University Children's Hospital Zurich, Division of Metabolism, Zurich, Switzerland.
Hum Mutat. 2011 Jun;32(6):579-89. doi: 10.1002/humu.21406. Epub 2011 May 5.
Deficiency of carbamoyl phosphate synthetase I (CPSI) results in hyperammonemia ranging from neonatally lethal to environmentally induced adult-onset disease. Over 24 years, analysis of tissue and DNA samples from 205 unrelated individuals diagnosed with CPSI deficiency (CPSID) detected 192 unique CPS1 gene changes, of which 130 are reported here for the first time. Pooled with the already reported mutations, they constitute a total of 222 changes, including 136 missense, 15 nonsense, 50 changes of other types resulting in enzyme truncation, and 21 other changes causing in-frame alterations. Only ∼10% of the mutations recur in unrelated families, predominantly affecting CpG dinucleotides, further complicating the diagnosis because of the "private" nature of such mutations. Missense changes are unevenly distributed along the gene, highlighting the existence of CPSI regions having greater functional importance than other regions. We exploit the crystal structure of the CPSI allosteric domain to rationalize the effects of mutations affecting it. Comparative modeling is used to create a structural model for the remainder of the enzyme. Missense changes are found to directly correlate, respectively, with the one-residue evolutionary importance and inversely correlate with solvent accessibility of the mutated residue. This is the first large-scale report of CPS1 mutations spanning a wide variety of molecular defects highlighting important regions in this protein.
氨甲酰磷酸合成酶 I (CPSI) 缺乏会导致血氨升高,范围从新生儿致死到环境诱导的成人发病。在 24 年的时间里,对 205 名无血缘关系的被诊断为 CPSI 缺乏症 (CPSID) 的个体的组织和 DNA 样本进行分析,发现了 192 种独特的 CPS1 基因突变,其中 130 种是首次报道。与已经报道的突变一起,它们构成了总共 222 种突变,包括 136 种错义突变、15 种无义突变、50 种导致酶截断的其他类型的突变和 21 种导致框内改变的其他突变。只有约 10%的突变在无血缘关系的家庭中反复出现,主要影响 CpG 二核苷酸,由于这种突变的“私有”性质,进一步复杂化了诊断。错义突变在基因中分布不均匀,突出了 CPSI 区域存在比其他区域更大的功能重要性。我们利用 CPSI 变构域的晶体结构来合理推断影响它的突变的影响。比较建模用于创建该酶其余部分的结构模型。错义突变分别与突变残基的一个残基进化重要性直接相关,与溶剂可及性呈负相关。这是首次对 CPS1 突变进行大规模报告,涵盖了广泛的分子缺陷,突出了该蛋白中的重要区域。