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单胺氧化酶 a 的表达对于胚胎大脑发育至关重要,它可以调节发育中的细胞凋亡。

Monoamine oxidase a expression is vital for embryonic brain development by modulating developmental apoptosis.

机构信息

Institute of Biochemistry, University Medicine Berlin-Charité, Oudenarder Strasse 16, 13347 Berlin, Germany.

出版信息

J Biol Chem. 2011 Aug 12;286(32):28322-30. doi: 10.1074/jbc.M111.241422. Epub 2011 Jun 22.

Abstract

Monoamine oxidases (MAO-A, MAO-B) metabolize biogenic amines and have been implicated in neuronal apoptosis. Although apoptosis is an important process in embryo development, the role of MAO isoenzymes has not been investigated in detail. We found that expression of MAO-A and MAO-B can be detected early on during embryo development. Expression levels remained constant until around midgestation but then dropped to almost undetectable levels toward birth. Similar expression kinetics were observed in the brain. Isoform-specific expression silencing of MAO-A mediated by siRNA during in vitro embryogenesis induced developmental defects, as indicated by a reduction of the crown rump length and impaired cerebral development. These alterations were paralleled by elevated serotonin levels. Similar abnormalities were observed when embryos were cultured in the presence of the MAO-A inhibitor clorgyline or when the transcriptional inhibitor of MAO-A expression R1 was overexpressed. In contrast, no such alterations were detected when expression of MAO-B was knocked down. To explore the underlying mechanisms for the developmental abnormalities in MAO-A knockdown embryos, we quantified the degree of developmental apoptosis in the developing brain. MAO-A knockdown reduced the number of apoptotic cells in the neuroepithelium, which coincided with impaired activation of caspases 3 and 9. Moreover, we observed reduced cyclin D1 levels as an indicator of impaired cell proliferation in MAO-A knockdown embryos. This data highlights MAO-A as a vital regulator of embryonic brain development.

摘要

单胺氧化酶(MAO-A、MAO-B)代谢生物胺,并与神经元凋亡有关。尽管凋亡是胚胎发育过程中的一个重要过程,但 MAO 同工酶在其中的作用尚未得到详细研究。我们发现 MAO-A 和 MAO-B 的表达可在胚胎发育早期检测到。表达水平一直保持稳定,直到中期妊娠左右,但随后降至出生时几乎无法检测到的水平。在大脑中观察到类似的表达动力学。在体外胚胎发生过程中,通过 siRNA 介导的 MAO-A 同工型特异性表达沉默导致发育缺陷,表现为头臀长减少和脑发育受损。这些变化伴随着血清素水平的升高。当胚胎在 MAO-A 抑制剂氯吉宁存在下培养或过表达 MAO-A 表达的转录抑制剂 R1 时,观察到类似的异常。相比之下,当敲低 MAO-B 的表达时,没有检测到这种异常。为了探索 MAO-A 敲低胚胎发育异常的潜在机制,我们定量分析了发育中大脑的发育性凋亡程度。MAO-A 敲低减少了神经上皮中的凋亡细胞数量,这与 caspase 3 和 9 的激活受损相一致。此外,我们观察到 MAO-A 敲低胚胎中细胞增殖受损的标志 cyclin D1 水平降低。这些数据突出了 MAO-A 作为胚胎大脑发育的重要调节剂。

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