单克隆抗体揭示了细胞骨架细丝和模型核肽之间的结构相似性。

Biomedical science Pub Date : 1991-01-01
T E Semenov, S F Barbashov, A N Surovaya, I I Fridlyanskaya
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引用次数: 0

摘要

细胞骨架被认为是一个非常重要的细胞成分,在不同细胞器之间的相互作用中起作用。然而,在许多情况下,真正的生化功能和细胞骨架细丝的一些结构方面仍然是未知的。已经建立了几种能产生单克隆抗体(Mab)的杂交瘤细胞系,该单克隆抗体可抵抗含有三肽的线性DNA - nh2 - vvtgvktgvktvt - co2h复合物。(Dns是5-甲基氨基萘-1-磺酸。)这种复合体的组织结构,其中DNA以紧密的形式存在,已经通过物理化学方法和电子显微镜得到了很好的表征。选择单克隆抗体Mab 66/9进行进一步研究,因为它与免疫DNA-肽复合物具有反应性,并且与DNA单独反应最小。在培养细胞的免疫荧光研究中,该单抗不识别任何核结构,但与细胞骨架中间丝和核层蛋白反应。因此,Mab 66/9似乎定义了存在于免疫dna -肽复合物和细胞骨架元件中的表位。表位可能是由寡肽的构象决定的,因为它没有在变性细胞裂解物中检测到。我们的观察结果提供了一些间接证据,支持最近一些出版物中假设的细胞骨架成分的dna结合特性。
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Monoclonal antibodies reveal structural similarity between cytoskeletal filaments and a model nucleopeptide.

The cytoskeleton is considered to be a very important cellular component, playing a role in the interactions between different organelles. However, in many cases the true biochemical functions and some of the structural aspects of cytoskeletal filaments are still unknown. Several hybridoma cell lines producing monoclonal antibodies (Mab) against a complex of linear DNA with the tridecapeptide Dns-NH2-VVTGVKTGVKTVT-CO2H have been established. (Dns is 5-methylaminonaphthalene-1-sulphonic acid.) The organization of this complex, in which the DNA is in a compact form, has been well-characterized previously by physicochemical methods and electron microscopy. A monoclonal antibody, Mab 66/9, was selected for further study on the basis of its reactivity with the immunizing DNA-peptide complex and minimal reaction with DNA alone. In immunofluorescence studies with cultured cells, this Mab did not recognize any nuclear structures, but reacted with cytoskeletal intermediate filaments and with nuclear lamins. Thus, Mab 66/9 appears to define an epitope present in the immunizing DNA-peptide complex and in cytoskeletal elements. The epitope is probably determined by the conformation of the oligopeptide since it was not detected in denatured cell lysates. Our observations provide some indirect evidence in support of the DNA-binding properties of cytoskeletal components which have been hypothesized in some recent publications.

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