Fang Yinzhi, Zhang Han, Huang Zhen, Scinto Samuel L, Yang Jeffrey C, Am Ende Christopher W, Dmitrenko Olga, Johnson Douglas S, Fox Joseph M
Brown Laboratories , Department of Chemistry and Biochemistry , University of Delaware , Newark , DE 19716 , USA . Email:
Pfizer Worldwide Research and Development , Cambridge , Massachusetts 02139 , USA.
Chem Sci. 2018 Jan 8;9(7):1953-1963. doi: 10.1039/c7sc04773h. eCollection 2018 Feb 21.
A photochemical synthesis of AgNO complexes of -cycloheptene (TCH) and -1-sila-4-cycloheptene (Si-TCH) derivatives is described. A low temperature flow photoreactor was designed to enable the synthesis of carbocyclic TCH derivatives due to their thermal sensitivity in the absence of metal coordination. Unlike the free carbocycles, TCH·AgNO complexes can be handled at rt and stored for weeks in the freezer (-18 °C). Si-TCH·AgNO complexes are especially robust, and are bench stable for days at rt, and for months in the freezer. X-ray crystallography was used to characterize a Si-TCH·AgNO complex for the first time. With decomplexation of AgNO, metal-free TCO and Si-TCH derivatives can engage in a range of cycloaddition reactions as well as dihydroxylation reactions. Computation was used to predict that Si-TCH would engage in bioorthogonal reactions that are more rapid than the most reactive -cyclooctenes. Metal-free Si-TCH derivatives were shown to display good stability in solution, and to engage in the fastest bioorthogonal reaction reported to date ( 1.14 × 10 M s in 9 : 1 HO : MeOH). Utility in bioorthogonal protein labeling in live cells is described, including labeling of GFP with an unnatural tetrazine-containing amino acid. The reactivity and specificity of the Si-TCH reagents with tetrazines in live mammalian cells was also evaluated using the HaloTag platform. The cell labeling experiments show that Si-TCH derivatives are best suited as probe molecules in the cellular environment.
描述了一种光化学合成 - 环庚烯(TCH)和 -1-硅杂-4-环庚烯(Si-TCH)衍生物的AgNO配合物的方法。设计了一种低温流动光反应器,以实现碳环TCH衍生物的合成,因为它们在没有金属配位的情况下具有热敏感性。与游离碳环不同,TCH·AgNO配合物可以在室温下处理,并在冷冻室(-18°C)中储存数周。Si-TCH·AgNO配合物特别稳定,在室温下可在实验台上稳定保存数天,在冷冻室中可保存数月。首次使用X射线晶体学对Si-TCH·AgNO配合物进行了表征。随着AgNO的解络合,无金属的TCO和Si-TCH衍生物可以参与一系列环加成反应以及二羟基化反应。通过计算预测Si-TCH将参与比最具反应性的 - 环辛烯更快的生物正交反应。结果表明,无金属的Si-TCH衍生物在溶液中显示出良好的稳定性,并参与了迄今为止报道的最快的生物正交反应(在9:1的H₂O:MeOH中为1.14×10⁻⁴ M⁻¹ s⁻¹)。描述了其在活细胞中生物正交蛋白质标记中的应用,包括用含非天然四嗪的氨基酸标记绿色荧光蛋白(GFP)。还使用HaloTag平台评估了Si-TCH试剂与活哺乳动物细胞中四嗪的反应性和特异性。细胞标记实验表明,Si-TCH衍生物最适合作为细胞环境中的探针分子。