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1
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J Clin Invest. 1999 Mar;103(6):817-23. doi: 10.1172/JCI5168.
2
Perinatal lethal phenotype with generalized ichthyosis in a type 2 Gaucher disease patient with the [L444P;E326K]/P182L genotype: effect of the E326K change in neonatal and classic forms of the disease.一名患有[L444P;E326K]/P182L基因型的2型戈谢病患者出现伴有全身性鱼鳞病的围产期致死表型:E326K突变在该疾病新生儿型和经典型中的作用
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3
Functional analysis of 13 GBA mutant alleles identified in Gaucher disease patients: Pathogenic changes and "modifier" polymorphisms.对在戈谢病患者中鉴定出的13个GBA突变等位基因的功能分析:致病变化和“修饰”多态性。
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Glucocerebrosidase gene mutations in patients with type 2 Gaucher disease.2型戈谢病患者的葡萄糖脑苷脂酶基因突变
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7
Gaucher's disease: identification of novel mutant alleles and genotype-phenotype relationships.戈谢病:新型突变等位基因的鉴定及基因型-表型关系
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8
The E326K mutation and Gaucher disease: mutation or polymorphism?E326K突变与戈谢病:突变还是多态性?
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Analyses of catalytic activity and inhibitor binding of human acid beta-glucosidase by site-directed mutagenesis. Identification of residues critical to catalysis and evidence for causality of two Ashkenazi Jewish Gaucher disease type 1 mutations.通过定点诱变分析人酸性β-葡萄糖苷酶的催化活性和抑制剂结合。确定对催化至关重要的残基,并为两种1型阿什肯纳兹犹太戈谢病突变的因果关系提供证据。
J Biol Chem. 1990 Apr 25;265(12):6827-35.
10
Identification and expression of acid beta-glucosidase mutations causing severe type 1 and neurologic type 2 Gaucher disease in non-Jewish patients.非犹太患者中导致严重1型和神经2型戈谢病的酸性β-葡萄糖苷酶突变的鉴定与表达
J Clin Invest. 1997 May 15;99(10):2530-7. doi: 10.1172/JCI119437.

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Gba1 E326K renders motor and non-motor symptoms with pathological α-synuclein, tau and glial activation.Gba1 E326K会引发运动和非运动症状,并伴有病理性α-突触核蛋白、tau蛋白和神经胶质激活。
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Characterization of Brain Lysosomal Activities in GBA-Related and Sporadic Parkinson's Disease and Dementia with Lewy Bodies.脑溶酶体活性在 GBA 相关帕金森病和路易体痴呆症及散发性中的特征。
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本文引用的文献

1
Genotypic heterogeneity and phenotypic variation among patients with type 2 Gaucher's disease.2型戈谢病患者的基因型异质性和表型变异。
Pediatr Res. 1998 May;43(5):571-8. doi: 10.1203/00006450-199805000-00003.
2
Gaucher's disease: genetic counselling and population screening.戈谢病:遗传咨询与群体筛查
Baillieres Clin Haematol. 1997 Dec;10(4):779-92. doi: 10.1016/s0950-3536(97)80040-6.
3
Gaucher's disease: clinical features and natural history.戈谢病:临床特征与自然病史。
Baillieres Clin Haematol. 1997 Dec;10(4):657-89. doi: 10.1016/s0950-3536(97)80033-9.
4
Gaucher's disease: molecular, genetic and enzymological aspects.戈谢病:分子、遗传及酶学方面
Baillieres Clin Haematol. 1997 Dec;10(4):635-56. doi: 10.1016/s0950-3536(97)80032-7.
5
Mice with type 2 and 3 Gaucher disease point mutations generated by a single insertion mutagenesis procedure.通过单一插入诱变程序产生2型和3型戈谢病点突变的小鼠。
Proc Natl Acad Sci U S A. 1998 Mar 3;95(5):2503-8. doi: 10.1073/pnas.95.5.2503.
6
Prenatal lethality of a homozygous null mutation in the human glucocerebrosidase gene.人类葡萄糖脑苷脂酶基因纯合无效突变的产前致死性。
Am J Med Genet. 1997 Nov 28;73(1):41-7. doi: 10.1002/(sici)1096-8628(19971128)73:1<41::aid-ajmg9>3.0.co;2-s.
7
New perspectives in type 2 Gaucher disease.2型戈谢病的新视角
Adv Pediatr. 1997;44:73-107.
8
Expression of mutated glucocerebrosidase alleles in human cells.突变型葡萄糖脑苷脂酶等位基因在人类细胞中的表达。
Hum Mol Genet. 1997 Jun;6(6):887-95. doi: 10.1093/hmg/6.6.887.
9
Identification and expression of acid beta-glucosidase mutations causing severe type 1 and neurologic type 2 Gaucher disease in non-Jewish patients.非犹太患者中导致严重1型和神经2型戈谢病的酸性β-葡萄糖苷酶突变的鉴定与表达
J Clin Invest. 1997 May 15;99(10):2530-7. doi: 10.1172/JCI119437.
10
Charged residues in transmembrane domains II and XI of a vesicular monoamine transporter form a charge pair that promotes high affinity substrate recognition.囊泡单胺转运体跨膜结构域II和XI中的带电残基形成一个电荷对,该电荷对促进高亲和力底物识别。
J Biol Chem. 1997 Feb 28;272(9):5403-8. doi: 10.1074/jbc.272.9.5403.

导致轻度1型和重度2型戈谢病的非假基因衍生的复杂酸性β-葡萄糖苷酶突变

Non-pseudogene-derived complex acid beta-glucosidase mutations causing mild type 1 and severe type 2 gaucher disease.

作者信息

Grace M E, Ashton-Prolla P, Pastores G M, Soni A, Desnick R J

机构信息

Department of Human Genetics, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

J Clin Invest. 1999 Mar;103(6):817-23. doi: 10.1172/JCI5168.

DOI:10.1172/JCI5168
PMID:10079102
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC408142/
Abstract

Gaucher disease is an autosomal recessive inborn error of glycosphingolipid metabolism caused by the deficient activity of the lysosomal hydrolase, acid beta-glucosidase. Three phenotypically distinct subtypes result from different acid beta-glucosidase mutations encoding enzymes with absent or low activity. A severe neonatal type 2 variant who presented with collodion skin, ichthyosis, and a rapid neurodegenerative course had two novel acid beta-glucosidase alleles: a complex, maternally derived allele, E326K+L444P, and a paternally inherited nonsense mutation, E233X. Because the only other non-pseudogene-derived complex allele, D140H+E326K, also had the E326K lesion and was reported in a mild type 1 patient with a D140H+E326K/K157Q genotype, these complex alleles and their individual mutations were expressed and characterized. Because the E233X mutation expressed no activity and the K157Q allele had approximately 1% normal specific activity based on cross-reacting immunologic material (CRIM SA) in the baculovirus system, the residual activity in both patients was primarily from their complex alleles. In the type 1 patient, the D140H+E326K allele was neuroprotective, encoding an enzyme with a catalytic efficiency similar to that of the N370S enzyme. In contrast, the E326K+L444P allele did not have sufficient activity to protect against the neurologic manifestations and, in combination with the inactive E233X lesion, resulted in the severe neonatal type 2 variant. Thus, characterization of these novel genotypes with non-pseudogene-derived complex mutations provided the pathogenic basis for their diverse phenotypes.

摘要

戈谢病是一种常染色体隐性遗传性糖鞘脂代谢紊乱疾病,由溶酶体水解酶酸性β-葡萄糖苷酶活性缺乏所致。三种表型不同的亚型是由编码无活性或低活性酶的不同酸性β-葡萄糖苷酶突变引起的。一名患有火棉胶样皮肤、鱼鳞病且神经退行性病程进展迅速的严重新生儿2型变异患者,有两个新的酸性β-葡萄糖苷酶等位基因:一个复杂的、源自母亲的等位基因E326K + L444P,以及一个源自父亲的无义突变E233X。由于唯一另一个非假基因衍生的复杂等位基因D140H + E326K也有E326K病变,且在一名基因型为D140H + E326K/K157Q的轻度1型患者中被报道,因此对这些复杂等位基因及其单个突变进行了表达和特征分析。由于E233X突变无活性表达,且基于杆状病毒系统中的交叉反应免疫物质(CRIM SA),K157Q等位基因具有约1%的正常比活性,因此两名患者的残余活性主要来自其复杂等位基因。在1型患者中,D140H + E326K等位基因具有神经保护作用,编码一种催化效率与N370S酶相似的酶。相比之下,E326K + L444P等位基因没有足够的活性来预防神经表现,并且与无活性的E233X病变相结合,导致了严重的新生儿2型变异。因此,对这些具有非假基因衍生复杂突变的新基因型进行特征分析,为其多样的表型提供了致病基础。