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Metabolic Comparison of Dorsal versus Ventral Cells Directly in the Live 8-cell Frog Embryo by Microprobe Single-cell CE-ESI-MS

机译:通过微探针单细胞CE-ESI-MS直接比较活的8细胞青蛙胚胎中背侧和腹侧细胞的代谢比较

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Single-cell mass spectrometry (MS) empowers the characterization of metabolomic changes as cells differentiate to different tissues during early embryogenesis. Using whole-cell dissection and capillary electrophoresis electrospray ionization (CE-ESI) MS, we recently uncovered metabolic cell-to-cell differences in the 8- and 16-cell embryo of the South African clawed frog (Xenopus laevis), raising the question whether metabolic cell heterogeneity is also detectable across the dorsal–ventral axis of the 8-cell embryo. Here, we tested this hypothesis directly in the live embryo by quantifying single-cell metabolism between the left dorsal-animal (D1L) and left ventral-animal (V1L) cell pairs in the same embryo using microprobe single-cell CE-ESI-MS in the positive ion mode. After quantifying ~70 molecular features, including 52 identified metabolites, that were reproducibly detected in both cells among n = 5 different embryos, we employed supervised multivariate data analysis based on partial least squares discriminant analysis (PLSDA) to compare metabolism between the cell types. Statistical analysis revealed that asparagine, glycine betaine, and a yet-unidentified molecule were statistically significantly enriched in the D1L cell compared to V1L (p < 0.05 and fold change ≥ 1.5). These results demonstrate that cells derived from the same hemisphere (animal pole) harbor different metabolic activity along the dorsal–ventral axis as early as the 8-cell stage. Apart from providing new evidence of metabolic cell heterogeneity during early embryogenesis, this study demonstrates that microprobe single-cell CE-ESI-MS enables the analysis of multiple single cells in the same live vertebrate embryo.
机译:单细胞质谱(MS)可以表征代谢组学变化,因为细胞在早期胚胎发生过程中会分化为不同的组织。使用全细胞解剖和毛细管电泳电喷雾电离(CE-ESI)MS,我们最近发现了南非爪蛙(Xenopus laevis)8和16细胞胚胎中新陈代谢的细胞间差异。跨8细胞胚胎的背腹轴是否也可以检测到代谢细胞异质性。在这里,我们通过使用微探针单细胞CE-ESI-MS定量同一胚胎中左背侧动物(D1L)和左腹侧动物(V1L)细胞对之间的单细胞代谢,直接在活胚胎中测试了该假设在正离子模式下。在量化了在n = 5个不同胚胎的两个细胞中可重复检测到的约70个分子特征(包括52个已鉴定的代谢物)后,我们采用了基于偏最小二乘判别分析(PLSDA)的监督多元数据分析来比较细胞类型之间的代谢。统计分析表明,与V1L相比,D1L细胞中的天冬酰胺,甘氨酸甜菜碱和一个尚未鉴定的分子在统计学上显着富集(p <0.05和倍数≥1.5)。这些结果表明,最早在8个细胞阶段,来自同一半球(动物极)的细胞沿背腹轴具有不同的代谢活性。除了提供早期胚胎发生过程中代谢细胞异质性的新证据外,这项研究还表明,微探针单细胞CE-ESI-MS能够分析同一活脊椎动物胚胎中的多个单细胞。

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