Roca M Gabriela, Kuo Hsiao-Che, Lichius Alexander, Freitag Michael, Read Nick D
Fungal Cell Biology Group, Institute of Cell Biology, University of Edinburgh, Rutherford Building, Mayfield Road, Edinburgh EH9 3JH, United Kingdom.
Eukaryot Cell. 2010 Aug;9(8):1171-83. doi: 10.1128/EC.00329-09. Epub 2010 Mar 5.
Neurospora crassa macroconidia form germ tubes that are involved in colony establishment and conidial anastomosis tubes (CATs) that fuse to form interconnected networks of conidial germlings. Nuclear and cytoskeletal behaviors were analyzed in macroconidia, germ tubes, and CATs in strains that expressed fluorescently labeled proteins. Heterokaryons formed by CAT fusion provided a rapid method for the imaging of multiple labeled fusion proteins and minimized the potential risk of overexpression artifacts. Mitosis occurred more slowly in nongerminated macroconidia (1.0 to 1.5 h) than in germ tubes (16 to 20 min). The nucleoporin SON-1 was not released from the nuclear envelope during mitosis, which suggests that N. crassa exhibits a form of "closed mitosis." During CAT homing, nuclei did not enter CATs, and mitosis was arrested. Benomyl treatment showed that CAT induction, homing, fusion, as well as nuclear migration through fused CATs do not require microtubules or mitosis. Three ropy mutants (ro-1, ro-3, and ro-11) defective in the dynein/dynactin microtubule motor were impaired in nuclear positioning, but nuclei still migrated through fused CATs. Latrunculin B treatment, imaging of F-actin in living cells using Lifeact-red fluorescent protein (RFP), and analysis of mutants defective in the Arp2/3 complex demonstrated that actin plays important roles in CAT fusion.
粗糙脉孢菌的大分生孢子形成参与菌落建立的芽管和融合形成相互连接的分生孢子芽管网络的分生孢子吻合管(CATs)。在表达荧光标记蛋白的菌株的大分生孢子、芽管和CATs中分析了核和细胞骨架行为。通过CAT融合形成的异核体为多种标记融合蛋白的成像提供了一种快速方法,并将过表达假象的潜在风险降至最低。有丝分裂在未萌发的大分生孢子中发生得比在芽管中更慢(1.0至1.5小时对16至20分钟)。核孔蛋白SON-1在有丝分裂期间未从核膜释放,这表明粗糙脉孢菌表现出一种“封闭有丝分裂”形式。在CAT归巢过程中,细胞核不进入CATs,有丝分裂被阻断。苯菌灵处理表明,CAT诱导、归巢、融合以及细胞核通过融合的CATs迁移不需要微管或有丝分裂。在动力蛋白/动力蛋白激活蛋白微管马达中存在缺陷的三个绳状突变体(ro-1、ro-3和ro-11)在核定位方面受损,但细胞核仍通过融合的CATs迁移。Latrunculin B处理、使用Lifeact-红色荧光蛋白(RFP)对活细胞中的F-肌动蛋白进行成像以及对Arp2/3复合物存在缺陷的突变体进行分析表明,肌动蛋白在CAT融合中起重要作用。