Wimplinger Isabella, Shaw Gary M, Kutsche Kerstin
Institut für Humangenetik, Universitätsklinikum Hamburg-Eppendorf, Hamburg, Germany.
Mol Vis. 2007 Aug 27;13:1475-82.
To analyze if mutations in HCCS, encoding the mitochondrial holocytochrome c-type synthase, are associated with phenotypes other than the microphthalmia with linear skin defects (MLS) syndrome, including severe eye malformations such as microphthalmia and/or anophthalmia. In addition, we investigated the impact of the p.E159K missense mutation on sorting of HCCS to mitochondria and its functional integrity.
In a cohort of 27 females obtained from a population-based study on infants and fetuses with congenital eye malformations we performed mutation analysis of HCCS by PCR amplification of the coding exons and direct sequencing. The X-inactivation pattern was determined by analyzing the methylation pattern at the AR locus in one patient. For functional analysis of the identified missense mutation, we transfected CHO-K1 cells with wild-type HCCS or HCCS E159K mutant construct and analyzed subcellular localization of the expressed proteins by immunofluorescence analysis and confocal microscopy. Functional integrity of the mutated HCCS protein was investigated by complementation studies in yeast. Therefore, we ectopically expressed HCCS wild type and the E159K mutant in the S. cerevisiae strain B-8025, carrying a deletion of the HCCS ortholog CYC3, and analyzed the capacity of the yeast strain to grow on nonfermentable carbon sources.
We detected the heterozygous c.475G>A mutation in exon 5 of HCCS, predicting an amino acid substitution of the highly conserved glutamate at position 159 by lysine, in a female presenting with bilateral microphthalmia and sclerocornea. This point mutation was not found on more than 460 X chromosomes. We identified a skewed X-inactivation in the patient's peripheral blood cells. Similar to HCCS wild type, ectopically expressed HCCS E159K was targeted to mitochondria in CHO-K1 cells. In contrast, expression of HCCS E159K did not complement respiratory growth of the CYC3-deficient yeast strain B-8025, while wild-type HCCS and the yeast heme lyase Cyc3p could rescue growth on nonfermentable carbon sources.
Identification of the novel missense mutation p.E159K of HCCS, which leads to loss-of-function of the encoded holocytochrome c-type synthase, in a sporadic female patient with microphthalmia of both eyes and bilateral sclerocornea may suggest HCCS as candidate for severe ocular manifestations.
分析编码线粒体全细胞色素c型合成酶的HCCS基因突变是否与小眼畸形伴线性皮肤缺损(MLS)综合征以外的其他表型相关,包括小眼畸形和/或无眼畸形等严重眼部畸形。此外,我们研究了p.E159K错义突变对HCCS分选至线粒体及其功能完整性的影响。
在一项基于人群的先天性眼部畸形婴儿和胎儿研究中纳入了27名女性,我们通过对编码外显子进行PCR扩增和直接测序对HCCS进行突变分析。通过分析一名患者AR位点的甲基化模式确定X染色体失活模式。为了对鉴定出的错义突变进行功能分析,我们用野生型HCCS或HCCS E159K突变体构建体转染CHO-K1细胞,并通过免疫荧光分析和共聚焦显微镜分析表达蛋白的亚细胞定位。通过酵母中的互补研究来研究突变的HCCS蛋白的功能完整性。因此,我们在携带HCCS直系同源物CYC3缺失的酿酒酵母菌株B-8025中异位表达HCCS野生型和E159K突变体,并分析酵母菌株在非发酵碳源上生长的能力。
我们在一名患有双侧小眼畸形和巩膜角膜的女性中检测到HCCS第5外显子的杂合c.475G>A突变,预测第159位高度保守的谷氨酸被赖氨酸取代。在超过460条X染色体上未发现该点突变。我们在患者外周血细胞中鉴定出X染色体失活偏斜。与HCCS野生型类似,异位表达HCCS E159K在CHO-K1细胞中靶向线粒体。相比之下,HCCS E159K的表达不能补充CYC3缺陷酵母菌株B-8025的呼吸生长,而野生型HCCS和酵母血红素裂解酶Cyc3p可以挽救在非发酵碳源上的生长。
在一名双眼小眼畸形和双侧巩膜角膜的散发性女性患者中鉴定出HCCS的新型错义突变p.E159K,该突变导致编码的全细胞色素c型合成酶功能丧失,这可能表明HCCS是严重眼部表现的候选基因。