Suppr超能文献

S1核酸酶对具有部分双链结构的单链核酸的水解作用。

S1 nuclease hydrolysis of single-stranded nucleic acids with partial double-stranded configuration.

作者信息

Rushizky G W, Shaternikov V A, Mozejko J H, Sober H A

出版信息

Biochemistry. 1975 Sep 23;14(19):4221-6. doi: 10.1021/bi00690a011.

Abstract

The single-strand specific nuclease S1 from Aspergillus oryzae (EC 3.1.4.21) was purified 600-fold in 16% yield from dried mycelia. Determination of the isoelectric point of S1 nuclease as 4.3-4.4 allowed adjustment of chromatographic conditions such that the enzyme was isolated free of contaminating ribonucleases T1 and T2. S1 nuclease so purified was used for removal of single-stranded portions from the RNA of the Escherichia coli phage MS2, which has a helical content of about 65% in vitro. At 23 degrees, increasing amounts of enzyme converted the RNA to mononucleotides in about equimolar base ratios. No small intermediates of chain length 2-8 were found. At 0 degrees, MS2 RNA hydrolysis was slower and reached, in exhaustive digests, a plateau where 70% of the substrate RNA remained insoluble in 66% EtOH. With [32P]MS2 RNA, strip chart counting of 6% acrylamide-6 M urea electrophoresis patterns of such digests gave recoveries of 80-91% in the form of defined oligomer bands. On 2.5% acrylamide-0.5% agarose gels, the molecular weights of the major oligomers were found to range from 25,000 to 41,000. Similar to purified tRNAArg used as a control, these oligomers were not resistant to pancreatic RNase-RNase T1 hydrolysis at 37 degrees, and were not bound on hydroxylapatite at 50 degrees in 0.14 M sodium phosphate (pH 6.8). Melting of the oligomers gave complex profiles without a clear Tm and showed an increase in A260 of 35% at 93 degrees over that at 28 degrees. Upon formaldehyde denaturation of MS2 RNA prior to S1 nuclease hydrolysis, no resistant oligomers were found.

摘要

米曲霉的单链特异性核酸酶S1(EC 3.1.4.21)从干燥菌丝体中纯化,纯化600倍,产率为16%。测定S1核酸酶的等电点为4.3 - 4.4,这使得可以调整色谱条件,从而分离出不含污染性核糖核酸酶T1和T2的该酶。如此纯化得到的S1核酸酶用于去除大肠杆菌噬菌体MS2 RNA的单链部分,该噬菌体RNA在体外的螺旋含量约为65%。在23℃时,增加的酶量能以大约等摩尔碱基比将RNA转化为单核苷酸。未发现链长为2 - 8的小中间体。在0℃时,MS2 RNA水解较慢,在彻底消化时达到一个平台期,此时70%的底物RNA在66%乙醇中仍不溶。对于[32P]MS2 RNA,对这种消化产物的6%丙烯酰胺 - 6M尿素电泳图谱进行带状图计数,以确定的寡聚体条带形式的回收率为80 - 91%。在2.5%丙烯酰胺 - 0.5%琼脂糖凝胶上,发现主要寡聚体的分子量范围为25,000至41,000。与用作对照的纯化tRNAArg相似,这些寡聚体在37℃时对胰核糖核酸酶 - 核糖核酸酶T1水解不具有抗性,并且在0.14M磷酸钠(pH 6.8)中50℃时不结合在羟基磷灰石上。寡聚体的解链给出复杂的图谱,没有明确的解链温度,并且在93℃时A260比28℃时增加35%。在S1核酸酶水解之前对MS2 RNA进行甲醛变性处理后,未发现抗性寡聚体。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验