Neuman-Silberberg F Shira
Department of Virology and Developmental Genetics, Faculty of Health Sciences and Cancer Research Center, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Genesis. 2007 Jun;45(6):369-81. doi: 10.1002/dvg.20303.
spoonbill is a Drosophila female-sterile mutation, which displays a range of eggshell and egg chamber patterning defects. Previous analysis has shown that the mutation interfered with the function of two major signaling pathways, GRK/EGFR and DPP. In this report, the nature of spoonbill was further investigated to examine whether it was associated with additional pathways in oogenesis. Clonal analysis, presented here, demonstrated that most of the aberrant phenotypes associated with spoonbill were dependent on a mutant germline. Nevertheless, SPOONBILL may function also in the soma to ensure proper polarization and migration of the border-cell-cluster. Further, genetic interaction studies implicated spoonbill in additional unrelated pathways such as the one(s) involved in actin polymerization/depolymerization. Based on the previous data and the results presented here, it is anticipated that spoonbill may encode a multifunctional protein that perhaps coordinately regulated the activity of multiple signaling pathways during oogenesis.
琵鹭是一种果蝇雌性不育突变体,表现出一系列卵壳和卵室图案形成缺陷。先前的分析表明,该突变干扰了两条主要信号通路GRK/EGFR和DPP的功能。在本报告中,对琵鹭的本质进行了进一步研究,以检查它是否与卵子发生中的其他通路相关。本文呈现的克隆分析表明,与琵鹭相关的大多数异常表型依赖于突变种系。然而,琵鹭可能也在体细胞中发挥作用,以确保边界细胞簇的正确极化和迁移。此外,遗传相互作用研究表明琵鹭参与了其他不相关的通路,如参与肌动蛋白聚合/解聚的通路。基于先前的数据和本文给出的结果,预计琵鹭可能编码一种多功能蛋白,该蛋白可能在卵子发生过程中协调调节多个信号通路的活性。