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Pan-specific antibodies as novel tools to detect valyllysine

机译:泛特异性抗体作为检测缬氨酸的新型工具

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Objective: Amino acyl modification of lysine residues is an essential mechanism of nutrient sensing that regulates various biological functions including reproduction. At present, the lack of pan-specific antibodies for a recently identified lysine valylation hinders the characterization and detection of this modification. The objective of this study is to raise pan-specific antibodies that may facilitate the identification of novel expression patterns of lysine valylation. Methods: Chicken ovalbumin was valylated as an immunogen to raise polyclonal antibodies (PcAbs) in rabbits. The population of the pan-specific antibodies recognizing valylated lysine was purified using the chemically synthesized valylated peptides consisting of random amino acids. The specificity of the antibodies was evaluated using ELISA, dot blots, Western blots, and immunohistochemistry (IHC) staining in human epididymis as well. Results: A preliminary and simple strategy to make an anti-valylated lysine PcAb was developed. The recognition of the antibodies to valyllysine was evaluated as pan specific. This was useful for the detection of the newly identified valyl modification using ELISA, dot blots, and Western blots. The antibodies were also successfully utilized in IHC assays, which revealed novel valyllysine modification patterns in epididymis tissues of human. Conclusions: A new antibody tool was provided for the study of lysine valylation. The novel expression patterns of valyllysine in the epididymis suggest that this modification may be involved in sperm maturation.
机译:目的:氨基酰基改性赖氨酸残基是营养传感的必要机制,调节各种生物学功能,包括繁殖。目前,缺乏用于最近鉴定的赖氨酸瓦基化的PAN特异性抗体阻碍了这种改性的表征和检测。本研究的目的是提高可能促进鉴定赖氨酸缩醛的新型表达模式的泛特异性抗体。方法:鸡卵黄白作为一种免疫原,以培养兔中的多克隆抗体(PcAbs)。使用由随机氨基酸组成的化学合成的借氧甲酰化肽纯化识别易甲基化赖氨酸的PAN特异性抗体的群体。使用ELISA,DOT印迹,蛋白质印迹和免疫组织化学(IHC)染色的抗体的特异性也在人物附睾中进行评价。结果:制定抗缬氨酸赖氨酸PCAB的初步和简单的策略。将鉴别抗体对缬氨酸的识别进行评价为PAN特异性。这对于检测使用ELISA,DOT印迹和Western印迹检测新鉴定的缬氨酸改性。 IHC测定中也成功地利用了抗体,其揭示了人类附睾组织中的新型缬氨酸改性模式。结论:提供了一种用于研究赖氨酸缩醛的新抗体工具。附睾中的缬氨酸的新型表达模式表明该修饰可以参与精子成熟。

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