Department of Vascular Medicine, Academic Medical Center, Amsterdam, The Netherlands.
Hum Mutat. 2011 Nov;32(11):1290-8. doi: 10.1002/humu.21578. Epub 2011 Sep 23.
Lecithin:cholesterol acyltransferase (LCAT) is crucial to the maturation of high-density lipoprotein (HDL). Homozygosity for LCAT mutations underlies rare disorders characterized by HDL-cholesterol (HDL-c) deficiency while heterozygotes have half normal HDL-c levels. We studied the prevalence of LCAT mutations in referred patients with low HDL-c to better understand the molecular basis of low HDL-c in our patients. LCAT was sequenced in 98 patients referred for HDL-c <5th percentile and in four patients referred for low HDL-c and corneal opacities. LCAT mutations were highly prevalent: in 28 of the 98 participants (29%), heterozygosity for nonsynonymous mutations was identified while 18 patients carried the same mutation (p.T147I). The four patients with corneal opacity were compound heterozygotes. All previously identified mutations are documented to cause loss of catalytic activity. Nine novel mutations-c.402G>T (p.E134D), c.403T>A (p.Y135N), c.964C>T (p.R322C), c.296G>C (p.W99S), c.736G>T (p.V246F), c.802C>T (p.R268C), c.945G>A (p.W315X), c.1012C>T (p.L338F), and c.1039C>T (p.R347C)--were shown to be functional through in vitro characterization. The effect of several mutations on the core protein structure was studied by a three-dimensional (3D) model. Unlike previous reports, functional mutations in LCAT were found in 29% of patients with low HDL-c, thus constituting a common cause of low HDL-c in referred patients in The Netherlands.
卵磷脂胆固醇酰基转移酶(LCAT)对高密度脂蛋白(HDL)的成熟至关重要。LCAT 突变的纯合子是罕见疾病的基础,这些疾病的特征是 HDL 胆固醇(HDL-c)缺乏,而杂合子的 HDL-c 水平则为正常的一半。我们研究了低 HDL-c 患者中 LCAT 突变的患病率,以更好地了解我们患者中低 HDL-c 的分子基础。在 98 名因 HDL-c<5 百分位数而转介的患者和 4 名因低 HDL-c 和角膜混浊而转介的患者中,对 LCAT 进行了测序。LCAT 突变非常普遍:在 98 名参与者中的 28 名(29%)中,发现了非同义突变的杂合性,而 18 名患者携带相同的突变(p.T147I)。4 名角膜混浊患者为复合杂合子。所有先前确定的突变均记录为导致催化活性丧失。9 种新突变-c.402G>T(p.E134D)、c.403T>A(p.Y135N)、c.964C>T(p.R322C)、c.296G>C(p.W99S)、c.736G>T(p.V246F)、c.802C>T(p.R268C)、c.945G>A(p.W315X)、c.1012C>T(p.L338F)和 c.1039C>T(p.R347C)--通过体外特征证实是功能性的。通过三维(3D)模型研究了几种突变对核心蛋白结构的影响。与以前的报告不同,LCAT 的功能突变在荷兰低 HDL-c 患者中占 29%,因此构成了转介患者低 HDL-c 的常见原因。