化学
腙
肟
结合
酰肼
生物结合
醛
组合化学
共轭体系
结扎
荧光团
化学结扎
生物分子
水解
有机化学
催化作用
荧光
生物化学
肽
物理
数学分析
分子生物学
生物
量子力学
聚合物
数学
作者
Paresh Agarwal,Romas Kudirka,Aaron E. Albers,Robyn M. Barfield,Gregory W. de Hart,Penelope M. Drake,Lesley Jones,David Rabuka
摘要
Aldehyde- and ketone-functionalized biomolecules have found widespread use in biochemical and biotechnological fields. They are typically conjugated with hydrazide or aminooxy nucleophiles under acidic conditions to yield hydrazone or oxime products that are relatively stable, but susceptible to hydrolysis over time. We introduce a new reaction, the hydrazino-Pictet-Spengler (HIPS) ligation, which has two distinct advantages over hydrazone and oxime ligations. First, the HIPS ligation proceeds quickly near neutral pH, allowing for one-step labeling of aldehyde-functionalized proteins under mild conditions. Second, the HIPS ligation product is very stable (>5 days) in human plasma relative to an oxime-linked conjugate (∼1 day), as demonstrated by monitoring protein-fluorophore conjugates by ELISA. Thus, the HIPS ligation exhibits a combination of product stability and speed near neutral pH that is unparalleled by current carbonyl bioconjugation chemistries.
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