生物结合
试剂
半胱氨酸
化学
组合化学
结合
硫醇
荧光团
合理设计
有机化学
生物化学
荧光
纳米技术
材料科学
酶
物理
数学分析
量子力学
数学
作者
Barbara Bernardim,Pedro M. S. D. Cal,María João Matos,Bruno L. Oliveira,Nuria Martínez‐Sáez,Inês S. Albuquerque,Elizabeth Perkins,Francisco Corzana,Antonio C. B. Burtoloso,Gonzalo Jiménez‐Osés,Gonçalo J. L. Bernardes
摘要
Maleimides remain the reagents of choice for the preparation of therapeutic and imaging protein conjugates despite the known instability of the resulting products that undergo thiol-exchange reactions in vivo. Here we present the rational design of carbonylacrylic reagents for chemoselective cysteine bioconjugation. These reagents undergo rapid thiol Michael-addition under biocompatible conditions in stoichiometric amounts. When using carbonylacrylic reagents equipped with PEG or fluorophore moieties, this method enables access to protein and antibody conjugates precisely modified at pre-determined sites. Importantly, the conjugates formed are resistant to degradation in plasma and are biologically functional, as demonstrated by the selective imaging and detection of apoptotic and HER2+ cells, respectively. The straightforward preparation, stoichiometric use and exquisite cysteine selectivity of the carbonylacrylic reagents combined with the stability of the products and the availability of biologically relevant cysteine-tagged proteins make this method suitable for the routine preparation of chemically defined conjugates for in vivo applications.
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