Difference between revisions of "Part:BBa K929102:Design"
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__NOTOC__ | __NOTOC__ | ||
<partinfo>BBa_K929102 short</partinfo> | <partinfo>BBa_K929102 short</partinfo> | ||
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Part BBa_K929107 was used as template. | Part BBa_K929107 was used as template. | ||
+ | ===Source=== | ||
+ | Signal peptide: human Ig kappa chain V-I region taken from UniProt P01601[1-22], gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)<br> | ||
− | + | Nanobody: anti-GFP nanobody taken from Protein Data Bank(PDB: 3OGO), gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)<br> | |
− | + | Fc domain: human immunoglobulin gamma-1 heavy chain constant region taken from GenBank: J00228.1 (UniProt: P01857), gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)<br> | |
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===References=== | ===References=== | ||
+ | Kubala MH, Kovtun O, Alexandrov K, Collins BM. (2010) Structural and thermodynamic analysis of the GFP:GFP-nanobody complex. Protein Sci; 19, 2389-401 |
Latest revision as of 11:22, 24 September 2012
Anti-GFP Nanobody with IgG kappa signal peptide and IgG1 Fc domain
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]
Design Notes
Part BBa_K929107 was used as template.
Source
Signal peptide: human Ig kappa chain V-I region taken from UniProt P01601[1-22], gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)
Nanobody: anti-GFP nanobody taken from Protein Data Bank(PDB: 3OGO), gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)
Fc domain: human immunoglobulin gamma-1 heavy chain constant region taken from GenBank: J00228.1 (UniProt: P01857), gene synthesis by GeneArt, optimized for expression in CHO cells (Cricetulus griseus)
References
Kubala MH, Kovtun O, Alexandrov K, Collins BM. (2010) Structural and thermodynamic analysis of the GFP:GFP-nanobody complex. Protein Sci; 19, 2389-401