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一种人类载脂蛋白A-I变体(其中单个赖氨酸残基缺失)导致卵磷脂:胆固醇酰基转移酶异常激活。

Abnormal lecithin:cholesterol acyltransferase activation by a human apolipoprotein A-I variant in which a single lysine residue is deleted.

作者信息

Rall S C, Weisgraber K H, Mahley R W, Ogawa Y, Fielding C J, Utermann G, Haas J, Steinmetz A, Menzel H J, Assmann G

出版信息

J Biol Chem. 1984 Aug 25;259(16):10063-70.

PMID:6432779
Abstract

An apolipoprotein (apo) A-I variant that has a relative charge of -1 compared to normal apo-A-I on isoelectric focusing gels has been identified in five unrelated families as a result of screening a large number of individuals. The cause of the electrophoretic abnormality has been examined by analyzing the variant apo-A-I structure. The evidence suggests that a single amino acid, lysine 107, has been deleted in the variant apo-A-I of all affected individuals studied from these families, with the remainder of the variant apo-A-I sequence being unaffected. The deletion of this single basic amino acid residue is sufficient to account for the charge difference between the variant and normal apo-A-I as seen on isoelectric focusing gels. This variant, previously referred to as A-I-Marburg or A-I-Münster-2, can now be designated by the structural abnormality apo-A-I(Lys107----0). The evidence from extensive pedigree analysis suggests the likelihood that the deletion mutant gene is allelic to the normal apo-A-I gene. At the same time, the kindred analyses have failed to yield a lipid abnormality that can be unequivocally related to the presence of this deletion mutant of apo-A-I. However, all subjects expressing apo-A-I(Lys107----0) also express normal apo-A-I, so that any abnormality caused by the variant apo-A-I might be adequately compensated for by the normal apo-A-I. To examine directly the functional consequence of the lysine deletion, the isolated variant was tested in vitro for its ability to activate lecithin:cholesterol acyltransferase, the principal cholesterol-esterifying enzyme in plasma. It was found that apo-A-I(Lys107----0) is deficient in its ability to activate lecithin:cholesterol acyltransferase, having only 40-60% of the cofactor activity of normal apo-A-I. The cofactor activity of the pro-apo-A-I component of the variant was also reduced to about 60% of either normal A-I or normal pro-apo-A-I. The functional defect is probably related to a disruption in the secondary and/or tertiary structure of the protein caused by the deletion of lysine 107 in the primary structure.

摘要

通过对大量个体进行筛查,在五个无亲缘关系的家族中发现了一种载脂蛋白(apo)A-I变体,在等电聚焦凝胶上,该变体与正常apo-A-I相比,相对电荷为-1。通过分析变体apo-A-I的结构,研究了电泳异常的原因。证据表明,在来自这些家族的所有受影响个体的变体apo-A-I中,单个氨基酸赖氨酸107已被删除,而变体apo-A-I序列的其余部分未受影响。在等电聚焦凝胶上,这个单一碱性氨基酸残基的缺失足以解释变体与正常apo-A-I之间的电荷差异。这种变体以前被称为A-I-马尔堡或A-I-明斯特-2,现在可以根据结构异常命名为apo-A-I(Lys107→0)。广泛的系谱分析证据表明,缺失突变基因与正常apo-A-I基因等位的可能性。同时,家系分析未能发现与这种apo-A-I缺失突变体存在明确相关的脂质异常。然而,所有表达apo-A-I(Lys107→0)的受试者也表达正常的apo-A-I,因此变体apo-A-I引起的任何异常可能会被正常的apo-A-I充分补偿。为了直接检测赖氨酸缺失的功能后果,对分离出的变体进行体外测试,以检测其激活卵磷脂:胆固醇酰基转移酶的能力,该酶是血浆中主要的胆固醇酯化酶。发现apo-A-I(Lys107→0)激活卵磷脂:胆固醇酰基转移酶的能力不足,其辅因子活性仅为正常apo-A-I的40%-60%。该变体的前体apo-A-I成分的辅因子活性也降低到正常A-I或正常前体apo-A-I的约60%。功能缺陷可能与一级结构中赖氨酸107的缺失导致蛋白质二级和/或三级结构破坏有关。

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