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Molecular analyses of dinosaur osteocytes support the presence of endogenous molecules

机译:恐龙骨细胞的分子分析支持内源性分子的存在

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摘要

The discovery of soft, transparent microstructures in dinosaur bone consistent in morphology with osteocytes was controversial. We hypothesize that, if original, these microstructures will have molecular features in common with extant osteocytes. We present immunological and mass spectrometry evidence for preservation of proteins comprising extant osteocytes (Actin, Tubulin, PHEX, Histone H4) in osteocytes recovered from two non-avian dinosaurs. Furthermore, antibodies to DNA show localized binding to these microstructures, which also react positively with DNA intercalating stains propidium iodide (PI) and 4',6'-diamidino-2-phenylindole dihydrochloride (DAPI). Each antibody binds dinosaur cells in patterns similar to extant cells. These data are the first to support preservation of multiple proteins and to present multiple lines of evidence for material consistent with DNA in dinosaurs, supporting the hypothesis that these structures were part of the once living animals. We propose mechanisms for preservation of cells and component molecules, and discuss implications for dinosaurian cellular biology.
机译:在恐龙骨骼中发现与骨细胞形态一致的柔软透明的微结构是有争议的。我们假设,如果原始的话,这些微结构将具有与现存骨细胞相同的分子特征。我们提供了从两个非禽类恐龙中回收的骨细胞中包含现存骨细胞(肌动蛋白,微管蛋白,PHEX,组蛋白H4)的蛋白质的免疫和质谱证据。此外,针对DNA的抗体显示出与这些微结构的局部结合,还与DNA嵌入染料碘化丙啶(PI)和4',6'-二mid基-2-苯基吲哚二盐酸盐(DAPI)发生阳性反应。每种抗体以与现存细胞相似的模式结合恐龙细胞。这些数据是第一个支持多种蛋白质保存并提供与恐龙中DNA一致的物质的多条证据的证据,支持了这些结构是曾经活着的动物的一部分的假设。我们提出了保存细胞和组成分子的机制,并讨论了对恐龙细胞生物学的意义。

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