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Aspergillus nidulans ArfB Plays a Role in Endocytosis and Polarized Growth

机译:nidulans曲霉ArfB在胞吞作用和极化生长中起作用

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Filamentous fungi undergo polarized growth throughout most of their life cycles. The Spitzenk?rper is an apical organelle composed primarily of vesicles that is unique to filamentous fungi and is likely to act as a vesicle supply center for tip growth. Vesicle assembly and trafficking are therefore important for hyphal growth. ADP ribosylation factors (Arfs), a group of small GTPase proteins, play an important role in nucleating vesicle assembly. Little is known about the role of Arfs in filamentous hyphal growth. We found that Aspergillus nidulans is predicted to encode six Arf family proteins. Analysis of protein sequence alignments suggests that A. nidulans ArfB shares similarity with ARF6 of Homo sapiens and Arf3p of Saccharomyces cerevisiae. An arfB null allele (arfB disrupted by a transposon [arfB::Tn]) was characterized by extended isotropic growth of germinating conidia followed by cell lysis or multiple, random germ tube emergence, consistent with a failure to establish polarity. The mutant germ tubes and hyphae that do form initially meander abnormally off of the axis of polarity and frequently exhibit dichotomous branching at cell apices, consistent with a defect in polarity maintenance. FM4-64 staining of the arfB::Tn strain revealed that another phenotypic characteristic seen for arfB::Tn is a reduction and delay in endocytosis. ArfB is myristoylated at its N terminus. Green fluorescent protein-tagged ArfB (ArfB::GFP) localizes to the plasma membrane and endomembranes and mutation (ArfBG2A::GFP) of the N-terminal myristoylation motif disperses the protein to the cytoplasm rather than to the membranes. These results demonstrate that ArfB functions in endocytosis to play important roles in polarity establishment during isotropic growth and polarity maintenance during hyphal extension.
机译:丝状真菌在其整个生命周期中都会经历极化增长。 Spitzenkrper是一种主要由囊泡组成的根尖细胞器,它是丝状真菌所特有的,并可能充当尖端生长的囊泡供应中心。因此,囊泡的组装和运输对于菌丝的生长很重要。 ADP核糖基化因子(Arfs)是一组小的GTPase蛋白,在成核小泡组装中起重要作用。关于Arfs在丝状菌丝生长中的作用知之甚少。我们发现构巢曲霉预计会编码六个Arf家族蛋白。蛋白质序列比对分析表明, A。 nidulans ArfB与智人的ARF6和酿酒酵母的Arf3p具有相似性。 arfB 无效等位基因(被转座子[ arfB :: Tn]破坏的 arfB )的特征是发芽分生孢子的各向同性生长延长,随后进入细胞裂解或多个随机的胚管出现,与建立极性失败一致。最初确实形成的突变胚芽管和菌丝在极性轴外异常弯曲,并经常在细胞顶点显示二分枝,这与极性维持缺陷一致。 FM4-64对 arfB :: Tn菌株的染色显示, arfB :: Tn的另一个表型特征是内吞作用的减少和延迟。 ArfB在其N端被肉豆蔻酰化。带有绿色荧光蛋白标签的ArfB(ArfB :: GFP)定位于质膜和内膜,N末端肉豆蔻酰化基序的突变(ArfB G2A :: GFP)将蛋白分散到细胞质而不是到膜。这些结果表明ArfB在胞吞作用中在各向同性生长期间的极性建立和菌丝延伸期间的极性维持中起重要作用。

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