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Sexually Dimorphic SCAMP1 Expression in the Forebrain Motor Pathway for Song Production of Juvenile Zebra Finches

机译:幼年斑马雀鸣曲的前脑运动通路中的性双态SCAMP1表达。

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摘要

Mechanisms regulating sexual differentiation of the zebra finch song system are not well understood. The present study was designed to more fully characterize secretory carrier membrane protein 1 (SCAMP1), which was identified in a cDNA microarray screen as showing increased expression in the forebrains of developing male compared with female zebra finches. We completed the sequence of the open reading frame and used in situ hybridization to compare mRNA in song control regions of juvenile (25-day-old) individuals. Expression was significantly greater in the HVC (used as a proper name) and robust nucleus of the arcopallium (RA) in males than in females. Immunohistochemistry revealed that SCAMP1 protein is also expressed in these two brain regions, and qualitatively appears greater in males. Western analysis confirmed that the protein is increased in the telencephalon of males when compared with females at 25 days of age. These results are consistent with the idea that SCAMP1 is involved in masculinization of these brain areas, perhaps facilitating the survival of cells within them.
机译:调节斑马雀科歌曲系统的性别分化的机制尚不清楚。本研究旨在更充分地表征分泌性载体膜蛋白1(SCAMP1),该蛋白在cDNA微阵列筛选中被鉴定为与雌性斑马雀科相比,在发育中的雄性前脑中表达增加。我们完成了开放阅读框的序列,并使用原位杂交技术比较了少年(25天大)个体的歌曲控制区域中的mRNA。与女性相比,男性的HVC(用作专有名称)和arcopallium(RA)健壮核的表达明显更高。免疫组织化学显示,SCAMP1蛋白也在这两个大脑区域表达,定性地在雄性中表现出更大。 Western分析证实,与25天龄的女性相比,男性的末梢脑中蛋白质增加。这些结果与SCAMP1参与这些脑区男性化的想法相一致,可能促进了其中脑细胞的存活。

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