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The position of lysine controls the catechol-mediated surface adhesion and cohesion in underwater mussel adhesion

J Colloid Interface Sci.. 2019; 
Shin M1, Shin JY2, Kim K1, Yang B1, Han JW1, Kim NK3, Cha HJ4.
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Codon Optimization … 2.4. Preparation of Dopa-incorporated bioengineered proteins. The gene for fp-3F of Mytilus<br> californianus and their redesigned genes were chemically synthesized (<b>Genscript</b>, Piscataway,<br> NJ, USA) with codon optimization considering Escherichia coli codon usage … Get A Quote

摘要

Intensive studies have found that 3,4-dihydroxyphenylalanine (Dopa) is one of the key molecules for underwater mussel adhesion. Although basic mechanisms of mussel adhesion have been elucidated, little is known about how mussels control the balance between surface adhesion and cohesion, which is critical for successful adhesion without peeling and/or tearing. In this work, we focused on lysine (Lys) molecules which are frequently flanked to Dopa residues in interfacial adhesive proteins, specifically their synergy and anti-synergy on surface adhesion and cohesion. Three model peptides were designed to characterize flanking Lys effects. Through nano-mechanistic analyses, we found that flanking Lys enhanced surfa... More

关键词

Dopa; Flanking lysine; Mussel adhesion; Mussel adhesive proteins; Underwater adhesion