凝集素
计算生物学
C型凝集素
半乳糖
生物
生物化学
化学
作者
Daiki Terada,Arnout Voet,Hideyuki Noguchi,Kenichi Kamata,Mio Ohki,Christine Addy,Yuki Fujii,Daiki Yamamoto,Yasuhiro Ozeki,Jeremy R. H. Tame,Kam Y. J. Zhang
标识
DOI:10.1038/s41598-017-06332-7
摘要
Abstract Computational protein design has advanced very rapidly over the last decade, but there remain few examples of artificial proteins with direct medical applications. This study describes a new artificial β -trefoil lectin that recognises Burkitt’s lymphoma cells, and which was designed with the intention of finding a basis for novel cancer treatments or diagnostics. The new protein, called “Mitsuba”, is based on the structure of the natural shellfish lectin MytiLec-1, a member of a small lectin family that uses unique sequence motifs to bind α -D-galactose. The three subdomains of MytiLec-1 each carry one galactose binding site, and the 149-residue protein forms a tight dimer in solution. Mitsuba (meaning “three-leaf” in Japanese) was created by symmetry constraining the structure of a MytiLec-1 subunit, resulting in a 150-residue sequence that contains three identical tandem repeats. Mitsuba-1 was expressed and crystallised to confirm the X-ray structure matches the predicted model. Mitsuba-1 recognises cancer cells that express globotriose (Gal α (1,4)Gal β (1,4)Glc) on the surface, but the cytotoxicity is abolished.
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