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Imaging Mass Spectrometry Reveals Unique Protein Profiles during Embryo Implantation

机译:成像质谱揭示了胚胎植入过程中独特的蛋白质谱

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摘要

A reciprocal interaction between the implantation-competent blastocyst and receptive uterus is an absolute requirement for implantation, a process crucial for pregnancy success. A comprehensive understanding of this interaction has yet to be realized. One major difficulty in clearly defining this discourse is the complexity of the implantation process involving heterogeneous cell types of both the uterus and blastocyst, each endowed with unique molecular signatures that show dynamic changes during the course of pregnancy. Whereas gene expression studies by in situ hybridization or immunohistochemistry have shown differential expression patterns of specific genes during implantation, there is no report how numerous signaling proteins are spatially displayed at specific times and stages of implantation in the context of blastocyst-uterine juxtaposition. Using in situ imaging (matrix assisted laser desorption/ionization) mass spectrometry directly on uterine sections, here we provide molecular composition, relative abundance, and spatial distribution of a large number of proteins during the periimplantation period. This approach has allowed us for the first time to generate in situ proteome profiles of implantation and interimplantation sites in mice in a region- and stage-specific manner with the progression of implantation. This application is reliable because patterns of expression of several proteins displayed by in situ imaging mass spectrometry correlate well with in situ hybridization results. More interestingly, the use of this approach has provided new insights regarding uterine biology of cytosolic phospholipase A2α null females that show implantation defects.
机译:具有植入能力的囊胚和受孕子宫之间的相互作用是植入的绝对必要条件,这对成功怀孕至关重要。对这种相互作用的全面理解尚待实现。明确定义这一论述的一个主要困难是植入过程的复杂性,涉及子宫和囊胚的异种细胞类型,每种细胞都具有独特的分子标记,这些标记在妊娠过程中显示出动态变化。尽管通过原位杂交或免疫组织化学进行的基因表达研究显示了植入过程中特定基因的差异表达模式,但尚无报道在胚泡-子宫并置的情况下,在特定的植入时间和阶段在空间上展示了大量信号蛋白。直接在子宫切片上使用原位成像(基质辅助激光解吸/电离)质谱,这里我们提供了植入前后的大量蛋白质的分子组成,相对丰度和空间分布。这种方法使我们第一次能够随着植入的进行,以区域和阶段特定的方式在小鼠体内生成植入和植入间位的原位蛋白质组图谱。该应用是可靠的,因为通过原位成像质谱显示的几种蛋白质的表达模式与原位杂交结果密切相关。更有趣的是,这种方法的使用为显示植入缺陷的胞质磷脂酶A2α无效雌性的子宫生物学提供了新的见解。

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