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BEM46 Shows Eisosomal Localization and Association with Tryptophan-Derived Auxin Pathway in Neurospora crassa

机译:BEM46显示在神经孢霉中的等位基因定位和色氨酸衍生的生长素途径的关联。

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摘要

BEM46 proteins are evolutionarily conserved, but their functions remain elusive. We reported previously that the BEM46 protein in Neurospora crassa is targeted to the endoplasmic reticulum (ER) and is essential for ascospore germination. In the present study, we established a bem46 knockout strain of N. crassa. This Δbem46 mutant exhibited a level of ascospore germination lower than that of the wild type but much higher than those of the previously characterized bem46-overexpressing and RNA interference (RNAi) lines. Reinvestigation of the RNAi transformants revealed two types of alternatively spliced bem46 mRNA; expression of either type led to a loss of ascospore germination. Our results indicated that the phenotype was not due to bem46 mRNA downregulation or loss but was caused by the alternatively spliced mRNAs and the peptides they encoded. Using the N. crassa ortholog of the eisosomal protein PILA from Aspergillus nidulans, we further demonstrated the colocalization of BEM46 with eisosomes. Employing the yeast two-hybrid system, we identified a single interaction partner: anthranilate synthase component II (encoded by trp-1). This interaction was confirmed in vivo by a split-YFP (yellow fluorescent protein) approach. The Δtrp-1 mutant showed reduced ascospore germination and increased indole production, and we used bioinformatic tools to identify a putative auxin biosynthetic pathway. The genes involved exhibited various levels of transcriptional regulation in the different bem46 transformant and mutant strains. We also investigated the indole production of the strains in different developmental stages. Our findings suggested that the regulation of indole biosynthesis genes was influenced by bem46 overexpression. Furthermore, we uncovered evidence of colocalization of BEM46 with the neutral amino acid transporter MTR.
机译:BEM46蛋白在进化上是保守的,但其功能仍然难以捉摸。我们以前报道过,神经孢菌中的BEM46蛋白靶向内质网(ER),并且对于子囊孢子萌发必不可少。在本研究中,我们建立了克雷萨猪笼草的bem46基因敲除菌株。此Δbem46突变体的子囊萌发水平低于野生型,但远高于先前表征的bem46过表达和RNA干扰(RNAi)系。对RNAi转化子的重新研究显示了两种类型的剪接的bem46 mRNA;两种类型的表达均导致子囊孢子萌发的丧失。我们的结果表明,该表型不是归因于bem46 mRNA的下调或丢失,而是由交替剪接的mRNA及其编码的肽引起的。使用来自构巢曲霉的酶体蛋白PILA的N.crassa直向同源物,我们进一步证明了BEM46与酶体的共定位。利用酵母双杂交系统,我们确定了一个单一的相互作用伙伴:邻氨基苯甲酸合酶组分II(由trp-1编码)。通过分裂YFP(黄色荧光蛋白)方法在体内证实了这种相互作用。 Δtrp-1突变体显示出减少的子囊孢子萌发和增加的吲哚产量,我们使用生物信息学工具鉴定了推定的生长素生物合成途径。涉及的基因在不同的bem46转化株和突变株中表现出不同水平的转录调控。我们还研究了在不同发育阶段菌株的吲哚生产。我们的发现表明,吲哚生物合成基因的调控受bem46过表达的影响。此外,我们发现BEM46与中性氨基酸转运蛋白MTR共定位的证据。

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