女性:抗抑郁药会增加p11或S100A10吗?

Hari Manev, Radmila Manev
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引用次数: 8

摘要

有时,同一基因/蛋白质会有多个名称。当这种情况发生时,在随后的出版物中可以使用不同的名称,例如在不同的研究领域,有时很少或根本没有意识到以不同名称已知的同一实体可能在另一个科学领域发挥重要作用。最近关于p11蛋白的报道发现,这种通常被称为S100A10的蛋白可能在抑郁症和抗抑郁药物治疗机制中发挥关键作用。一组数据显示,在服用抗抑郁药的老鼠大脑中,这种蛋白质的表达有所增加。P11/S100A10只是大脑中表达的几种S100蛋白之一。有趣的是,之前已经注意到抗抑郁治疗增加了大脑中另一种S100蛋白S100B的含量。看来,上调大脑中各种S100蛋白的含量可能是抗抑郁药的一个共同特征。在共表达S100A10和S100B的细胞中,这些蛋白可能相互作用并发挥相反的调节作用。然而,S100A10主要在某些类型的神经元中表达,而S100B在胶质细胞中表达更为丰富。因此,在确定抗抑郁机制的区域和细胞特异性方面,S100蛋白多个成员之间的相互作用可能是重要的。将p11蛋白命名为S100A10,可能会促使更多来自不同领域的研究人员参与到这一神经生物学研究的新方向。
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Nomen est Omen: do antidepressants increase p11 or S100A10?

Occasionally, multiple names are given to the same gene/protein. When this happens, different names can be used in subsequent publications, for example in different research areas, sometimes with little or no awareness that the same entity known under a different name may have a major role in another field of science. Recent reports about the protein p11 presented findings that this protein, commonly known as S100A10, may play a crucial role in depression and antidepressant treatment mechanisms. One set of data showed an increased expression of this protein in the brain of mice treated with antidepressants. P11/S100A10 is only one of several S100 proteins expressed in the brain. Interestingly, it has been previously noted that antidepressant treatment increases the brain content of another S100 protein, S100B. It appears that up-regulating the brain content of various S100 proteins might be a common feature of antidepressants. In cells coexpressing S100A10 and S100B, these proteins may interact and exert opposite regulatory roles. Nevertheless, S100A10 is predominantly expressed in certain types of neurons whereas S100B is more abundant in glia. Thus, an interplay among multiple members of the S100 proteins might be important in determining the region and cell specificity of antidepressant mechanisms. Calling the p11 protein by its other name, S100A10, may prompt more investigators from different fields to participate in this new direction of neurobiological research.

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