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原始甲藻米氏原甲藻(Prorocentrum micans E.)核DNA中5-羟甲基尿嘧啶对胸腺嘧啶的高水平替代

A high level of thymine replacement by 5-hydroxymethyluracil in nuclear DNA of the primitive dinoflagellate Prorocentrum micans E.

作者信息

Herzog M, Soyer M O, Daney de Marcillac G

出版信息

Eur J Cell Biol. 1982 Jun;27(2):151-5.

PMID:6889504
Abstract

The nuclei of dinoflagellate protists display several distinctive features which make it difficult to assign these organisms as either eukaryotes or prokaryotes. We investigated some physical properties of purified nuclear DNA from the primitive species Prorocentrum micans. Nuclear DNA was separated on a CsCl gradient, into two components, which banded with relative densities of 1.7240 g/cm3 for the main peak and 1.7301 g/cm3 for the heavy shoulder. Thermal denaturation of nuclear DNA displayed a broad profile with a Tm of 71 degrees C. A large discrepancy was thus revealed between the apparent (G + C) content as determined from density (65.4%) and that from Tm (41.7%) while the actual (G + C) content determined by 32P nucleotide chromatography was shown to be 57.1%. The abnormal behaviour of this DNA was due to the presence of an unusual nucleotide which was identified as 5-hydroxymethyluridylate (HOMedUMP) from its chromatographic and U.V. spectral characteristics. It amounted to 13.4% of the total nucleotides and replaced an average of 62.8% of the expected thymidylate (dTMP). Composition analysis of different fractions of the CsCl gradient revealed that the unusual pyrimidine, 5-hydroxymethyluracil, was not uniformly interspersed with thymine in the DNA; the substitution rate increased with the relative density of the DNA. A minor component was also found, tentatively identified as 5-methylcytidylate (MedCMP) from its chromatographic properties, which amounted to less than 0.5 mol percent.

摘要

甲藻原生生物的细胞核呈现出几个独特的特征,这使得很难将这些生物归类为真核生物或原核生物。我们研究了原始物种海洋原甲藻纯化核DNA的一些物理特性。核DNA在氯化铯梯度上分离为两个组分,主峰的相对密度为1.7240 g/cm³,重肩峰的相对密度为1.7301 g/cm³。核DNA的热变性呈现出一个宽泛的图谱,熔解温度为71℃。因此,由密度测定的表观(G + C)含量(65.4%)与由熔解温度测定的表观(G + C)含量(41.7%)之间存在很大差异,而通过³²P核苷酸色谱法测定的实际(G + C)含量为57.1%。这种DNA的异常行为是由于存在一种不寻常的核苷酸,根据其色谱和紫外光谱特征鉴定为5-羟甲基尿苷酸(HOMedUMP)。它占总核苷酸的13.4%,平均取代了预期胸苷酸(dTMP)的62.8%。对氯化铯梯度不同组分的组成分析表明,这种不寻常的嘧啶5-羟甲基尿嘧啶在DNA中并非与胸腺嘧啶均匀穿插;取代率随DNA的相对密度增加而增加。还发现了一个次要组分,根据其色谱性质初步鉴定为5-甲基胞苷酸(MedCMP),其含量不到0.5摩尔百分比。

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