Difference between revisions of "Part:BBa K4165187"
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This part encodes an Amyloid 𝛽 peptide which has the ability to bind to A𝛽 plaques inside the brain. | This part encodes an Amyloid 𝛽 peptide which has the ability to bind to A𝛽 plaques inside the brain. | ||
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===Usage and Biology=== | ===Usage and Biology=== | ||
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+ | This peptide was designed for a specific 4 aa sequence in the hydrophobic core of Aß N-terminal (LVFF), its ability of inhibition lies in the presence of a proline residue which prevents its assembly into beta sheet form. Several modifications have been applied to this peptide to enhance its function, it was proved to have an inhibitory effect both in vitro and in vivo by eliminating neurotoxicity of fibrils and blocking their formation inside the brain. | ||
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<partinfo>BBa_K4165187 parameters</partinfo> | <partinfo>BBa_K4165187 parameters</partinfo> | ||
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+ | ===Reference=== | ||
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+ | Soto, C., Sigurdsson, E., Morelli, L. et al. β-sheet breaker peptides inhibit fibrillogenesis in a rat brain model of amyloidosis: Implications for Alzheimer's therapy. Nat Med 4, 822–826 (1998). https://doi.org/10.1038/nm0798-822 |
Revision as of 15:23, 6 October 2022
Amyloid beta peptide 7 (CLPFFD)
This part encodes an Amyloid 𝛽 peptide which has the ability to bind to A𝛽 plaques inside the brain.
Usage and Biology
This peptide was designed for a specific 4 aa sequence in the hydrophobic core of Aß N-terminal (LVFF), its ability of inhibition lies in the presence of a proline residue which prevents its assembly into beta sheet form. Several modifications have been applied to this peptide to enhance its function, it was proved to have an inhibitory effect both in vitro and in vivo by eliminating neurotoxicity of fibrils and blocking their formation inside the brain.
Sequence and Features
- 10COMPATIBLE WITH RFC[10]
- 12COMPATIBLE WITH RFC[12]
- 21COMPATIBLE WITH RFC[21]
- 23COMPATIBLE WITH RFC[23]
- 25COMPATIBLE WITH RFC[25]
- 1000COMPATIBLE WITH RFC[1000]
Reference
Soto, C., Sigurdsson, E., Morelli, L. et al. β-sheet breaker peptides inhibit fibrillogenesis in a rat brain model of amyloidosis: Implications for Alzheimer's therapy. Nat Med 4, 822–826 (1998). https://doi.org/10.1038/nm0798-822