首页> 美国卫生研究院文献>Journal of Lipid Research >An ultraviolet spectrophotometric assay for the screening of sn-2-specific lipases using 13-O-dioleoyl-2-O-α-eleostearoyl-sn-glycerol as substrate
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An ultraviolet spectrophotometric assay for the screening of sn-2-specific lipases using 13-O-dioleoyl-2-O-α-eleostearoyl-sn-glycerol as substrate

机译:紫外分光光度法以13-O-二油酰基-2-O-α-硬脂酰酰基-sn-甘油为底物筛选sn-2特异性脂肪酶

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摘要

In the present study, we propose a continuous assay for the screening of sn-2 lipases by using triacylglycerols (TAGs) from Aleurites fordii seed (tung oil) and a synthetic TAG containing the α-eleostearic acid at the sn-2 position and the oleic acid (OA) at the sn-1 and sn-3 positions [1,3-O-dioleoyl-2-O-α-eleostearoyl-sn-glycerol (sn-OEO)]. Each TAG was coated into a microplate well, and the lipase activity was measured by optical density increase at 272 nm due to transition of α-eleostearic acid from the adsorbed to the soluble state. The sn-1,3-regioselective lipases human pancreatic lipase (HPL), LIP2 lipase from Yarrowia lipolytica (YLLIP2), and a known sn-2 lipase, Candida antarctica lipase A (CALA) were used to validate this method. TLC analysis of lipolysis products showed that the lipases tested were able to hydrolyze the sn-OEO and the tung oil TAGs, but only CALA hydrolyzed the sn-2 position. The ratio of initial velocities on sn-OEO and tung oil TAGs was used to estimate the sn-2 preference of lipases. CALA was the enzyme with the highest ratio (0.22 ± 0.015), whereas HPL and YLLIP2 showed much lower ratios (0.072 ± 0.026 and 0.038 ± 0.016, respectively). This continuous sn-2 lipase assay is compatible with a high sample throughput and thus can be applied to the screening of sn-2 lipases.
机译:在本研究中,我们提出了一种连续检测方法,该方法通过使用来自Aleurites fordii种子(桐油)的三酰基甘油(TAG)和在sn-2位置含α-硬脂酸的合成TAG进行连续检测,以筛选sn-2脂肪酶。 sn-1和sn-3位置的油酸(OA)[1,3-O-油酰-2-O-α-硬脂酰-sn-甘油(sn-OEO)]。将每个TAG包被到微板孔中,并且由于α-硬脂酸从吸附状态转变为可溶性状态,通过在272nm处的光密度增加来测量脂肪酶活性。使用sn-1,3-区域选择性脂肪酶人胰腺脂肪酶(HPL),解脂耶氏酵母的LIP2脂肪酶(YLLIP2)和已知的sn-2脂肪酶南极假丝酵母脂肪酶A(CALA)验证了该方法。脂解产物的TLC分析表明,测试的脂肪酶能够水解sn-OEO和桐油TAG,但是只有CALA水解了sn-2位置。用sn-OEO和桐油TAGs上的初始速度之比来估算脂肪酶的 sn -2偏好。 CALA是比率最高的酶(0.22±0.015),而HPL和YLLIP2比率低得多(分别为0.072±0.026和0.038±0.016)。这种连续的 sn -2脂肪酶测定与高样品通量兼容,因此可用于筛选 sn -2脂肪酶。

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