Li Xiaoxin, Bangari Dinesh S, Sharma Anurag, Mittal Suresh K
Department of Comparative Pathobiology, School of Veterinary Medicine, Purdue University, West Lafayette, IN 47907, USA.
Virology. 2009 Sep 30;392(2):162-8. doi: 10.1016/j.virol.2009.06.029. Epub 2009 Jul 30.
Bovine adenovirus serotype 3 (BAd3) and porcine adenovirus serotype 3 (PAd3) entry into the host cells is independent of Coxsackievirus adenovirus receptor and integrins. The role of sialic acid in BAd3 and PAd3 entry was investigated. Removal of sialic acid by neuraminidase, or blocking sialic acid by wheat germ agglutinin lectin significantly inhibited BAd3, but not PAd3, transduction of Madin-Darby bovine kidney cells. Maackia amurensis agglutinin or Sambucus nigra (elder) agglutinin treatment efficiently blocked BAd3 transduction suggesting that BAd3 utilized alpha(2,3)-linked and alpha(2,6)-linked sialic acid as a cell receptor. BAd3 transduction of MDBK cells was sensitive to sodium periodate, bromelain, or trypsin treatment indicating that the receptor sialoconjugate was a glycoprotein rather than a ganglioside. To determine sialic acid-containing cell membrane proteins that bind to BAd3, virus overlay protein binding assay (VOPBA) was performed and showed that sialylated cell membrane proteins in size of approximately 97 and 34 kDa bind to BAd3. The results suggest that sialic acid serves as a primary receptor for BAd3.
牛腺病毒3型(BAd3)和猪腺病毒3型(PAd3)进入宿主细胞的过程不依赖于柯萨奇病毒腺病毒受体和整合素。研究了唾液酸在BAd3和PAd3进入过程中的作用。用神经氨酸酶去除唾液酸,或用麦胚凝集素凝集素阻断唾液酸,可显著抑制BAd3对马-达二氏牛肾细胞的转导,但对PAd3无此作用。用黑接骨木凝集素或黑接骨木凝集素处理可有效阻断BAd3转导,这表明BAd3利用α(2,3)连接和α(2,6)连接的唾液酸作为细胞受体。MDBK细胞的BAd3转导对高碘酸钠、菠萝蛋白酶或胰蛋白酶处理敏感,这表明受体唾液酸结合物是一种糖蛋白而非神经节苷脂。为了确定与BAd3结合的含唾液酸细胞膜蛋白,进行了病毒覆盖蛋白结合试验(VOPBA),结果显示大小约为97和34 kDa的唾液酸化细胞膜蛋白与BAd3结合。结果表明唾液酸是BAd3的主要受体。