首页> 美国卫生研究院文献>Journal of Virology >Multiple amino acids in the capsid structure of canine parvovirus coordinately determine the canine host range and specific antigenic and hemagglutination properties.
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Multiple amino acids in the capsid structure of canine parvovirus coordinately determine the canine host range and specific antigenic and hemagglutination properties.

机译:犬细小病毒衣壳结构中的多个氨基酸可协调确定犬的宿主范围以及特定的抗原和血凝特性。

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摘要

Canine parvovirus (CPV) and feline panleukopenia virus (FPV) are over 98% similar in DNA sequence but have specific host range, antigenic, and hemagglutination (HA) properties which were located within the capsid protein gene. In vitro mutagenesis and recombination were used to prepare 16 different recombinant genomic clones, and viruses derived from those clones were analyzed for their in vitro host range, antigenic, and HA properties. The region of CPV from 59 to 91 map units determined the ability to replicate in canine cells. A complex series of interactions was observed among the individual sequence differences between 59 and 73 map units. The canine host range required that VP2 amino acids (aa) 93 and 323 both be the CPV sequence, and those two CPV sequences introduced alone into FPV greatly increased viral replication in canine cells. Changing any one of aa 93, 103, or 323 of CPV to the FPV sequence either greatly decreased replication in canine cells or resulted in an inviable plasmid. The Asn-Lys difference of aa 93 alone was responsible for the CPV-specific epitope recognized by monoclonal antibodies. An FPV-specific epitope was affected by aa 323. Amino acids 323 and 375 together determined the pH dependence of HA. Amino acids involved in the various specific properties were all around the threefold spikes of the viral particle.
机译:犬细小病毒(CPV)和猫泛白细胞减少症病毒(FPV)在DNA序列上相似度超过98%,但具有位于衣壳蛋白基因内的特定宿主范围,抗原性和血凝性(HA)特性。体外诱变和重组用于制备16种不同的重组基因组克隆,并对衍生自这些克隆的病毒的体外宿主范围,抗原性和HA特性进行了分析。从59到91个图谱单元的CPV区域确定了在犬细胞中复制的能力。在59和73个图谱单元之间的各个序列差异之间观察到一系列复杂的相互作用。犬宿主范围要求VP2氨基酸(aa)93和323均为CPV序列,而单独引入FPV的那两个CPV序列大大增加了犬细胞中的病毒复制。将CPV的氨基酸93、103或323中的任何一个更改为FPV序列,要么极大地减少了犬细胞中的复制,要么导致了无法生存的质粒。单独的aa 93的Asn-Lys差异是单克隆抗体识别的CPV特异性表位的原因。 FPV特异性表位受aa 323的影响。氨基酸323和375共同确定了HA的pH依赖性。与各种特定特性有关的氨基酸都在病毒颗粒的三重峰附近。

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