Kumari Chandrawati, Kapoor Seema, Varughese Bijo, Pollipali Sunil Kumar, Ramji Siddarth
Pediatrics Genetic and Research Laboratory, Department of Pediatrics, Maulana Azad Medical College, New Medical Block, Opposite Old Casualty, Lok Nayak Hospital, New Delhi, 110002 India.
Department of Neonatology, Maulana Azad Medical College, New Delhi, 110002 India.
Indian J Clin Biochem. 2017 Jul;32(3):266-274. doi: 10.1007/s12291-016-0600-y. Epub 2016 Aug 4.
Deficiency or diminished activity of a cobalamin dependent enzyme methylmalonyl-CoA mutase causes inborn error of metabolism called methylmalonic acidemia (MMA). In this study we elucidated the spectrum of mutations in 21 Indian mut MMA patients by direct sequencing. Sequence analysis identified a total of 70 mutations in exon 2, 9, 11 and 12 of MUT gene. Out of which 26 mutations were predicted to be deleterious and rest were benign. The 23 novel mutations consist of four nonsense mutations (p.N6*, p.G539*, p.E609* and p.I671*), twelve missense mutations (p.K128I, p.N547T, p.D554Y, p.A558T, p.R559P, p.A631T, p.I647T, p.E656D, p.V657E, p.Q660H, p.K679N, and p.G696Y) and seven frame shift mutations (c.375_376insA, c.1642delA, c.1655delC, c.1825_1826insT, c.1957delGA, c.2014delA and c.2062_2063insGA). All of them are point mutations or micro rearrangements. Three of these mutations (p.K621N, p.G648D, p.G630E) have been previously reported; all of them are missense mutations. The mutations are distributed throughout the exon 2, 9, 11 and 12, 38.4 % mutation are located in exon 12.
钴胺素依赖性酶甲基丙二酰辅酶A变位酶的缺乏或活性降低会导致一种称为甲基丙二酸血症(MMA)的先天性代谢缺陷。在本研究中,我们通过直接测序阐明了21例印度mut MMA患者的突变谱。序列分析在MUT基因的第2、9、11和12外显子中总共鉴定出70个突变。其中26个突变被预测为有害突变,其余为良性突变。23个新突变包括四个无义突变(p.N6*、p.G539*、p.E609和p.I671)、十二个错义突变(p.K128I、p.N547T、p.D554Y、p.A558T、p.R559P、p.A631T、p.I647T、p.E656D、p.V657E、p.Q660H、p.K679N和p.G696Y)和七个移码突变(c.375_376insA、c.1642delA、c.1655delC、c.1825_1826insT、c.1957delGA、c.2014delA和c.2062_2063insGA)。所有这些都是点突变或微重排。这些突变中的三个(p.K621N、p.G648D、p.G630E)先前已有报道;它们都是错义突变。这些突变分布在整个第2、9、11和12外显子中,38.4%的突变位于第12外显子。