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噬菌体φX174的吸附与隐蔽机制。I. 隐蔽条件下的体外构象变化

Mechanism of adsorption and eclipse of bacteriophage phi X174. I. In vitro conformational change under conditions of eclipse.

作者信息

Incardona N L, Blonski R, Feeney W

出版信息

J Virol. 1972 Jan;9(1):96-101. doi: 10.1128/JVI.9.1.96-101.1972.

Abstract

Bacteriophage phiX174 undergoes a conformational change during viral eclipse when virus-host cell complexes are incubated briefly at 37 C in a complex starvation buffer at pH 8. In this report, basically the same transition is demonstrated in vitro. Incubation of phiX alone for 2 to 3 hr at 35 C in 0.1 m CaCl(2) (pH 7.2) results in an irreversible decrease in S(20,w) because of an increase in the frictional coefficient that occurs during the change in conformation. The slower sedimenting conformation is noninfectious. These properties are remarkably similar to those of the eclipsed particles characterized by Newbold and Sinsheimer. Therefore, the key structural requirements for the molecular mechanism must reside within the architecture of the virus itself. This extremely simplified system uncovered the calcium ion requirement and pronounced dependence on pH between 6 and 7, both inherent properties of adsorption. This and the more than 10-fold greater rate of the in vivo conformational transition allude to the cooperative nature of attachment and eclipse for phiX.

摘要

噬菌体phiX174在病毒隐蔽期会发生构象变化,当病毒-宿主细胞复合物于pH 8的复合饥饿缓冲液中在37℃短暂孵育时。在本报告中,基本上相同的转变在体外得到了证实。将phiX单独在0.1 m CaCl₂(pH 7.2)中于35℃孵育2至3小时,由于构象变化过程中摩擦系数增加,导致S(20,w)不可逆降低。沉降较慢的构象无感染性。这些特性与纽博尔德和辛斯海默所描述的隐蔽颗粒的特性非常相似。因此,分子机制的关键结构要求必定存在于病毒自身的结构之中。这个极其简化的系统揭示了钙离子需求以及对6至7之间pH的显著依赖性,这两者都是吸附的固有特性。这一点以及体内构象转变速率超过10倍的差异暗示了phiX附着和隐蔽的协同性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/857e/356267/baa609e17fe2/jvirol00265-0108-a.jpg

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