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异常的多萜醇链长度可作为由多萜醇生物合成受损引起的视网膜色素变性的生物标志物。

Aberrant dolichol chain lengths as biomarkers for retinitis pigmentosa caused by impaired dolichol biosynthesis.

机构信息

Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, Miami, FL 33136.

出版信息

J Lipid Res. 2013 Dec;54(12):3516-22. doi: 10.1194/jlr.M043232. Epub 2013 Sep 27.

Abstract

We observed a characteristic shortening of plasma and urinary dolichols in retinitis pigmentosa (RP) patients carrying K42E and T206A mutations in the dehydrodolichol diphosphate synthase (DHDDS) gene, using liquid chromatography-mass spectrometry. Dolichol-18 (D18) became the dominant dolichol species in patients instead of dolichol-19 (D19) in normal individuals. The D18/D19 ratio was calculated and used as an index of dolichol length distribution. K42E/K42E and K42E/T206A patients have significantly higher plasma and urinary D18/D19 ratios than K42E and T206A carriers. The ratios of carriers are significantly higher than normal individuals. Receiver operating characteristic (ROC) analysis shows that plasma and urinary D18/D19 ratios can unambiguously discriminate patients from carriers, and carriers from normal individuals. Dolichol analysis also provides evidence that the T206A mutation is RP-causative. The methodologies and procedures used for dolichol profiling are reliable, high throughput, and cost effective. Dolichol profiling, complementary to genotyping, can be readily adapted as a test in the clinic not only for the diagnosis of patients but also for identification of carriers with DHDDS or other genetic mutations that may impair dolichol biosynthesis.

摘要

我们通过液相色谱-质谱法观察到,携带脱氢二氢醇二磷酸合酶(DHDDS)基因中 K42E 和 T206A 突变的视网膜色素变性(RP)患者的血浆和尿中二氢醇明显缩短。18 碳二氢醇(D18)成为患者而非正常人中主要的二氢醇种类。计算 D18/D19 比值并用作二氢醇长度分布的指标。K42E/K42E 和 K42E/T206A 患者的血浆和尿 D18/D19 比值明显高于 K42E 和 T206A 携带者。携带者的比值明显高于正常人。受试者工作特征(ROC)分析表明,血浆和尿 D18/D19 比值可明确区分患者与携带者,以及携带者与正常人。二氢醇分析也提供了 T206A 突变是 RP 致病的证据。二氢醇分析的方法和程序可靠、高通量且具有成本效益。二氢醇分析与基因分型互补,可以作为一种在临床上的测试方法,不仅用于患者的诊断,还用于鉴定 DHDDS 或其他可能损害二氢醇生物合成的基因突变的携带者。

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