Etxebeste Oier, Ni Min, Garzia Aitor, Kwon Nak-Jung, Fischer Reinhard, Yu Jae-Hyuk, Espeso Eduardo A, Ugalde Unai
University of The Basque Country, Biochemistry II, Manuel de Lardizabal 3, 20018, San Sebastian, Spain.
Eukaryot Cell. 2008 Jan;7(1):38-48. doi: 10.1128/EC.00207-07. Epub 2007 Nov 9.
The fungal colony is a complex multicellular unit consisting of various cell types and functions. Asexual spore formation (conidiation) is integrated through sensory and regulatory elements into the general morphogenetic plan, in which the activation of the transcription factor BrlA is the first determining step. A number of early regulatory elements acting upstream of BrlA (fluG and flbA-E) have been identified, but their functional relations remain to be further investigated. In this report we describe FlbB as a putative basic-zipper-type transcription factor restricted to filamentous fungi. FlbB accumulates at the hyphal apex during early vegetative growth but is later found in apical nuclei, suggesting that an activating modification triggers nuclear import. Moreover, proper temporal and quantitative expression of FlbB is a prerequisite for brlA transcription, and misscheduled overexpression inhibits conidiation. We also present evidence that FlbB activation results in the production of a second diffusible signal, acting downstream from the FluG factor, to induce conidiation.
真菌菌落是一个复杂的多细胞单元,由各种细胞类型和功能组成。无性孢子形成(分生孢子形成)通过感官和调节元件整合到一般形态发生计划中,其中转录因子BrlA的激活是第一个决定性步骤。已经鉴定出一些在BrlA上游起作用的早期调节元件(fluG和flbA-E),但其功能关系仍有待进一步研究。在本报告中,我们将FlbB描述为一种推定的碱性拉链型转录因子,仅限于丝状真菌。FlbB在早期营养生长期间在菌丝顶端积累,但后来在顶端细胞核中发现,这表明一种激活修饰触发核输入。此外,FlbB的正确时间和定量表达是brlA转录的先决条件,错误安排的过表达会抑制分生孢子形成。我们还提供证据表明,FlbB激活会产生第二种可扩散信号,该信号在FluG因子下游起作用,以诱导分生孢子形成。