Castillo-Lluva Sonia, García-Muse Tatiana, Pérez-Martín José
Department of Microbial Biotechnology, Centro Nacional de Biotecnología CSIC, Campus de Cantoblanco-UAM, 28049 Madrid, Spain.
J Cell Sci. 2004 Aug 15;117(Pt 18):4143-56. doi: 10.1242/jcs.01304.
Here, we identified a new member of the Fizzy-related family of APC activators, Cru1, which is required for virulence in the corn smut fungus Ustilago maydis. We show that Cru1 promotes the degradation of B-type cyclins in U. maydis. Cells deficient in the Cru1 protein show defects in cell size, adaptation to nutritional conditions and cell separation. We propose that the phenotypes observed are a consequence of the inability of cru1 Delta cells to keep under control the levels of mitotic cyclins during G1. The levels of cru1 mRNA are controlled by nutritional conditions and cAMP levels, implicating the cAMP/protein kinase A pathway in the transmission of environmental conditions to the cell cycle. Cells deficient in Cru1 function are severely impaired in their ability to infect corn plants. This low rate of plant infection is caused by several defects. First, a low level of expression of the pheromone-encoding gene, mfa1, resulted in a low frequency of dikaryotic infective filament formation. Second, proliferation of fungal cells inside the plant is also affected, resulting in the inability to induce tumors in plants. Finally, the formation and germination of teliospores is also impaired. Our results support the hypothesis that virulence and cell cycle are connected in U. maydis. We propose that along the infection process, Cru1 is required to keep the appropriate G1 length necessary for the adaptation of fungal cells to host environment through the different stages of the plant infection.
在这里,我们鉴定出了APC激活因子Fizzy相关家族的一个新成员Cru1,它是玉米黑粉菌Ustilago maydis致病力所必需的。我们发现Cru1促进了U. maydis中B型细胞周期蛋白的降解。缺乏Cru1蛋白的细胞在细胞大小、对营养条件的适应以及细胞分离方面表现出缺陷。我们提出观察到的这些表型是由于cru1Δ细胞在G1期无法控制有丝分裂细胞周期蛋白水平所致。cru1 mRNA的水平受营养条件和cAMP水平的调控,这表明cAMP/蛋白激酶A途径参与了将环境条件传递至细胞周期的过程。缺乏Cru1功能的细胞感染玉米植株的能力严重受损。这种低水平的植株感染是由多种缺陷导致的。首先,信息素编码基因mfa1的低水平表达导致双核感染丝形成的频率较低。其次,真菌细胞在植物体内的增殖也受到影响,导致无法在植物中诱导肿瘤形成。最后,冬孢子的形成和萌发也受到损害。我们的结果支持了U. maydis中致病力与细胞周期相关的假说。我们提出在整个感染过程中,需要Cru1来维持适当的G1期长度,以使真菌细胞在植物感染的不同阶段适应宿主环境。