Upregulation of neprilysin (NEP) to reduce Aβ accumulation in the brain is a promising strategy for the prevention of Alzheimer's disease (AD). This report describes the design and synthesis of a quenched fluorogenic peptide substrate qf-Aβ(12-16)AAC (with the sequence VHHQKAAC), which has a fluorophore, Alexa-350, linked to the side-chain of its C-terminal cysteine and a quencher, Dabcyl, linked to its N-terminus. This peptide emitted strong fluorescence upon cleavage. Our results showed that qf-Aβ(12-16)AAC is more sensitive to NEP than the previously reported peptide substrates, so that concentrations of NEP as low as 0.03 nM could be detected at peptide concentration of 2 μM. Moreover, qf-Aβ(12-16)AAC had superior enzymatic specificity ...
Amyloid p peptide (Ap) is a physiological peptide that is constantly catabolized in the brain. We pr...
Background: Aggregation of the amyloid-beta (A beta) peptide is one of the main neuropathological ev...
Since Alois Alzheimer first discovered the pathology of the disease bearing his appellation in 1906,...
<div><p>Upregulation of neprilysin (NEP) to reduce Aβ accumulation in the brain is a promising strat...
[[sponsorship]]生物化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Ga...
<div><p>Neprilysin is a transmembrane zinc metallopeptidase that degrades a wide range of peptide su...
Neprilysin is a transmembrane zinc metallopeptidase that degrades a wide range of peptide substrates...
Contains fulltext : 69861.pdf (publisher's version ) (Closed access)Neprilysin, a ...
Two intramolecularly quenched fluorogenic peptides containing o-aminobenzoyl (Abz) and ethylenediami...
Background Aggregation of the amyloid-β (Aβ) peptide in the brain is one of the key pathological eve...
We developed sensitive substrates for cysteine proteases and specific substrates for serine protease...
The zinc metalloprotease neprilysin (NEP) promiscuously degrades small bioactive peptides. NEP is am...
Our work discusses the investigation of 75 peptide-based drugs with the potential ability to break t...
Proteolytic enzymes constitute around 2% of the human genome and are involved in many stages of cell...
Proteases that degrade the amyloid beta-protein (Abeta) are important regulators of brain Abeta leve...
Amyloid p peptide (Ap) is a physiological peptide that is constantly catabolized in the brain. We pr...
Background: Aggregation of the amyloid-beta (A beta) peptide is one of the main neuropathological ev...
Since Alois Alzheimer first discovered the pathology of the disease bearing his appellation in 1906,...
<div><p>Upregulation of neprilysin (NEP) to reduce Aβ accumulation in the brain is a promising strat...
[[sponsorship]]生物化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Ga...
<div><p>Neprilysin is a transmembrane zinc metallopeptidase that degrades a wide range of peptide su...
Neprilysin is a transmembrane zinc metallopeptidase that degrades a wide range of peptide substrates...
Contains fulltext : 69861.pdf (publisher's version ) (Closed access)Neprilysin, a ...
Two intramolecularly quenched fluorogenic peptides containing o-aminobenzoyl (Abz) and ethylenediami...
Background Aggregation of the amyloid-β (Aβ) peptide in the brain is one of the key pathological eve...
We developed sensitive substrates for cysteine proteases and specific substrates for serine protease...
The zinc metalloprotease neprilysin (NEP) promiscuously degrades small bioactive peptides. NEP is am...
Our work discusses the investigation of 75 peptide-based drugs with the potential ability to break t...
Proteolytic enzymes constitute around 2% of the human genome and are involved in many stages of cell...
Proteases that degrade the amyloid beta-protein (Abeta) are important regulators of brain Abeta leve...
Amyloid p peptide (Ap) is a physiological peptide that is constantly catabolized in the brain. We pr...
Background: Aggregation of the amyloid-beta (A beta) peptide is one of the main neuropathological ev...
Since Alois Alzheimer first discovered the pathology of the disease bearing his appellation in 1906,...