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环糊精介导的酸性β-葡萄糖苷酶与两亲性双环去氧野尻霉素类似物复合物的结晶。

Cyclodextrin-mediated crystallization of acid β-glucosidase in complex with amphiphilic bicyclic nojirimycin analogues.

机构信息

Department of Structural Biology, Weizmann Institute of Science, Rehovot, 76100, Israel.

出版信息

Org Biomol Chem. 2011 Jun 7;9(11):4160-7. doi: 10.1039/c1ob05200d. Epub 2011 Apr 11.

DOI:10.1039/c1ob05200d
PMID:21483943
Abstract

Cyclodextrin-based host-guest chemistry has been exploited to facilitate co-crystallization of recombinant human acid β-glucosidase (β-glucocerebrosidase, GlcCerase) with amphiphilic bicyclic nojirimycin analogues of the sp(2)-iminosugar type. Attempts to co-crystallize GlcCerase with 5-N,6-O-[N'-(n-octyl)iminomethylidene]nojirimycin (NOI-NJ) or with 5-N,6-S-[N'-(n-octyl)iminomethylidene]-6-thionojirimycin (6S-NOI-NJ), two potent inhibitors of the enzyme with promising pharmacological chaperone activity for several Gaucher disease-associated mutations, were unsuccessful probably due to the formation of aggregates that increase the heterogeneity of the sample and affect nucleation and growth of crystals. Cyclomaltoheptaose (β-cyclodextrin, βCD) efficiently captures NOI-NJ and 6S-NOI-NJ in aqueous media to form inclusion complexes in which the lipophilic tail is accommodated in the hydrophobic cavity of the cyclooligosaccharide. The dissociation constant of the complex of the amphiphilic sp(2)-iminosugars with βCD is two orders of magnitude higher than that of the corresponding complex with GlcCerase, allowing the efficient transfer of the inhibitor from the βCD cavity to the GlcCerase active site. Enzyme-inhibitor complexes suitable for X-ray analysis were thus grown in the presence of βCD. In contrast to what was previously observed for the complex of GlcCerase with the more basic derivative, 6-amino-6-deoxy-5-N,6-N-[N'-(n-octyl)iminomethylidene]nojirimycin (6N-NOI-NJ), the β-anomers of both NOI-NJ and 6S-NOI-NJ were seen in the active site, even though the α-anomer was exclusively detected both in aqueous solution and in the corresponding βCD:sp(2)-iminosugar complexes. Our results further suggest that cyclodextrin derivatives might serve as suitable delivery systems of amphiphilic glycosidase inhibitors in a biomedical context.

摘要

环糊精主体客体化学已被用于促进重组人酸性β-葡糖苷酶(β-葡糖苷脑苷脂酶,GlcCerase)与两亲双环诺伊糖类似物的共结晶,这些类似物是 sp(2)-亚氨基糖型的。尝试将 GlcCerase 与 5-N,6-O-[N'-(正辛基)亚氨基甲叉基]诺伊糖(NOI-NJ)或 5-N,6-S-[N'-(正辛基)亚氨基甲叉基]-6-硫代诺伊糖(6S-NOI-NJ)共结晶,这两种酶的有效抑制剂具有潜在的药理伴侣活性,可用于几种戈谢病相关突变,由于形成了增加样品异质性并影响晶体成核和生长的聚集体,因此未能成功。环麦芽七糖(β-环糊精,βCD)在水介质中有效地捕获 NOI-NJ 和 6S-NOI-NJ,形成包含复合物,其中亲脂性尾巴容纳在环寡糖的疏水性腔中。两亲性 sp(2)-亚氨基糖与βCD 的复合物的离解常数比与 GlcCerase 的复合物高两个数量级,允许抑制剂从βCD 腔有效地转移到 GlcCerase 活性部位。因此,在βCD 的存在下生长适合 X 射线分析的酶-抑制剂复合物。与以前观察到的 GlcCerase 与更碱性衍生物 6-氨基-6-脱氧-5-N,6-N-[N'-(正辛基)亚氨基甲叉基]诺伊糖(6N-NOI-NJ)复合物的情况相反,NOI-NJ 和 6S-NOI-NJ 的β-异构体都在活性部位中观察到,尽管在水溶液中和相应的βCD:sp(2)-亚氨基糖复合物中仅检测到α-异构体。我们的结果进一步表明,环糊精衍生物可能在生物医学背景下作为两亲性糖苷酶抑制剂的合适输送系统。

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