Batista Wagner L, Barros Tânia F, Goldman Gustavo H, Morais Flávia V, Puccia Rosana
Departamento de Microbiologia, Imunologia e Parasitologia, Universidade Federal de São Paulo, UNIFESP, Brazil.
Fungal Genet Biol. 2007 May;44(5):347-56. doi: 10.1016/j.fgb.2006.11.002. Epub 2006 Dec 12.
The MDJ1/LON locus is conserved among pathogenic dimorphic fungi. We have mapped using DNase I footprinting and mobility shift assays three putative heat shock elements and one AP-1 binding domain (ARE) in the 5' intergenic region shared by PbMDJ1and PbLON (ML) from Paracoccidioides brasiliensis. The region bearing an ARE-like towards PbLON also has an opposite skn-1-like element. We studied genetically and pathogenically distinct isolates Pb18 and Pb3, where ML is polymorphic and the number of elements detected was higher. The functionality of the elements was suggested by the stimulatory response of both genes to heat shock and oxidative stress. Co-regulation occurred upon heat shock from 36 to 42 degrees C and, only in Pb3, also during mycelium to yeast transformation (26-36 degrees C). In Pb18, PbMDJ1 seemed to be preferentially expressed in yeast. Our study might help understand regulation of genes involved in fungal adaptation to the host.
MDJ1/LON基因座在致病性双态真菌中是保守的。我们利用DNase I足迹法和迁移率变动分析,在巴西副球孢子菌的PbMDJ1和PbLON(ML)共有的5'基因间隔区中定位了三个假定的热休克元件和一个AP-1结合域(ARE)。朝向PbLON的具有类似ARE的区域也有一个相反的skn-1样元件。我们研究了遗传和致病性不同的分离株Pb18和Pb3,其中ML是多态性的,检测到的元件数量更多。热休克和氧化应激对这两个基因的刺激反应表明了这些元件的功能。在36至42摄氏度的热休克时发生共同调节,并且仅在Pb3中,在菌丝体向酵母转化(26 - 36摄氏度)期间也发生共同调节。在Pb18中,PbMDJ1似乎在酵母中优先表达。我们的研究可能有助于理解参与真菌适应宿主的基因的调控。