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通过紫外共振拉曼光谱法证明丝状病毒Pf1和fd中DNA组织及相互作用的差异。

Demonstration by ultraviolet resonance Raman spectroscopy of differences in DNA organization and interactions in filamentous viruses Pf1 and fd.

作者信息

Wen Z Q, Armstrong A, Thomas G J

机构信息

Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri-Kansas City 64110, USA.

出版信息

Biochemistry. 1999 Mar 9;38(10):3148-56. doi: 10.1021/bi981965m.

Abstract

Pf1, a class II filamentous virus, has been investigated by ultraviolet resonance Raman (UVRR) spectroscopy with excitation wavelengths of 257, 244, 238, and 229 nm. The 257-nm UVRR spectrum is rich in Raman bands of the packaged single-stranded DNA (ssDNA) genome, despite the low DNA mass (6%) of the virion. Conversely, the 229-nm UVRR spectrum is dominated by tyrosines (Tyr 25 and Tyr 40) of the 46-residue alpha-helical coat subunit. UVRR spectra excited at 244 and 238 nm exhibit Raman bands diagnostic of both viral DNA and coat protein tyrosines. Raman markers of packaged Pf1 DNA contrast sharply with those of the DNA packaged in the class I filamentous virus fd [Wen, Z. Q., Overman, S. A., and Thomas, G. J., Jr. (1997) Biochemistry 36, 7810-7820]. Interestingly, deoxynucleotides of Pf1 DNA exhibit sugars in the C2'-endo/anti conformation and bases that are largely unstacked, compared with C3'-endo/anti conformers and very strong base stacking in fd DNA; hydrogen-bonding interactions of thymine carbonyls are also different in Pf1 and fd. On the other hand, coat protein tyrosines of Pf1 exhibit Raman markers of ring environment identical to those of fd, including an anomalous singlet at 853 cm-1 in lieu of the canonical Fermi doublet (850/830 cm-1) found in globular proteins. The results indicate markedly different modes of organization of ssDNA in Pf1 and fd virions, despite similar environments for coat protein tyrosines, and suggest strong hydrogen-bonding interactions between DNA bases and coat subunits of Pf1 but not between those of fd. We propose that structural relationships between the protein coat and encapsidated ssDNA genome are also fundamentally different in the two assemblies.

摘要

Pf1是一种II类丝状病毒,已通过激发波长为257、244、238和229nm的紫外共振拉曼(UVRR)光谱进行了研究。尽管病毒粒子中的DNA质量较低(6%),但257nm的UVRR光谱富含包装的单链DNA(ssDNA)基因组的拉曼谱带。相反,229nm的UVRR光谱主要由46个残基的α-螺旋衣壳亚基的酪氨酸(Tyr 25和Tyr 40)主导。在244和238nm激发的UVRR光谱显示出诊断病毒DNA和衣壳蛋白酪氨酸的拉曼谱带。包装的Pf1 DNA的拉曼标记与I类丝状病毒fd中包装的DNA的拉曼标记形成鲜明对比[Wen,Z.Q.,Overman,S.A.,和Thomas,G.J.,Jr.(1997)Biochemistry 36,7810 - 7820]。有趣的是,与fd DNA中的C3'-endo/anti构象异构体和非常强的碱基堆积相比,Pf1 DNA的脱氧核苷酸表现出C2'-endo/anti构象的糖和基本未堆积的碱基;Pf1和fd中胸腺嘧啶羰基的氢键相互作用也不同。另一方面,Pf1的衣壳蛋白酪氨酸表现出与fd相同的环环境拉曼标记,包括在853cm-1处的异常单峰,代替了球状蛋白中发现的典型费米二重峰(850/830cm-1)。结果表明,尽管衣壳蛋白酪氨酸的环境相似,但Pf1和fd病毒粒子中ssDNA的组织模式明显不同,并表明Pf1的DNA碱基与衣壳亚基之间有很强的氢键相互作用,而fd则没有。我们提出,在这两种组装体中,蛋白质衣壳与包裹的ssDNA基因组之间的结构关系也存在根本差异。

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