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Loss- and gain-of-function analyses of vacuolar protein sorting 2 in Notch signaling of Drosophila melanogaster

机译:果蝇Notch信号中液泡蛋白分选2的功能丧失和获得功能分析

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References(63) Cited-By(1) Notch signaling is an evolutionarily conserved mechanism that controls many cell-fate specifications through local cell-cell interactions. The core mechanisms of Notch activation and its subsequent intracellular signaling are well understood. Various cellular functions are required for the activation and regulation of Notch signaling. Among them, the endocytosis of Notch and its ligands is important for the activation and suppression of Notch signaling. The endosomal sorting complex required for transport (ESCRT) proteins are required to sort ubiquitinated membrane proteins, such as Notch, into early endosomes. A loss-of-function allele of vacuolar protein sorting 2 (vps2), which encodes a component of ESCRT-III, has been reported. However, this vps2 mutant still produces the N-terminal half of the protein, and its phenotypes were studied in only a few organs. Here, we generated the first null mutant allele of Drosophila vps2, designated vps22, to better understand the function of this gene. In Drosophila wing imaginal discs homozygous for the vps22 allele, early endosomes and multivesicular bodies (MVBs) were enlarged, and Notch and Delta accumulated inside them. As reported for the previous vps2 mutant, the epithelium grew excessively under this condition. We further studied the roles of vps2 by RNA interference-knockdown. These experiments revealed that a partial reduction of vps2 attenuated Notch signaling; in contrast, the loss-of-function vps2 mutant is reported to up-regulate the Notch signaling in eye imaginal disc cells. These results suggest that Notch signaling can be up- or down-regulated, depending on the level of vps2 expression. Finally, we found that vps2 overexpression also resulted in early-endosome enlargement and the accumulation of Notch and Delta. In these cells, a portion of the Vps2 protein was detected in MVBs and colocalized with Notch. These data indicate that the expression of vps2 must be precisely regulated to maintain the normal structure of early endosomes.
机译:参考文献(63)Cited-By(1)Notch信号是一种进化保守的机制,可通过局部细胞-细胞相互作用控制许多细胞命运规范。 Notch激活及其随后的细胞内信号转导的核心机制是众所周知的。 Notch信号的激活和调节需要各种细胞功能。其中,Notch及其配体的内吞作用对于Notch信号的激活和抑制很重要。需要转运蛋白(ESCRT)所需的内体分选复合物,以将遍在蛋白化的膜蛋白(例如Notch)分选到早期的内体中。据报道,空泡蛋白分选2(vps2)的功能缺失等位基因编码ESCRT-III的一个成分。但是,此vps2突变体仍产生蛋白质的N端一半,并且仅在少数器官中研究了其表型。在这里,我们生成了果蝇vps2的第一个无效突变等位基因,命名为vps22,以更好地了解该基因的功能。在果蝇翼上的vps22等位基因纯合的假想盘扩大了早期的内体和多泡体(MVBs),并且Notch和Delta积累在其中。如先前的vps2突变体所报道的,在这种情况下上皮过度生长。我们通过RNA干扰敲低研究了vps2的作用。这些实验表明,vps2的部分降低减弱了Notch信号传导;相比之下,据报道功能丧失的vps2突变体可上调眼部椎间盘细胞中的Notch信号传导。这些结果表明,Notch信号传导可以上调或下调,具体取决于vps2表达水平。最后,我们发现vps2过表达还导致早期的内体增大以及Notch和Delta的积累。在这些细胞中,在MVB中检测到一部分Vps2蛋白,并与Notch共定位。这些数据表明,必须精确调节vps2的表达以维持早期内体的正常结构。

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