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脊髓灰质炎病毒紫外线照射产生的致密颗粒和缓慢沉降颗粒。

Dense particles and slow sedimenting particles produced by ultraviolet irradiation of poliovirus.

作者信息

Wetz K, Zeichhardt H, Willingmann P, Habermehl K O

出版信息

J Gen Virol. 1983 Jun;64 (Pt 6):1263-75. doi: 10.1099/0022-1317-64-6-1263.

Abstract

Low doses of u.v. radiation rapidly inactivate poliovirus, and the virus is progressively converted into dense particles (DPs) of buoyant density 1.44 g/ml in CsCl. The DPs are structurally and antigenically related to standard virus (N-antigen), i.e. they are indistinguishable from virus in their RNA and protein content and in their sedimentation properties. Furthermore, there is no difference in reactivity of the structural proteins of virus and DPs with the monofunctional reagent [3H]N-succinimidyl propionate (3H-NSP). However, DPs differ from virus in that their capsids are permeable to several ions, and they can be degraded by RNase and protease. Increasing the radiation dose causes a successive transformation of DPs into 105S slow-sedimenting particles (SSPs). The SSPs are antigenically related to 76S artificial empty capsids (AECs) or H-antigen, but they differ physically and structurally from them. The SSPs have a higher S value than AECs and contain all the capsid proteins, including VP4, and the RNA, both of these macromolecules being absent from AECs. It is concluded, therefore, that transformation from N- to H-antigenicity by u.v. radiation does not require release of RNA and VP4. Conversion of virus particles to SSPs correlates with altered reactivity of VP2 and to a lesser extent VP1 and VP3, with the monofunctional reagent 3H-NSP.

摘要

低剂量紫外线辐射能迅速使脊髓灰质炎病毒失活,并且该病毒会逐渐转化为在氯化铯中浮力密度为1.44克/毫升的致密颗粒(DPs)。这些DPs在结构和抗原性上与标准病毒(N抗原)相关,即它们在RNA和蛋白质含量以及沉降特性方面与病毒无法区分。此外,病毒和DPs的结构蛋白与单功能试剂[³H]N-琥珀酰亚胺基丙酸酯(³H-NSP)的反应性没有差异。然而,DPs与病毒的不同之处在于其衣壳对几种离子具有通透性,并且它们可被核糖核酸酶和蛋白酶降解。增加辐射剂量会使DPs连续转化为105S慢沉降颗粒(SSPs)。这些SSPs在抗原性上与76S人工空衣壳(AECs)或H抗原相关,但它们在物理和结构上与它们不同。SSPs的S值比AECs高,并且包含所有衣壳蛋白,包括VP4,以及RNA,而AECs中不存在这两种大分子。因此可以得出结论,紫外线辐射从N抗原性转变为H抗原性并不需要释放RNA和VP4。病毒颗粒向SSPs的转化与VP2以及在较小程度上与VP1和VP3与单功能试剂³H-NSP的反应性改变相关。

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