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Dissection of Arp2/3 Complex Actin Nucleation Mechanism and Distinct Roles for Its Nucleation-Promoting Factors in Saccharomyces cerevisiae

机译:啤酒酵母中Arp2 / 3复合肌动蛋白成核机理的剖析及其成核促进因子的不同作用

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摘要

Actin nucleation by the Arp2/3 complex is under tight control, remaining inactive until stimulation by nucleation-promoting factors (NPFs). Although multiple NPFs are expressed in most cell types, little is known about how they are coordinated and whether they perform similar or distinct functions. We examined genetic relationships among the four S. cerevisiae NPFs. Combining las17Δ with pan1-101 or myo3Δmyo5Δ was lethal at all temperatures, whereas combining pan1-101 with myo3Δmyo5Δ showed no genetic interaction and abp1Δ partially suppressed las17Δ. These data suggest that NPFs have distinct and overlapping functions in vivo. We also tested genetic interactions between each NPF mutant and seven different temperature-sensitive arp2 alleles and purified mutant Arp2/3 complexes to compare their activities. Two arp2 alleles with mutations at the barbed end were severely impaired in nucleation, providing the first experimental evidence that Arp2 nucleates actin at its barbed end in vitro and in vivo. Another arp2 allele caused partially unregulated (“leaky”) nucleation in the absence of NPFs. Combining this mutant with a partially unregulated allele in a different subunit of Arp2/3 complex was lethal, suggesting that cells cannot tolerate high levels of unregulated activity. Genetic interactions between arp2 alleles and NPF mutants point to Abp1 having an antagonistic role with respect to other NPFs, possibly serving to attenuate their stronger activities. In support of this model, Abp1 binds strongly to Arp2/3 complex, yet has notably weak nucleation-promoting activity and inhibits Las17 activity on Arp2/3 complex in a dose-responsive manner.
机译:Arp2 / 3复合物的肌动蛋白成核作用受到严格控制,直到被成核促进因子(NPFs)刺激才保持失活。尽管在大多数细胞类型中都表达了多种NPF,但是对于它们如何协调以及它们是否执行相似或不同的功能知之甚少。我们检查了四个酿酒酵母NPFs之间的遗传关系。 las17Δ与pan1-101或myo3Δmyo5Δ组合在所有温度下均具有致死性,而pan1-101与myo3Δmyo5Δ的组合显示无遗传相互作用,而abp1Δ部分抑制了las17Δ。这些数据表明NPFs在体内具有独特和重叠的功能。我们还测试了每个NPF突变体与七个不同的温度敏感arp2等位基因和纯化突变体Arp2 / 3复合物之间的遗传相互作用,以比较它们的活性。在有刺的末端突变的两个arp2等位基因在成核过程中受到严重损害,这提供了第一个实验证据,表明在体外和体内,Arp2在其有刺的末端都使肌动蛋白成核。在没有NPF的情况下,另一个arp2等位基因导致部分不受调控的(“漏出”)成核。将该突变体与Arp2 / 3复合体不同亚基中的部分不受调控的等位基因结合在一起具有致死性,这表明细胞不能耐受高水平的不受调控的活性。 arp2 等位基因与NPF突变体之间的遗传相互作用表明Abp1对其他NPF具有拮抗作用,可能减弱了它们的更强活性。为支持该模型,Abp1与Arp2 / 3复合物牢固结合,但具有明显弱的成核促进活性,并以剂量​​反应方式抑制对Arp2 / 3复合物的Las17活性。

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