329-1341
[5]  
Soo C(2006)Nell-1-induced bone regeneration in calvarial defects American Journal of Pathology 169 903-915
[6]  
Ting K(2008)Involvement of MAPK signaling molecules and Runx2 in the NELL1-induced osteoblastic differentiation FEBS Letters 582 365-371
[7]  
Vastardis H(1999)Biochemical characterization and expression analysis of neural thrombospondin-1-like proteins NELL1 and NELL2 Biochemical and Biophysical Research Communications 265 79-86
[8]  
Mulliken JB(2006)Nell-1 induced bone formation within the distracted intermaxillary suture Bone 38 48-58
[9]  
Soo C(2006)Nell-1 induces acrania-like cranioskeletal deformities during mouse embryonic development Laboratory Investigation 86 633-644
[10]  
Tieu A(2007)A study of the role of nell-1 gene modified goat bone marrow stromal cells in promoting new bone formation Molecular Therapy 15 1872-1880