Department of Pharmaceutical Chemistry and the Cardiovascular Research Institute, University of California San Francisco, 555 Mission Bay Boulevard South, San Francisco, California 94158, USA.
Chem Commun (Camb). 2022 Jun 14;58(48):6861-6864. doi: 10.1039/d2cc01902g.
The introduction of new covalent bonds into proteins is affording novel avenues for protein research and applications, yet it remains difficult to generate covalent linkages at all possible sites and across diverse protein classes. Herein, we genetically encoded -fluorosulfate-L-tyrosine (mFSY) to selectively react with lysine, tyrosine, and histidine proximity-enabled SuFEx reaction. mFSY was able to target residues that were elusive for previous unnatural amino acids, and permitted engineering of various proteins including affibody, nanobody, and Fab into covalent binders that irreversibly cross-linked EGFR and HER2. mFSY is thus valuable for developing covalent proteins for biological research, synthetic biology, and biotherapeutics.
将新的共价键引入蛋白质为蛋白质研究和应用开辟了新的途径,但要在所有可能的位置和不同的蛋白质类别中生成共价键仍然很困难。在此,我们通过遗传编码 -氟磺酰基-L-酪氨酸(mFSY)来选择性地与赖氨酸、酪氨酸和组氨酸反应,实现了近场辅助的 SuFEx 反应。mFSY 能够靶向以前非天然氨基酸难以接近的残基,并使各种蛋白质(包括亲和体、纳米体和 Fab)工程化为共价结合物,不可逆地交联 EGFR 和 HER2。因此,mFSY 对于开发用于生物研究、合成生物学和生物治疗的共价蛋白质具有重要价值。