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相关的双功能限制内切酶-甲基转移酶三联体:TspDTI、Tth111II/TthHB27I 和 TsoI,具有不同的特异性。

Related bifunctional restriction endonuclease-methyltransferase triplets: TspDTI, Tth111II/TthHB27I and TsoI with distinct specificities.

机构信息

Division of Theoretical Physical Chemistry, Department of Chemistry, University of Gdansk, Poland.

出版信息

BMC Mol Biol. 2012 Apr 10;13:13. doi: 10.1186/1471-2199-13-13.

Abstract

BACKGROUND

We previously defined a family of restriction endonucleases (REases) from Thermus sp., which share common biochemical and biophysical features, such as the fusion of both the nuclease and methyltransferase (MTase) activities in a single polypeptide, cleavage at a distance from the recognition site, large molecular size, modulation of activity by S-adenosylmethionine (SAM), and incomplete cleavage of the substrate DNA. Members include related thermophilic REases with five distinct specificities: TspGWI, TaqII, Tth111II/TthHB27I, TspDTI and TsoI.

RESULTS

TspDTI, TsoI and isoschizomers Tth111II/TthHB27I recognize different, but related sequences: 5'-ATGAA-3', 5'-TARCCA-3' and 5'-CAARCA-3' respectively. Their amino acid sequences are similar, which is unusual among REases of different specificity. To gain insight into this group of REases, TspDTI, the prototype member of the Thermus sp. enzyme family, was cloned and characterized using a recently developed method for partially cleaving REases.

CONCLUSIONS

TspDTI, TsoI and isoschizomers Tth111II/TthHB27I are closely related bifunctional enzymes. They comprise a tandem arrangement of Type I-like domains, like other Type IIC enzymes (those with a fusion of a REase and MTase domains), e.g. TspGWI, TaqII and MmeI, but their sequences are only remotely similar to these previously characterized enzymes. The characterization of TspDTI, a prototype member of this group, extends our understanding of sequence-function relationships among multifunctional restriction-modification enzymes.

摘要

背景

我们之前定义了一组来自 Thermus sp. 的限制内切酶(REases),它们具有共同的生化和物理特性,例如将核酸内切酶和甲基转移酶(MTase)活性融合在单一多肽中、在识别位点远处切割、分子量大、S-腺苷甲硫氨酸(SAM)调节活性以及不完全切割底物 DNA。成员包括具有五个不同特异性的相关嗜热 REases:TspGWI、TaqII、Tth111II/TthHB27I、TspDTI 和 TsoI。

结果

TspDTI、TsoI 和同裂酶 Tth111II/TthHB27I 分别识别不同但相关的序列:5'-ATGAA-3'、5'-TARCCA-3' 和 5'-CAARCA-3'。它们的氨基酸序列相似,这在不同特异性的 REases 中并不常见。为了深入了解这组 REases,我们使用最近开发的部分切割 REases 的方法克隆和表征了 Thermus sp. 酶家族的原型成员 TspDTI。

结论

TspDTI、TsoI 和同裂酶 Tth111II/TthHB27I 是密切相关的双功能酶。它们由 Type I-like 结构域的串联排列组成,与其他 Type IIC 酶(那些融合了 REase 和 MTase 结构域的酶)相似,例如 TspGWI、TaqII 和 MmeI,但它们的序列与这些先前表征的酶仅有远程相似性。对该组原型成员 TspDTI 的表征扩展了我们对多功能限制修饰酶序列-功能关系的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/741f/3384240/580f3805c40a/1471-2199-13-13-1.jpg

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