Redwood Bioscience, 5703 Hollis Street, Emeryville, California 94608, United States.
Bioconjug Chem. 2013 Jun 19;24(6):846-51. doi: 10.1021/bc400042a. Epub 2013 Jun 3.
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.
醛基和酮基功能化的生物分子在生化和生物技术领域得到了广泛的应用。它们通常在酸性条件下与酰肼或氨氧基亲核试剂发生反应,生成腙或肟产物,这些产物相对稳定,但随着时间的推移容易水解。我们引入了一种新的反应,即肼基-Pictet-Spengler(HIPS)连接,它与腙和肟连接相比具有两个明显的优势。首先,HIPS 连接在接近中性 pH 值的条件下快速进行,允许在温和条件下一步标记醛基化蛋白质。其次,与肟连接的缀合物(约 1 天)相比,HIPS 连接产物在人血浆中非常稳定(>5 天),通过 ELISA 监测蛋白质-荧光团缀合物来证明。因此,HIPS 连接在接近中性 pH 值时表现出产物稳定性和速度的结合,这是当前羰基生物缀合化学无可比拟的。