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定量藿烷类分析能够实现可靠的模式检测以及不同实验室之间的比较。

Quantitative hopanoid analysis enables robust pattern detection and comparison between laboratories.

作者信息

Wu C-H, Kong L, Bialecka-Fornal M, Park S, Thompson A L, Kulkarni G, Conway S J, Newman D K

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA, USA.

Howard Hughes Medical Institute, Pasadena, CA, USA.

出版信息

Geobiology. 2015 Jul;13(4):391-407. doi: 10.1111/gbi.12132. Epub 2015 Apr 11.

Abstract

Hopanoids are steroid-like lipids from the isoprenoid family that are produced primarily by bacteria. Hopanes, molecular fossils of hopanoids, offer the potential to provide insight into environmental transitions on the early Earth, if their sources and biological functions can be constrained. Semiquantitative methods for mass spectrometric analysis of hopanoids from cultures and environmental samples have been developed in the last two decades. However, the structural diversity of hopanoids, and possible variability in their ionization efficiencies on different instruments, have thus far precluded robust quantification and hindered comparison of results between laboratories. These ionization inconsistencies give rise to the need to calibrate individual instruments with purified hopanoids to reliably quantify hopanoids. Here, we present new approaches to obtain both purified and synthetic quantification standards. We optimized 2-methylhopanoid production in Rhodopseudomonas palustris TIE-1 and purified 2Me-diplopterol, 2Me-bacteriohopanetetrol (2Me-BHT), and their unmethylated species (diplopterol and BHT). We found that 2-methylation decreases the signal intensity of diplopterol between 2 and 34% depending on the instrument used to detect it, but decreases the BHT signal less than 5%. In addition, 2Me-diplopterol produces 10× higher ion counts than equivalent quantities of 2Me-BHT. Similar deviations were also observed using a flame ionization detector for signal quantification in GC. In LC-MS, however, 2Me-BHT produces 11× higher ion counts than 2Me-diplopterol but only 1.2× higher ion counts than the sterol standard pregnane acetate. To further improve quantification, we synthesized tetradeuterated (D4) diplopterol, a precursor for a variety of hopanoids. LC-MS analysis on a mixture of (D4)-diplopterol and phospholipids showed that under the influence of co-eluted phospholipids, the D4-diplopterol internal standard quantifies diplopterol more accurately than external diplopterol standards. These new quantitative approaches permit meaningful comparisons between studies, allowing more accurate hopanoid pattern detection in both laboratory and environmental samples.

摘要

藿烷类化合物是类异戊二烯家族中的类固醇样脂质,主要由细菌产生。藿烷作为藿烷类化合物的分子化石,如果其来源和生物学功能能够得到限制,就有可能为洞察早期地球的环境转变提供线索。在过去二十年中,已经开发出了用于对培养物和环境样品中的藿烷类化合物进行质谱分析的半定量方法。然而,藿烷类化合物的结构多样性以及它们在不同仪器上电离效率的可能变化,迄今为止阻碍了可靠的定量分析,并妨碍了不同实验室之间结果的比较。这些电离不一致性导致需要用纯化的藿烷类化合物对各个仪器进行校准,以可靠地定量藿烷类化合物。在此,我们提出了获得纯化和合成定量标准品的新方法。我们优化了沼泽红假单胞菌TIE-1中2-甲基藿烷类化合物的生产,并纯化了2-甲基双萜醇、2-甲基细菌藿四醇(2Me-BHT)及其未甲基化的物种(双萜醇和BHT)。我们发现,2-甲基化会使双萜醇的信号强度降低2%至34%,具体取决于用于检测它的仪器,但使BHT信号降低不到5%。此外,2Me-双萜醇产生的离子计数比等量的2Me-BHT高10倍。在气相色谱中使用火焰离子化检测器进行信号定量时也观察到了类似的偏差。然而,在液相色谱-质谱联用中,2Me-BHT产生的离子计数比2Me-双萜醇高11倍,但仅比甾醇标准品醋酸孕烷高1.2倍。为了进一步改进定量分析,我们合成了四氘代(D4)双萜醇,它是多种藿烷类化合物的前体。对(D4)-双萜醇和磷脂混合物的液相色谱-质谱分析表明,在共洗脱磷脂的影响下,D4-双萜醇内标比外部双萜醇标准品更准确地定量双萜醇。这些新的定量方法允许在不同研究之间进行有意义的比较,从而在实验室和环境样品中更准确地检测藿烷类化合物模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b438/4676935/d6f72ea16fa7/gbi0013-0391-f2.jpg

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