首页> 美国卫生研究院文献>Eukaryotic Cell >The Plasma Membrane Proton Pump PMA-1 Is Incorporated into Distal Parts of the Hyphae Independently of the Spitzenkörper in Neurospora crassa
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The Plasma Membrane Proton Pump PMA-1 Is Incorporated into Distal Parts of the Hyphae Independently of the Spitzenkörper in Neurospora crassa

机译:血浆膜质子泵PMA-1被单独地引入到菌丝的远端部分中而不是Spitzenkörper

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摘要

Most models for fungal growth have proposed a directional traffic of secretory vesicles to the hyphal apex, where they temporarily aggregate at the Spitzenkörper before they fuse with the plasma membrane (PM). The PM H+-translocating ATPase (PMA-1) is delivered via the classical secretory pathway (endoplasmic reticulum [ER] to Golgi) to the cell surface, where it pumps H+ out of the cell, generating a large electrochemical gradient that supplies energy to H+-coupled nutrient uptake systems. To characterize the traffic and delivery of PMA-1 during hyphal elongation, we have analyzed by laser scanning confocal microscopy (LSCM) strains of Neurospora crassa expressing green fluorescent protein (GFP)-tagged versions of the protein. In conidia, PMA-1-GFP was evenly distributed at the PM. During germination and germ tube elongation, PMA-1-GFP was found all around the conidial PM and extended to the germ tube PM, but fluorescence was less intense or almost absent at the tip. Together, the data indicate that the electrochemical gradient driving apical nutrient uptake is generated from early developmental stages. In mature hyphae, PMA-1-GFP localized at the PM at distal regions (>120 μm) and in completely developed septa, but not at the tip, indicative of a distinct secretory route independent of the Spitzenkörper occurring behind the apex.
机译:大多数真菌生长模型都提出了分泌囊泡向菌丝顶点的定向运输,在与质膜(PM)融合之前,它们在Spitzenkörper处暂时聚集。 PM H + 易位ATPase(PMA-1)通过经典的分泌途径(内质网[ER]到达高尔基体)传递到细胞表面,并泵送H + 离开细胞,产生大的电化学梯度,从而为H + 耦合的养分吸收系统提供能量。为了表征菌丝延长过程中PMA-1的运输和传递,我们通过激光扫描共聚焦显微镜(LSCM)菌株分析了表达绿色荧光蛋白(GFP)的该蛋白的神经孢霉。在分生孢子中,PMA-1-GFP在PM处均匀分布。在发芽和胚芽管伸长过程中,PMA-1-GFP被发现在整个分生孢子PM周围,并延伸到胚芽管PM,但是末端的荧光强度较低或几乎不存在。总之,这些数据表明,从发育初期就产生了驱动根部养分吸收的电化学梯度。在成熟的菌丝中,PMA-1-GFP位于远端的PM(> 120μm)和完全发育的隔垫中,但不位于尖端,这表明一种独立的分泌途径与Spitzenkörper发生在根尖后部无关。

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