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在两个无关的家族性脂蛋白脂肪酶缺乏症家族中,脂蛋白脂肪酶基因存在错义突变(Asp250----Asn)。

A missense (Asp250----Asn) mutation in the lipoprotein lipase gene in two unrelated families with familial lipoprotein lipase deficiency.

作者信息

Ishimura-Oka K, Semenkovich C F, Faustinella F, Goldberg I J, Shachter N, Smith L C, Coleman T, Hide W A, Brown W V, Oka K

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, TX 77030.

出版信息

J Lipid Res. 1992 May;33(5):745-54.

PMID:1619366
Abstract

We have identified the molecular basis for familial lipoprotein lipase (LPL) deficiency in two unrelated families with the syndrome of familial hyperchylomicronemia. All 10 exons of the LPL gene were amplified from the two probands' genomic DNA by polymerase chain reaction. In family 1 of French descent, direct sequencing of the amplification products revealed that the patient was heterozygous for two missense mutations, Gly188----Glu (in exon 5) and Asp250----Asn (in exon 6). In family 2 of Italian descent, sequencing of multiple amplification products cloned in plasmids indicated that the patient was a compound heterozygote harboring two mutations, Arg243----His and Asp250----Asn, both in exon 6. Studies using polymerase chain reaction, restriction enzyme digestion (the Gly188----Glu mutation disrupts an Ava II site, the Arg243----His mutation, a Hha I site, and the Asp250----Asn mutation, a Taq I site), and allele-specific oligonucleotide hybridization confirmed that the patients were indeed compound heterozygous for the respective mutations. LPL constructs carrying the three mutations were expressed individually in Cos cells. All three mutant LPLs were synthesized and secreted efficiently; one (Asp250----Asn) had minimal (approximately 5%) catalytic activity and the other two were totally inactive. The three mutations occurred in highly conserved regions of the LPL gene. The fact that the newly identified Asp250----Asn mutation produced an almost totally inactive LPL and the location of this residue with respect to the three-dimensional structure of the highly homologous human pancreatic lipase suggest that Asp250 may be involved in a charge interaction with an alpha-helix in the amino terminal region of LPL. The occurrence of this mutation in two unrelated families of different ancestries (French and Italian) indicates either two independent mutational events affecting unrelated individuals or a common shared ancestral allele. Screening for the Asp250----Asn mutation should be included in future genetic epidemiology studies on LPL deficiency and familial combined hyperlipidemia.

摘要

我们已经在两个患有家族性高乳糜微粒血症综合征的不相关家族中确定了家族性脂蛋白脂肪酶(LPL)缺乏症的分子基础。通过聚合酶链反应从两名先证者的基因组DNA中扩增出LPL基因的所有10个外显子。在法裔家族1中,对扩增产物进行直接测序发现,该患者为两个错义突变的杂合子,即 Gly188→Glu(在外显子5中)和Asp250→Asn(在外显子6中)。在意裔家族2中,对克隆到质粒中的多个扩增产物进行测序表明,该患者是一个复合杂合子,在外显子6中携带两个突变,即Arg243→His和Asp250→Asn。使用聚合酶链反应、限制性内切酶消化(Gly188→Glu突变破坏了一个Ava II位点,Arg243→His突变破坏了一个Hha I位点,Asp250→Asn突变破坏了一个Taq I位点)以及等位基因特异性寡核苷酸杂交的研究证实,患者确实是各自突变的复合杂合子。携带这三种突变的LPL构建体分别在Cos细胞中表达。所有三种突变型LPL均能有效合成并分泌;其中一种(Asp250→Asn)具有最小(约5%)的催化活性,另外两种则完全无活性。这三种突变发生在LPL基因的高度保守区域。新发现的Asp250→Asn突变产生了几乎完全无活性的LPL,以及该残基相对于高度同源的人胰脂肪酶三维结构的位置,这表明Asp250可能参与了与LPL氨基末端区域α-螺旋的电荷相互作用。这种突变在两个不同血统(法国和意大利)的不相关家族中出现,表明要么是影响不相关个体的两个独立突变事件,要么是一个共同的祖先等位基因。在未来关于LPL缺乏症和家族性混合性高脂血症的遗传流行病学研究中,应包括对Asp250→Asn突变的筛查。

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