Department of Biotechnology, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
Fungal Genet Biol. 2010 Apr;47(4):318-31. doi: 10.1016/j.fgb.2009.12.011. Epub 2010 Jan 4.
Microbial secretory phospholipases A(2) (sPLA(2)s) are among the last discovered and least known members of this functionally diverse family of enzymes. We analyzed here two sPLA(2)s, named sPlaA and sPlaB, of the filamentous ascomycete Aspergillus oryzae. sPlaA and sPlaB consist of 222 and 160 amino acids, respectively, and share the conserved Cys and catalytic His-Asp residues typical of microbial sPLA(2)s. Two sPLA(2)s differ in pH optimum, Ca(2+) requirement and expression profile. The splaA mRNA was strongly upregulated in response to carbon starvation, oxidative stress and during conidiation, while splaB was constitutively expressed at low levels and was weakly upregulated by heat shock. Experiments with sPLA(2) overexpressing strains demonstrated that two enzymes produce subtly different phospholipid composition variations and also differ in their subcellular localization: sPlaA is most abundant in hyphal tips and secreted to the medium, whereas sPlaB predominantly localizes to the ER-like intracellular compartment. Both sPLA(2) overexpressing strains were defective in conidiation, which was more pronounced for sPlaB overexpressors. Although no major morphological abnormality was detected in either DeltasplaA or DeltasplaB mutants, hyphal growth of DeltasplaB, but not that of DeltasplaA, displayed increased sensitivity to H(2)O(2) treatment. These data indicate that two A. oryzae sPLA(2) enzymes display distinct, presumably non-redundant, physiological functions.
微生物分泌型磷脂酶 A2(sPLA2s)是该功能多样的酶家族中最后发现和了解最少的成员之一。我们在这里分析了丝状子囊菌米曲霉的两种 sPLA2,分别命名为 sPlaA 和 sPlaB。sPlaA 和 sPlaB 分别由 222 和 160 个氨基酸组成,并且都具有微生物 sPLA2 典型的保守 Cys 和催化 His-Asp 残基。两种 sPLA2 在 pH 最佳值、Ca2+需求和表达谱方面存在差异。splaA mRNA 在响应碳饥饿、氧化应激和产孢时强烈上调,而 splaB 则以低水平组成型表达,并且受到热休克的弱上调。用 sPLA2 过表达菌株进行的实验表明,两种酶产生细微不同的磷脂组成变化,并且在亚细胞定位方面也存在差异:sPlaA 在菌丝尖端最丰富,并分泌到培养基中,而 sPlaB 主要定位于 ER 样细胞内隔室。两种 sPLA2 过表达菌株的产孢能力均受损,sPlaB 过表达菌株更为明显。尽管在 DeltasplaA 或 DeltasplaB 突变体中未检测到明显的形态异常,但 DeltasplaB 的菌丝生长对 H2O2 处理的敏感性增加,而 DeltasplaA 的菌丝生长则没有。这些数据表明,米曲霉的两种 sPLA2 酶具有不同的、可能非冗余的生理功能。