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基于蛋白质组学的基因型分析在特质焦虑的小鼠模型中揭示了与疾病相关的途径。

Proteomic-based genotyping in a mouse model of trait anxiety exposes disease-relevant pathways.

机构信息

Max Planck Institute of Psychiatry, Munich, Germany.

出版信息

Mol Psychiatry. 2010 Jul;15(7):702-11. doi: 10.1038/mp.2008.146. Epub 2009 Jan 13.

Abstract

In our biomarker identification efforts, we have reported earlier on a protein that differs in its electrophoretic mobility between mouse lines bred either for high or low trait anxiety. The altered electrophoretic behavior of enolase phosphatase (EP) is now identified to be caused by two single-nucleotide polymorphisms. In both cases, the genetic polymorphism introduces an amino acid change in the protein's sequence resulting in differential mobility on SDS gels. This was shown by recombinantly expressing the two EP isoforms. Functional studies indicate that the EP isoform from the high anxiety mouse line has a lower enzymatic activity than does its low anxiety mouse counterpart. EP is a member of the methionine salvage pathway that is responsible for the synthesis of S-adenosyl-L-methionine, a natural compound with potential antidepressant activities. In addition, it is linked to the polyamine pathway whose members have functions in anxiety/depression-related behaviors. In a freely-segregating F2 panel, both single-nucleotide polymorphisms were significantly associated with locomotion-independent trait anxiety, further supporting a functional role of EP for this phenotype. The study shows that proteomic analysis can reveal genotypic differences relevant for the phenotype. The identified protein alterations, in turn, can expose metabolic pathways pertinent to the behavioral phenotype.

摘要

在我们的生物标志物鉴定工作中,我们之前曾报道过一种在高特质焦虑或低特质焦虑品系小鼠中电泳迁移率不同的蛋白质。现在发现,烯醇化酶磷酸酶 (EP) 的电泳行为改变是由两个单核苷酸多态性引起的。在这两种情况下,遗传多态性都会导致蛋白质序列中的氨基酸发生变化,从而导致 SDS 凝胶上的迁移率不同。通过重组表达两种 EP 同工型证明了这一点。功能研究表明,来自高焦虑小鼠品系的 EP 同工型的酶活性低于其低焦虑小鼠对应物。EP 是蛋氨酸回收途径的成员,负责合成 S-腺苷-L-蛋氨酸,这是一种具有潜在抗抑郁活性的天然化合物。此外,它与多胺途径有关,其成员在焦虑/抑郁相关行为中具有功能。在一个自由分离的 F2 面板中,这两个单核苷酸多态性与运动独立性特质焦虑显著相关,进一步支持 EP 对这种表型的功能作用。该研究表明,蛋白质组学分析可以揭示与表型相关的基因型差异。所鉴定的蛋白质改变反过来可以揭示与行为表型相关的代谢途径。

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