聚糖
噬菌体
计算生物学
化学
生物
遗传学
基因
大肠杆菌
糖蛋白
作者
Mirat Sojitra,Susmita Sarkar,Jasmine Maghera,Emily Rodrigues,Eric Carpenter,Shaurya Seth,Daniel Ferrer Vinals,Nicholas J. Bennett,Revathi Reddy,Amira Khalil,Xiaochao Xue,Michael R. Bell,Ruixiang Blake Zheng,Ping Zhang,Corwin M. Nycholat,Justin J. Bailey,Chang‐Chun Ling,Todd L. Lowary,James C. Paulson,Matthew S. Macauley
标识
DOI:10.1038/s41589-021-00788-5
摘要
The central dogma of biology does not allow for the study of glycans using DNA sequencing. We report a liquid glycan array (LiGA) platform comprising a library of DNA 'barcoded' M13 virions that display 30–1,500 copies of glycans per phage. A LiGA is synthesized by acylation of the phage pVIII protein with a dibenzocyclooctyne, followed by ligation of azido-modified glycans. Pulldown of the LiGA with lectins followed by deep sequencing of the barcodes in the bound phage decodes the optimal structure and density of the recognized glycans. The LiGA is target agnostic and can measure the glycan-binding profile of lectins, such as CD22, on cells in vitro and immune cells in a live mouse. From a mixture of multivalent glycan probes, LiGAs identify the glycoconjugates with optimal avidity necessary for binding to lectins on living cells in vitro and in vivo. Liquid glycan arrays (LiGAs), presented on M13 bacteriophage surface proteins through bioorthogonal chemistry, link surface glycans to genetic barcodes in phage DNA, enabling lectin–glycan interaction profiling by DNA sequencing.
科研通智能强力驱动
Strongly Powered by AbleSci AI