错义突变
帕金森病
神经退行性变
基因型
表型
遗传学
等位基因
共济失调
发病年龄
突变
生物
内科学
医学
神经科学
基因
疾病
作者
Jian Xue,Dongxue Ding,Guang-Yu Xu,Pu-Zhi Wang,Yi-Lun Ge,Jin‐Ru Zhang,Xiaoyu Cheng,Yiming Wang,Hong Jin,Siyang Luo,Yuhan Zheng,Jing Chen,Fen Wang,Dan Li,Cheng‐Jie Mao,Kai Li,Chun‐Feng Liu
标识
DOI:10.1016/j.parkreldis.2023.105477
摘要
Background PLA2G6-associated neurodegeneration (PLAN) can be categorized into infantile neuroaxonal dystrophy (INAD), atypical neuroaxonal dystrophy (aNAD), neurodegeneration with brain iron accumulation (NBIA), and early-onset parkinsonism (EOP). Objectives To determine the genotype–phenotype association in PLAN. Methods "PLA2G6" or "PARK14" or "phospholipase A2 group VI" or "iPLA2β" were searched across MEDLINE from June 23, 1997, to March 1, 2023. A total of 391 patients were identified, and 340 patients of them were finally included in the assessment. Results The loss of function (LOF) mutation ratios were significantly different (p < 0.001), highest in INAD, followed by NBIA, aNAD, and EOP. Four ensemble scores (i.e., BayesDel, VARITY, ClinPred, and MetaRNN) were assessed to predict the deleteriousness of missense mutations and demonstrated significant differences (p < 0.001). Binary logistic regression analyses demonstrated that LOF mutations were independently associated with brain iron accumulation (p = 0.006) and ataxia (p = 0.025). Conclusions LOF or more deleterious missense mutations are more likely to promote the development of serious phenotype of PLAN, and LOF mutations are independently associated with brain iron accumulation and ataxia.
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