State Key Laboratory of Food Science and Technology, School of Food Science and Technology , Jiangnan University , Wuxi 214122 , P.R. China.
Colin Ratledge Center for Microbial Lipids, School of Agriculture Engineering and Food Science , Shandong University of Technology , Zibo 255000 , P.R. China.
J Agric Food Chem. 2018 Mar 21;66(11):2796-2804. doi: 10.1021/acs.jafc.7b06024. Epub 2018 Mar 8.
Although multiple roles of lipases have been reported in yeasts and microalgae, the functions of lipases have not been studied in oleaginous filamentous fungi. Lipase Lip6 has been reported in the oleaginous filamentous fungus Mucor circinelloides with the consensus lipase motif GXSXG and the typical acyltransferase motif of H-(X)-D. To demonstrate that Lip6 might play dual roles as a lipase and an acyltransferase, we performed site-directed mutagenesis in the lipase motif and the acyltransferase motif of Lip6. Mutation in the lipase motif increased cell biomass by 12%-18% and promoted lipid accumulation by 9%-24%, while mutation in the acyltransferase motif induced lipid degradation. In vitro, purified Lip6 had a slight lipase activity but had a stronger phospholipid:DAG acyltransferase activity. Enzyme activity assays in vivo and phospholipid synthesis pathway analysis suggested that phosphatidyl serine and phosphatidyl ethanolamine can be the supplier of a fatty acyl moiety to form TAG in M. circinelloides.
尽管在酵母和微藻中已经报道了脂肪酶的多种作用,但脂肪酶在油脂丝状真菌中的功能尚未得到研究。在油脂丝状真菌卷枝毛霉中已经报道了脂肪酶 Lip6,它具有 GXSXG 脂肪酶基序和 H-(X)-D 典型酰基转移酶基序。为了证明 Lip6 可能具有脂肪酶和酰基转移酶的双重作用,我们在 Lip6 的脂肪酶基序和酰基转移酶基序中进行了定点突变。脂肪酶基序的突变使细胞生物量增加了 12%-18%,促进了 9%-24%的脂质积累,而酰基转移酶基序的突变则诱导了脂质降解。体外实验表明,纯化的 Lip6 具有轻微的脂肪酶活性,但具有更强的磷脂:DAG 酰基转移酶活性。体内酶活性测定和磷脂合成途径分析表明,在卷枝毛霉中,磷脂酰丝氨酸和磷脂酰乙醇胺可以作为脂肪酸部分的供体,形成 TAG。