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对交配伙伴的承诺机制。

Mechanism of commitment to a mating partner in .

机构信息

Department of Pharmacology and Cancer Biology, Duke University, Durham, NC 27708.

出版信息

Mol Biol Cell. 2022 Oct 1;33(12):ar112. doi: 10.1091/mbc.E22-02-0043. Epub 2022 Aug 10.

Abstract

Many cells detect and follow gradients of chemical signals to perform their functions. Yeast cells use gradients of extracellular pheromones to locate mating partners, providing a tractable model for understanding how cells decode the spatial information in gradients. To mate, yeast cells must orient polarity toward the mating partner. Polarity sites are mobile, exploring the cell cortex until they reach the proper position, where they stop moving and "commit" to the partner. A simple model to explain commitment posits that a high concentration of pheromone is detected only upon alignment of partner cells' polarity sites and causes polarity site movement to stop. Here we explore how yeast cells respond to partners that make different amounts of pheromone. Commitment was surprisingly robust to various pheromone levels, ruling out the simple model. We also tested whether adaptive pathways were responsible for the robustness of commitment, but our results show that cells lacking those pathways were still able to accommodate changes in pheromone. To explain this robustness, we suggest that the steep pheromone gradients near each mating partner's polarity site trap the polarity site in place.

摘要

许多细胞通过检测和跟踪化学信号的梯度来发挥其功能。酵母细胞利用细胞外信息素的浓度梯度来寻找交配伙伴,为理解细胞如何解码梯度中的空间信息提供了一个易于处理的模型。为了交配,酵母细胞必须将极性定向于交配伙伴。极性位点是可移动的,它们会在细胞皮层上探索,直到找到正确的位置,然后停止移动并“与伴侣结合”。一个简单的模型假设,只有当伴侣细胞的极性位点对齐时,才会检测到高浓度的信息素,从而导致极性位点的运动停止。在这里,我们探索了酵母细胞对产生不同量信息素的伴侣的反应。令人惊讶的是,与各种信息素水平相比,结合具有很强的稳健性,从而排除了简单模型的可能性。我们还测试了适应性途径是否对结合的稳健性负责,但我们的结果表明,缺乏这些途径的细胞仍然能够适应信息素的变化。为了解释这种稳健性,我们认为每个交配伙伴的极性位点附近陡峭的信息素梯度将极性位点固定在适当的位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7265/9635292/580493690123/mbc-33-ar112-g001.jpg

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