Yang Jie, Koruza Katarina, Fisher Zoë, Knecht Wolfgang, Baltzer Lars
Department of Chemistry-BMC, Uppsala University, Husargatan 3, 752 37 Uppsala, Sweden.
Department of Biology & Lund Protein Production Platform (LP3), Lund University, Sölvegatan 35, 22362 Lund, Sweden.
Bioorg Med Chem. 2017 Oct 15;25(20):5838-5848. doi: 10.1016/j.bmc.2017.09.017. Epub 2017 Sep 14.
The small molecule inhibitor acetazolamide (AZM) was conjugated to a set of designed polypeptides and the resulting conjugates were evaluated for their affinity to Human Carbonic Anhydrase II (HCA II) using surface plasmon resonance. The dissociation constant of the AZM-HCA II complex was 38nM and that of the AZM conjugated polypeptide (4-C10L17-AZM) to HCA II was found to be 4nM, an affinity enhancement of a factor of 10 due to polypeptide conjugation. For Human Carbonic Anhydrase IX (HCA IX) the dissociation constant of AZM was 3nM, whereas that of the 4-C10L17-AZM conjugate was 90pM, a 33-fold affinity enhancement. This dramatic affinity increase due to polypeptide conjugation was achieved for a small molecule ligand with an already high affinity to the target protein. This supports the concept that enhancements due to polypeptide conjugation are not limited to small molecule ligands that bind proteins in the mM to μM range but may be used also for nM ligands to provide recognition elements with dissociation constants in the pM range. Evaluations of two HCA IX constructs that do not carry the proteoglycan (PG) domain did not show significant affinity differences between AZM and the polypeptide conjugate, providing evidence that the improved binding of 4-C10L17-AZM to HCA IX emanated from interactions between the polypeptide segment and the PG domain found only in one carbonic anhydrase, HCA IX.
将小分子抑制剂乙酰唑胺(AZM)与一组设计好的多肽缀合,并使用表面等离子体共振评估所得缀合物对人碳酸酐酶II(HCA II)的亲和力。AZM - HCA II复合物的解离常数为38 nM,而AZM缀合多肽(4 - C10L17 - AZM)与HCA II的解离常数为4 nM,由于多肽缀合,亲和力提高了10倍。对于人碳酸酐酶IX(HCA IX),AZM的解离常数为3 nM,而4 - C10L17 - AZM缀合物的解离常数为90 pM,亲和力提高了33倍。对于已经对靶蛋白具有高亲和力的小分子配体,由于多肽缀合实现了这种显著的亲和力增加。这支持了这样一种概念,即由于多肽缀合带来的亲和力增强不仅限于结合蛋白的小分子配体,其亲和力范围在毫摩尔到微摩尔之间,也可用于纳摩尔级配体,以提供解离常数在皮摩尔范围内的识别元件。对两种不携带蛋白聚糖(PG)结构域的HCA IX构建体的评估未显示AZM与多肽缀合物之间存在显著的亲和力差异,这证明4 - C10L17 - AZM与HCA IX结合的改善源于多肽片段与仅在一种碳酸酐酶HCA IX中发现的PG结构域之间的相互作用。