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Generation and characterization of monoclonal antibodies specific to Drosophila presenilin.

机译:果蝇早老蛋白特异的单克隆抗体的产生和表征。

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The development of a monoclonal antibody (MAb) specific to Drosophila presenilin (Psn) proteins in vivo was the major aim of this study, since the absence of specific antibodies recognizing Psn proteins hampered our progress in understanding Psn functions during development, differentiation, and pathogenesis. By dot blot and immunofluorescence screenings, we found that MAb Psn2G6 specifically recognized Psn proteins in wing imaginal discs and brains of wild-type control W1118 larvae. MAb Psn2G6 also transgenically expressed a long form of wild-type Psn (Psn + 14 WT) proteins in wing imaginal discs of two independent transgenic lines. Transgenic expression of Psn + 14 WT proteins in psn(B3) larvae completely rescued the expression patterns of Psn proteins and the development of wing imaginal discs. In addition, neural hyperplasia observed in wing imaginal discs of psn(B3) larvae was also suppressed.
机译:体内特异果蝇早老素(Psn)蛋白的单克隆抗体(MAb)的开发是这项研究的主要目的,因为缺乏识别Psn蛋白的特异性抗体的存在阻碍了我们对Psn在发育,分化和发病机理中功能的理解。 。通过斑点印迹和免疫荧光筛选,我们发现MAb Psn2G6特异性识别野生型对照W1118幼虫的翼状成像盘和大脑中的Psn蛋白。 MAb Psn2G6还通过转基因在两个独立的转基因系的翼状成像盘中表达了一种长型的野生型Psn(Psn + 14 WT)蛋白。 psn(B3)幼虫中Psn + 14 WT蛋白的转基因表达完全拯救了Psn蛋白的表达模式和机翼假想盘的发育。另外,在psn(B3)幼虫的翼状假体盘中观察到的神经增生也被抑制。

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