Li Ming-Chun, Sun Ying, Zhang Qi, Xing Lai-Jun
Department of Microbiology, NanKai University, Tianjin 300071, China.
Sheng Wu Gong Cheng Xue Bao. 2004 Jan;20(1):34-8.
Gamma-linolenic acid (GLA, C18:3delta6 ,9,12), an essential polyunsaturated fatty acid, plays an important role in hormone regulation and fatty acid metabolization. Delta6-fatty acid desaturase (D6D) is the rate-limiting enzyme of the desaturation of linoleic acid (C18:2delta9,12) in the production of gamma-linolenic acid. A deficiency of GLA may have occurred when delta6-fatty acid desaturase activity decreases in aging, stress, diabetes, eczema, and some infections. To establish a new expression system for delta6-fatty acid desaturase gene in Pichia pastoris, which is an increasingly popular heterologous gene expression system, a gene encoding delta6-fatty acid desaturase from Mortieralla alpina was isolated by PCR amplification. The PCR product was then digested by EcoR I and Not I and subcloned into the intracellular expression vector pPIC3.5K to generate the recombinant vector pPIC3.5K-MA6. The resulting vector was linearized by Sac I and electroporated into P. pastoris SMD1168 (his- pep-) host cells. After electroporation, aliquots were spreaded on the MDS plates and incubated at 30 degrees C for three days until colonies appeared. Those transformants were subsequently screened for clones with high copy number by using the YPD plates containing G418. To identify the D6D constructs that were produced, chromosomal DNA of the transformants were prepared and used as template for PCR with the primer 5' AOX and 3' AOX. The PCR product of Mut+ recombinants was shown as a band of 1.38 kb of D6D gene and the product of 2.2 kb of AOX1 gene, while the product of Mut(s) transformants only was shown as a band of 1.38 kb of the D6D gene.To further confirm the transformants containing a functional D6D gene, the positive clones were selected and induced by methanol for expression. Those induced cultures were taken for analyses of the intracellular fatty acid composition by GC. The resultant chromatograms of fatty acid methyl esters showed that a novel peak was detected, which was not apparent in the case of control. Comparisons of the retention times of the newly yielded peaks with those of authentic standards have anticipated that the fatty acid is GLA. And this prospects was positively supported by definitive assignments of the compounds by GCMS analyses. Thus, the active delta6-fatty acid desaturase was expressed intracellularly in P. pastoris and gamma-linolenic acid reached 16.26% of the total fatty acid in recombinant P. pastoris strains. It was the first report about the expression of Mortieralla alpina D6D gene in P. pastoris.
γ-亚麻酸(GLA,C18:3delta6,9,12)是一种必需的多不饱和脂肪酸,在激素调节和脂肪酸代谢中发挥着重要作用。δ6-脂肪酸去饱和酶(D6D)是γ-亚麻酸生成过程中亚油酸(C18:2delta9,12)去饱和的限速酶。在衰老、应激、糖尿病、湿疹和一些感染情况下,当δ6-脂肪酸去饱和酶活性降低时,可能会出现GLA缺乏。为了在毕赤酵母中建立一种新的δ6-脂肪酸去饱和酶基因表达系统,毕赤酵母是一种越来越受欢迎的异源基因表达系统,通过PCR扩增从高山被孢霉中分离出编码δ6-脂肪酸去饱和酶的基因。然后将PCR产物用EcoR I和Not I酶切,并亚克隆到胞内表达载体pPIC3.5K中,构建重组载体pPIC3.5K-MA6。将所得载体用Sac I线性化,然后电穿孔导入毕赤酵母SMD1168(his- pep-)宿主细胞。电穿孔后,取等分试样涂布在MDS平板上,于30℃培养3天,直至出现菌落。随后使用含有G418的YPD平板筛选那些具有高拷贝数的克隆。为了鉴定所产生的D6D构建体,制备转化子的染色体DNA,并用作5'AOX和3'AOX引物PCR的模板。Mut+重组体的PCR产物显示为一条1.38 kb的D6D基因条带和一条2.2 kb的AOX1基因条带,而Mut(s)转化子的产物仅显示为一条1.38 kb的D6D基因条带。为了进一步确认含有功能性D6D基因的转化子,选择阳性克隆并用甲醇诱导表达。取那些诱导培养物进行GC分析细胞内脂肪酸组成。所得脂肪酸甲酯色谱图显示检测到一个新峰,在对照情况下不明显。将新产生峰的保留时间与标准品的保留时间进行比较,预计该脂肪酸为GLA。GCMS分析对化合物的明确鉴定为这一推测提供了有力支持。因此,活性δ6-脂肪酸去饱和酶在毕赤酵母细胞内表达,γ-亚麻酸在重组毕赤酵母菌株中占总脂肪酸的16.26%。这是关于高山被孢霉D6D基因在毕赤酵母中表达的首次报道。