|
Cloning, expression, and antiviral activity of interferon β from the Chinese microbat, Myotis davidii (Download the PDF)) R1 b* w/ z. r2 t- K
Ying-Zi Liang, Li-Jun Wu, Qian Zhang, Peng Zhou, Mei-Niang Wang, Xing-Lou Yang, Xing-Yi Ge, Lin-Fa Wang, Zheng-Li Shi*
5 j3 R% f/ Y% P w- A- e- h6 l- i% L1 A( k) h; B
Abstract: Bats are natural reservoir hosts for many viruses that produce no clinical symptoms in bats.7 F, ?! C2 c% e. f3 G7 _& `; U7 p
Therefore, bats may have evolved effective mechanisms to control viral replication. However, little# ~* P- {% M( E9 {. {/ a: _$ m
information is available on bat immune responses to viral infection. Type I interferon (IFN) plays a
" Z/ \4 e) R. o$ ]- rkey role in controlling viral infections. In this study, we report the cloning, expression, and' c; Z3 j; q8 ]& U' _& `! _8 D
biological activity of interferon β (IFNβ) from the Chinese microbat species, Myotis davidii. We! K) d- U9 i- S' P0 ?2 q: f
demonstrated the upregulation of IFNB and IFN-stimulated genes in a kidney cell line derived from8 h Q1 _8 j( v+ D8 {
M. davidii after treatment with polyI:C or infection with Sendai virus. Furthermore, the recombinant
/ c- {+ L! U- ^: X) q& GIFNβ inhibited vesicular stomatitis virus and bat adenovirus replication in cell lines from two bat
6 [) Z! y, Y8 e5 ^6 uspecies, M. davidii and Rhinolophus sinicus. We provide the first in vitro evidence of IFNβ antiviral
8 e, H' R( b) E* D& [6 K# Nactivity in microbats, which has important implications for virus interactions with these hosts.% \5 X! U8 P) P7 i# e* Z4 }
6 f! g% F3 c4 }: A6 {& I
Keywords: bat; interferon; IFN-stimulated genes; antiviral activity
& |1 v- a. X, M1 Q) F; B
8 t4 U4 c. \; T$ |; R" J A! e7 w
' a$ w9 f |( R/ b中文信息:
( ?+ J7 H0 e3 h$ W Z' B8 W9 q3 f7 M; K+ z M! f3 n
大卫鼠耳蝠干扰素β的克隆、表达和抗病毒活性检测
' R0 a" l! {' H, P1 n$ e# _: v1 ]8 e
: K9 |3 n. d4 }- |0 `9 _' M梁英子,吴利军,张倩,周鹏,王媚娘,杨兴娄,葛行义,王林发,石正丽*
* X6 e3 o1 Y7 g5 ^2 o
5 C A$ z7 X! i! C2 k- A* c: J& M) Z% p' c: G* l& W- n
摘要:蝙蝠是多种病毒的自然宿主,其中一些病毒是人畜新发传染病的病原。然而自然携带或人工感染病毒的蝙蝠并不表现出临床症状,其中机制未知。近期对两种蝙蝠基因组序列分析结果提示,蝙蝠可能具有一些独特的先天性免疫机制。本论文在前期研究基础上,用定量PCR技术分析病毒感染后蝙蝠干扰素及其诱导基因的应答水平;表达鼠耳蝠Ⅰ型干扰素和干扰素诱导蛋白,测试蝙蝠干扰素在不同来源的细胞中对病毒的抑制作用,试图初步了解病毒诱导的蝙蝠先天性免疫应答机制。0 i u4 r7 W2 [
, E; r' P# Q8 e5 R8 B$ E" ]
0 G+ T7 U) }; Z! P" O4 d9 }关键词:干扰素,蝙蝠天然免疫,抗病毒活性,定量PCR5 f, Y5 e0 ?& }. K* X% X5 F: R! G. b
' ]5 Q% O1 Q! ~5 R( O* ~; n |
|