合胞体
突变体
糖蛋白
生物
突变
细胞融合
七肽重复区
脂质双层融合
程序性细胞死亡
病毒
分子生物学
氨基酸
突变
人副流感病毒
点突变
病毒学
生物化学
肽序列
细胞
基因
细胞凋亡
作者
Masahiro Takaguchi,Tadanobu Takahashi,Chika Hosokawa,Hiroo Ueyama,Keijo Fukushima,Takuya Hayakawa,Kazuhiko Itoh,Kiyoshi Ikeda,Takashi Suzuki
摘要
An escape mutant of human parainfluenza virus type 1 (hPIV1), which was selected by serial passage in the presence of a sialidase inhibitor, 4-O-thiocarbamoylmethyl-2-deoxy-2,3-didehydro-N-acetylneur-aminic acid (TCM-Neu5Ac2en), exhibited remarkable syncytium formation and virus-induced cell death in LLC-MK2 cells but no difference in susceptibility for the sialidase inhibitor TCM-Neu5Ac2en from that of wild-type hPIV1 strain C35 (WT). The mutant virus also had higher replication and plaque formation abilities. The mutant virus acquired two amino acid mutations, Glu to Gly at position 170 and Ala to Glu 442 in fusion (F) glycoprotein, but no mutations in haemaggulutinin-neuraminidase (HN) glycoprotein. Using cells co-expressing F and HN genes with site-specific mutagenesis, we demonstrated that a point mutation of Glu to Gly at position 170, which was estimated to be located in hPIV1 F glycoprotein heptad repeat 1, was required for obvious syncytium formation and caspase-3-dependent cell death. In contrast, wild-type F glycoprotein induced no synctium formation or cell death. The findings suggest that a single amino acid mutation of hPIV1 F glycoprotein promotes syncytium formation that is followed by caspase-3-dependent cell death.
科研通智能强力驱动
Strongly Powered by AbleSci AI