d'Enfert C, Bonini B M, Zapella P D, Fontaine T, da Silva A M, Terenzi H F
Laboratoire des Aspergillus, Institut Pasteur, 25 rue du Docteur Roux, 75724 Paris Cedex 15, France.
Mol Microbiol. 1999 May;32(3):471-83. doi: 10.1046/j.1365-2958.1999.01327.x.
A cAMP-activatable Ca2+-dependent neutral trehalase was identified in germinating conidia of Aspergillus nidulans and Neurospora crassa. Using a PCR approach, A. nidulans and N. crassa genes encoding homologues of the neutral trehalases found in several yeasts were cloned and sequenced. Disruption of the AntreB gene encoding A. nidulans neutral trehalase revealed that it is responsible for intracellular trehalose mobilization at the onset of conidial germination, and that this phenomenon is partially involved in the transient accumulation of glycerol in the germinating conidia. Although trehalose mobilization is not essential for the completion of spore germination and filamentous growth in A. nidulans, it is required to achieve wild-type germination rates under carbon limitation, suggesting that intracellular trehalose can partially contribute the energy requirements of spore germination. Furthermore, it was shown that trehalose accumulation in A. nidulans can protect germinating conidia against an otherwise lethal heat shock. Because transcription of the treB genes is not increased after a heat shock but induced upon heat shock recovery, it is proposed that, in filamentous fungi, mobilization of trehalose during the return to appropriate growth is promoted by transcriptional and post-translational regulatory mechanisms, in particular cAMP-dependent protein kinase-mediated phosphorylation.
在构巢曲霉和粗糙脉孢菌的萌发分生孢子中鉴定出一种cAMP可激活的Ca2+依赖性中性海藻糖酶。采用PCR方法,克隆并测序了构巢曲霉和粗糙脉孢菌中编码几种酵母中发现的中性海藻糖酶同源物的基因。编码构巢曲霉中性海藻糖酶的AntreB基因的破坏表明,它负责分生孢子萌发开始时细胞内海藻糖的动员,并且这种现象部分参与了萌发分生孢子中甘油的瞬时积累。虽然海藻糖的动员对于构巢曲霉中孢子萌发和丝状生长的完成不是必需的,但在碳限制下达到野生型萌发率是必需的,这表明细胞内海藻糖可以部分满足孢子萌发的能量需求。此外,研究表明构巢曲霉中海藻糖的积累可以保护萌发的分生孢子免受否则会致命的热休克。由于treB基因的转录在热休克后没有增加,但在热休克恢复时被诱导,因此提出,在丝状真菌中,在恢复到适当生长期间海藻糖的动员是由转录和翻译后调节机制促进的,特别是cAMP依赖性蛋白激酶介导的磷酸化。