Structural modeling of mutant α-glucosidases resulting in a processing/transport defect in Pompe disease

被引:18
作者
Sugawara, Kanako [1 ,2 ]
Saito, Seiji [3 ]
Sekijima, Masakazu [4 ]
Ohno, Kazuki [5 ]
Tajima, Youichi [6 ]
Kroos, Marian A. [7 ]
Reuser, Arnold J. J. [7 ]
Sakuraba, Hitoshi [1 ,2 ]
机构
[1] Meiji Pharmaceut Univ, Dept Analyt Biochem, Tokyo 2048588, Japan
[2] Meiji Pharmaceut Univ, Dept Clin Genet, Tokyo 2048588, Japan
[3] Univ Tokyo, Dept Biotechnol, Grad Sch Agr & Life Sci, Tokyo, Japan
[4] Natl Inst Adv Ind Sci & Technol, Computat Biol Res Ctr, Tokyo, Japan
[5] NPO Promot Res Intellectual Property Tokyo, Tokyo, Japan
[6] Tokyo Metropolitan Org Med Res, Tokyo Metropolitan Inst Med Sci, Translat Res Project, Tokyo, Japan
[7] Erasmus MC, Dept Clin Genet, Rotterdam, Netherlands
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
acid alpha-glucosidase; acid maltase deficiency; glycogen storage disease type II; pompe disease; processing defect; transport defect; AMINO-ACID SUBSTITUTIONS; SPANISH PATIENTS; FABRY-DISEASE; MUTATIONS; PROTEINS; INSIGHT; ENERGY; GENE; PHOSPHORYLATION; CONSEQUENCES;
D O I
10.1038/jhg.2009.32
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
To elucidate the mechanism underlying transport and processing defects from the viewpoint of enzyme folding, we constructed three-dimensional models of human acid a-glucosidase encompassing 27 relevant amino acid substitutions by means of homology modeling. Then, we determined in each separate case the number of affected atoms, the root-mean-square distance value and the solvent-accessible surface area value. The analysis revealed that the amino acid substitutions causing a processing or transport defect responsible for Pompe disease were widely spread over all of the five domains comprising the acid a-glucosidase. They were distributed from the core to the surface of the enzyme molecule, and the predicted structural changes varied from large to very small. Among the structural changes, we paid particular attention to G377R and G483R. These two substitutions are predicted to cause electrostatic changes in neighboring small regions on the molecular surface. The quality control system of the endoplasmic reticulum apparently detects these very small structural changes and degrades the mutant enzyme precursor (G377R), but also the cellular sorting system might be misled by these minor changes whereby the precursor is secreted instead of being transported to lysosomes (G483R). Journal of Human Genetics (2009) 54, 324-330; doi:10.1038/jhg.2009.32; published online 3 April 2009
引用
收藏
页码:324 / 330
页数:7
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