Fischer-Zirnsak Björn, Escande-Beillard Nathalie, Ganesh Jaya, Tan Yu Xuan, Al Bughaili Mohammed, Lin Angela E, Sahai Inderneel, Bahena Paulina, Reichert Sara L, Loh Abigail, Wright Graham D, Liu Jaron, Rahikkala Elisa, Pivnick Eniko K, Choudhri Asim F, Krüger Ulrike, Zemojtel Tomasz, van Ravenswaaij-Arts Conny, Mostafavi Roya, Stolte-Dijkstra Irene, Symoens Sofie, Pajunen Leila, Al-Gazali Lihadh, Meierhofer David, Robinson Peter N, Mundlos Stefan, Villarroel Camilo E, Byers Peter, Masri Amira, Robertson Stephen P, Schwarze Ulrike, Callewaert Bert, Reversade Bruno, Kornak Uwe
Institut fuer Medizinische Genetik und Humangenetik, Charité-Universitaetsmedizin Berlin, 13353 Berlin, Germany; FG Development & Disease, Max-Planck-Institut fuer Molekulare Genetik, 14195 Berlin, Germany.
Institute of Medical Biology, A(∗)STAR, 138648 Singapore, Singapore.
Am J Hum Genet. 2015 Sep 3;97(3):483-92. doi: 10.1016/j.ajhg.2015.08.001. Epub 2015 Aug 27.
Progeroid disorders overlapping with De Barsy syndrome (DBS) are collectively denoted as autosomal-recessive cutis laxa type 3 (ARCL3). They are caused by biallelic mutations in PYCR1 or ALDH18A1, encoding pyrroline-5-carboxylate reductase 1 and pyrroline-5-carboxylate synthase (P5CS), respectively, which both operate in the mitochondrial proline cycle. We report here on eight unrelated individuals born to non-consanguineous families clinically diagnosed with DBS or wrinkly skin syndrome. We found three heterozygous mutations in ALDH18A1 leading to amino acid substitutions of the same highly conserved residue, Arg138 in P5CS. A de novo origin was confirmed in all six probands for whom parental DNA was available. Using fibroblasts from affected individuals and heterologous overexpression, we found that the P5CS-p.Arg138Trp protein was stable and able to interact with wild-type P5CS but showed an altered sub-mitochondrial distribution. A reduced size upon native gel electrophoresis indicated an alteration of the structure or composition of P5CS mutant complex. Furthermore, we found that the mutant cells had a reduced P5CS enzymatic activity leading to a delayed proline accumulation. In summary, recurrent de novo mutations, affecting the highly conserved residue Arg138 of P5CS, cause an autosomal-dominant form of cutis laxa with progeroid features. Our data provide insights into the etiology of cutis laxa diseases and will have immediate impact on diagnostics and genetic counseling.
与德巴尔西综合征(DBS)重叠的早老样疾病统称为常染色体隐性遗传性皮肤松弛症3型(ARCL3)。它们由PYCR1或ALDH18A1的双等位基因突变引起,分别编码吡咯啉-5-羧酸还原酶1和吡咯啉-5-羧酸合酶(P5CS),二者均在线粒体脯氨酸循环中发挥作用。我们在此报告了8名来自非近亲家庭的无血缘关系个体,他们临床上被诊断为DBS或皱纹皮肤综合征。我们在ALDH18A1中发现了三个杂合突变,这些突变导致P5CS中同一高度保守残基Arg138的氨基酸替换。在所有可获得父母DNA的6名先证者中均证实了新发起源。使用来自受影响个体的成纤维细胞和异源过表达,我们发现P5CS-p.Arg138Trp蛋白是稳定的,并且能够与野生型P5CS相互作用,但亚线粒体分布发生了改变。天然凝胶电泳显示大小减小,表明P5CS突变体复合物的结构或组成发生了改变。此外,我们发现突变细胞的P5CS酶活性降低,导致脯氨酸积累延迟。总之,影响P5CS高度保守残基Arg138的反复新发突变导致了一种具有早老样特征的常染色体显性遗传性皮肤松弛症。我们的数据为皮肤松弛症的病因提供了见解,并将对诊断和遗传咨询产生直接影响。