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Proteomic profiling of the stem cell response to retinoic acid and synthetic retinoid analogues: identification of major retinoid-inducible proteins

机译:蛋白质组学分析的干细胞对视黄酸和合成类维生素A类似物的反应:主要类维生素A诱导蛋白的鉴定。

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摘要

The natural retinoid, all-trans retinoic acid (ATRA), is widely used to direct the in vitro differentiation of stem cells. However, substantial degradation and isomerisation of ATRA in response to UV-vis light has serious implications with regard to experimental reproducibility and standardisation. We present the novel application of proteomic biomarker profiling technology to stem cell lysates to rapidly compare the differentiation effects of ATRA with those of two stable synthetic retinoid analogues, EC19 and EC23, which have both been shown to induce differentiation in the embryonal carcinoma cell line TERA2.cl.SP12. MALDI-TOF MS (matrix-assisted laser desorption ionisation time-of-fiight mass spectrometry) protein profiles support previous findings into the functional relationships between these compounds in the TERA2.cl.SP12 line. Subsequent analysis of protein peak data enabled the semi-quantitative comparison of individual retinoid-responsive proteins. We have used ion exchange chromatographic protein separation to enrich for retinoid-inducible proteins, thereby facilitating their identification from SDS-PAGE gels. The cellular retinoid-responsive proteins CRABP-I, CRABP-II, and CRBP-I were up-regulated in response to ATRA and EC23, indicating a bonafide retinoid pathway response to the synthetic compound. In addition, the actin filament regulatory protein profilin-1 and the microtubule regulator stathmin were also elevated following treatment with both ATRA and EC23. The up-regulation of profilin-1 and stathmin associated with retinoid-induced neural differentiation correlates with their known roles in cytoskeletal reorganisation during axonal development. Immunological analysis via western blotting confirmed the identification of CRABP-I, profilin-1 and stathmin, and supported their observed regulation in response to the retinoid treatments.
机译:天然类维生素A,全反式维甲酸(ATRA)被广泛用于指导干细胞的体外分化。但是,ATRA对紫外线可见光的降解和异构化对实验的再现性和标准化具有严重的影响。我们介绍了蛋白质组学生物标志物分析技术在干细胞裂解物中的新应用,以快速比较ATRA与两种稳定的合成类维生素A类似物EC19和EC23的分化效果,这两种化合物均已被证明可诱导胚胎癌细胞系TERA2分化。 .cl.SP12。 MALDI-TOF MS(基质辅助激光解吸电离飞行时间质谱)蛋白谱支持TERA2.cl.SP12系列中这些化合物之间功能关系的先前发现。随后对蛋白质峰数据进行分析,可以对类视黄醇敏感蛋白进行半定量比较。我们已经使用离子交换色谱分离蛋白质来富集类维生素A诱导蛋白,从而有助于从SDS-PAGE凝胶中鉴定它们。响应ATRA和EC23,细胞类视黄醇响应蛋白CRABP-1,CRABP-II和CRBP-1上调,表明对合成化合物有真正的类视黄醇途径响应。另外,肌动蛋白丝调节蛋白profilin-1和微管调节蛋白stathmin在用ATRA和EC23治疗后也升高。类视黄醇诱导的神经分化相关的profilin-1和stathmin的上调与它们在轴突发育过程中细胞骨架重组中的已知作用有关。通过蛋白质印迹进行的免疫学分析证实了CRABP-1,profilin-1和stathmin的鉴定,并支持了它们对类维生素A处理的观察到的调节作用。

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  • 来源
    《Molecular BioSystems》 |2009年第5期|458-471|共14页
  • 作者单位

    School of Biological and Biomedical Sciences, Durham University, Science Laboratories, South Road, Durham, UK DM 3LE Reinnervate Limited, Old Shire Hall, Old Elvet, Durham, UK DH1 3HP;

    School of Biological and Biomedical Sciences, Durham University, Science Laboratories, South Road, Durham, UK DM 3LE Reinnervate Limited, Old Shire Hall, Old Elvet, Durham, UK DH1 3HP;

    Department of Chemistry, Durham University, Science Laboratories, South Road, Durham, UK DH1 3LE;

    Department of Chemistry, Durham University, Science Laboratories, South Road, Durham, UK DH1 3LE;

    School of Biological and Biomedical Sciences, Durham University, Science Laboratories, South Road, Durham, UK DM 3LE;

    Department of Chemistry, Durham University, Science Laboratories, South Road, Durham, UK DH1 3LE;

    Department of Chemistry, Durham University, Science Laboratories, South Road, Durham, UK DH1 3LE;

    School of Biological and Biomedical Sciences, Durham University, Science Laboratories, South Road, Durham, UK DM 3LE Reinnervate Limited, Old Shire Hall, Old Elvet, Durham, UK DH1 3HP;

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