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限制性内切核酸酶分子识别中的异质性:渗透压和流体静压力对BamHI、Pvu II和EcoRV特异性的影响

Heterogeneity in molecular recognition by restriction endonucleases: osmotic and hydrostatic pressure effects on BamHI, Pvu II, and EcoRV specificity.

作者信息

Robinson C R, Sligar S G

机构信息

School of Chemical Sciences, University of Illinois at Urbana-Champaign 61801, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Apr 11;92(8):3444-8. doi: 10.1073/pnas.92.8.3444.

Abstract

The cleavage specificity of the Pvu II and BamHI restriction endonucleases is found to be dramatically reduced at elevated osmotic pressure. Relaxation in specificity of these otherwise highly accurate and specific enzymes, previously termed "star activity," is uniquely correlated with osmotic pressure between 0 and 100 atmospheres. No other colligative solvent property exhibits a uniform correlation with star activity for all of the compounds tested. Application of hydrostatic pressure counteracts the effects of osmotic pressure and restores the natural selectivity of the enzymes for their canonical recognition sequences. These results indicate that water solvation plays an important role in the site-specific recognition of DNA by many restriction enzymes. Osmotic pressure did not induce an analogous effect on the specificity of the EcoRV endonuclease, implying that selective hydration effects do not participate in DNA recognition in this system. Hydrostatic pressure was found to have little effect on the star activity induced by changes in ionic strength, pH, or divalent cation, suggesting that distinct mechanisms may exist for these observed alterations in specificity. Recent evidence has indicated that BamHI and EcoRI share similar structural motifs, while Pvu II and EcoRV belong to a different structural family. Evidently, the use of hydration water to assist in site-specific recognition is a motif neither limited to nor defined by structural families.

摘要

研究发现,在渗透压升高时,Pvu II和BamHI限制性内切核酸酶的切割特异性会显著降低。这些原本高度准确且特异的酶的特异性松弛,即之前所称的“星号活性”,与0至100个大气压之间的渗透压具有独特的相关性。对于所有测试的化合物,没有其他依数性溶剂性质与星号活性呈现出一致的相关性。施加静水压力可抵消渗透压的影响,并恢复这些酶对其经典识别序列的天然选择性。这些结果表明,水合作用在许多限制性酶对DNA的位点特异性识别中起着重要作用。渗透压对EcoRV内切核酸酶的特异性未产生类似影响,这意味着选择性水合作用在该系统的DNA识别中不发挥作用。研究发现,静水压力对由离子强度、pH值或二价阳离子变化诱导的星号活性影响很小,这表明这些观察到的特异性改变可能存在不同的机制。最近的证据表明,BamHI和EcoRI具有相似的结构基序,而Pvu II和EcoRV属于不同的结构家族。显然,利用水合水来辅助位点特异性识别这一基序既不限于特定结构家族,也不由其定义。

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