Department of Developmental and Cell Biology, University of California Irvine, Irvine, California, USA.
PLoS One. 2009 Sep 10;4(9):e6946. doi: 10.1371/journal.pone.0006946.
Designing the shape and size of a cell is an interesting challenge for synthetic biology. Prolonged exposure to the mating pheromone alpha-factor induces an unusual morphology in yeast cells: multiple mating projections. The goal of this work was to reproduce the multiple projections phenotype in the absence of alpha-factor using a gain-of-function approach termed "Alternative Inputs (AIs)". An alternative input is defined as any genetic manipulation that can activate the signaling pathway instead of the natural input. Interestingly, none of the alternative inputs were sufficient to produce multiple projections although some produced a single projection. Then, we extended our search by creating all combinations of alternative inputs and deletions that were summarized in an AIs-Deletions matrix. We found a genetic manipulation (AI-Ste5p ste2Delta) that enhanced the formation of multiple projections. Following up this lead, we demonstrated that AI-Ste4p and AI-Ste5p were sufficient to produce multiple projections when combined. Further, we showed that overexpression of a membrane-targeted form of Ste5p alone could also induce multiple projections. Thus, we successfully re-engineered the multiple projections mating morphology using alternative inputs without alpha-factor.
设计细胞的形状和大小是合成生物学的一个有趣挑战。长时间暴露于交配信息素α-因子会诱导酵母细胞出现一种异常形态:多个交配突起。本工作的目的是使用一种称为“替代输入(AIs)”的功能获得方法,在没有α-因子的情况下再现多个突起表型。替代输入被定义为任何可以激活信号通路而不是自然输入的遗传操作。有趣的是,尽管有些替代输入产生了单个突起,但没有一个替代输入足以产生多个突起。然后,我们通过创建替代输入和缺失的所有组合来扩展我们的搜索,并将其总结在一个 AIs-Deletions 矩阵中。我们发现了一种遗传操作(AI-Ste5p ste2Delta)可以增强多个突起的形成。根据这一线索,我们证明了当 AI-Ste4p 和 AI-Ste5p 结合时,它们足以产生多个突起。此外,我们还表明,单独过表达一种靶向膜的 Ste5p 形式也可以诱导多个突起。因此,我们成功地使用替代输入在没有α-因子的情况下重新设计了多个突起的交配形态。