孟德尔随机化
全基因组关联研究
遗传关联
精神分裂症(面向对象编程)
连锁不平衡
遗传相关
多重比较问题
双相情感障碍
邦费罗尼校正
医学
联想(心理学)
遗传学
生物
精神科
遗传变异
单核苷酸多态性
心理学
遗传变异
基因型
基因
认知
统计
数学
心理治疗师
作者
Huimei Huang,Shiqiang Cheng,Chun’e Li,Bolun Cheng,Li Liu,Xuena Yang,Peilin Meng,Yao Yao,Chuyu Pan,Jingxi Zhang,Huijie Zhang,Yujing Chen,Zhen Zhang,Yan Wen,Yumeng Jia,Feng Zhang
出处
期刊:Acta Neuropsychiatrica
[Cambridge University Press]
日期:2022-03-28
卷期号:34 (6): 311-317
被引量:4
摘要
Abstract Objectives: The role of neurological proteins in the development of bipolar disorder (BD) and schizophrenia (SCZ) remains elusive now. The current study aims to explore the potential genetic correlations of plasma neurological proteins with BD and SCZ. Methods: By using the latest genome-wide association study (GWAS) summary data of BD and SCZ (including 41,917 BD cases, 11,260 SCZ cases, and 396,091 controls) derived from the Psychiatric GWAS Consortium website (PGC) and a recently released GWAS of neurological proteins (including 750 individuals), we performed a linkage disequilibrium score regression (LDSC) analysis to detect the potential genetic correlations between the two common psychiatric disorders and each of the 92 neurological proteins. Two-sample Mendelian randomisation (MR) analysis was then applied to assess the bidirectional causal relationship between the neurological proteins identified by LDSC, BD and SCZ. Results: LDSC analysis identified one neurological protein, NEP , which shows suggestive genetic correlation signals for both BD (coefficient = −0.165, p value = 0.035) and SCZ (coefficient = −0.235, p value = 0.020). However, those association did not remain significant after strict Bonferroni correction. Two sample MR analysis found that there was an association between genetically predicted level of NEP protein, BD (odd ratio [OR] = 0.87, p value = 1.61 × 10 −6 ) and SCZ (OR = 0.90, p value = 4.04 × 10 −6 ). However, in the opposite direction, there is no genetically predicted association between BD, SCZ, and NEP protein level. Conclusion: This study provided novel clues for understanding the genetic effects of neurological proteins on BD and SCZ.
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