Sandbox Ben Whiteside: Difference between revisions
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Pramlintide is a synthetic analog of amylin that is commonly used in accordance with mealtime insulin to help treat type 1 and 2 diabetic patients. This drug binds to AMYR competitively, increasing the AMYR GPCR signaling. Increased action of the AMYR receptor has been shown to modestly lower HbA1c levels, which is often accompanied by weight loss (cite 5). Pramlintide binds with more affinity than amylin due to mutations from hydrophobic residues A29, S28, S29, and S37 to proline. The proline residues increase the rigidity of the ligand by creating unfavorable phi and psi angles, which improves the ability of the ligand to bind AMYR. Pramlintide treatment has also been shown to consistently reduce Amyloid β plaque aggregation in rodent models with Alzheimer’s disease (Gingell et al. 2014) | Pramlintide is a synthetic analog of amylin that is commonly used in accordance with mealtime insulin to help treat type 1 and 2 diabetic patients. This drug binds to AMYR competitively, increasing the AMYR GPCR signaling. Increased action of the AMYR receptor has been shown to modestly lower HbA1c levels, which is often accompanied by weight loss (cite 5). Pramlintide binds with more affinity than amylin due to mutations from hydrophobic residues A29, S28, S29, and S37 to proline. The proline residues increase the rigidity of the ligand by creating unfavorable phi and psi angles, which improves the ability of the ligand to bind AMYR. Pramlintide treatment has also been shown to consistently reduce Amyloid β plaque aggregation in rodent models with Alzheimer’s disease (Gingell et al. 2014) | ||
It has been thought that missense mutations (BLUE LINK) in residues C2 and C7 of the amylin peptide could lead to an increased risk of Alzheimer's Disease (CITE). Because of the rigidity these cysteine resides provide, reductions of their disulfide interaction leads to an increased risk of amyloid plaques. During drug design, pharmaceutical companies have focused on maintaining amylin residues, conserving C2 and C7, as well as K1, which forms a acts as a hydrogen bond donor for the E294 side chain and <scene name='10/ | It has been thought that missense mutations (BLUE LINK) in residues C2 and C7 of the amylin peptide could lead to an increased risk of Alzheimer's Disease (CITE). Because of the rigidity these cysteine resides provide, reductions of their disulfide interaction leads to an increased risk of amyloid plaques. During drug design, pharmaceutical companies have focused on maintaining amylin residues, conserving C2 and C7, as well as K1, which forms a acts as a hydrogen bond donor for the E294 side chain and <scene name='10/1038828/N_term_disulfidenew/1'>Main Chain Carbonyls</scene>. Additionally, pharmaceuticals companies have also opted to maintain residues <scene name='10/1038819/Amidated_c_term/9'>Y37 and T36</scene>, which are critical residues in stabilizing the C terminus of amylin to the receptor binding site. | ||
[[Image:align.png|300px|left|thumb|Figure 3:Amylin (green) aligned with Pramlintide (red)]] | [[Image:align.png|300px|left|thumb|Figure 3:Amylin (green) aligned with Pramlintide (red)]] | ||
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Revision as of 20:39, 24 April 2024
AMYR
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References
Student Contributors
Andrew Helmerich,Mathias Vander Eide, Ben Whiteside

