国语对白刺激在线视频国产网红丨风流少妇野外精品视频丨四虎永久在线精品免费播放丨影音先锋男人av橹橹色丨亚洲AV性色精品国产小说

所長信箱   |    信息公開   |    內部辦公   |    內部辦公(舊)   |    ARP   |   圖書館   |    中國科學院   |    ENGLISH
深海科學與工程研究所
深海科學與工程研究所
當前位置:首頁 > 學術成果 > 2025 > 論文
論文
  
論文題目  Molecular and functional characterization of short peptidoglycan recognition proteins in Vesicomyidae clam 
論文題目(英文) Molecular and functional characterization of short peptidoglycan recognition proteins in Vesicomyidae clam  
作者 Kong, Xue;Wang, Wei;Xia, Sunan;Zhi, Ying;Cai, Yuefeng;張海濱;Shen, Xin 
發(fā)表年度 2025 
 
 
頁碼  
期刊名稱 DEVELOPMENTAL AND COMPARATIVE IMMUNOLOGY 
摘要 Within cold seep environments, the Vesicomyidae clam emerges as a prevalent species, distinguished by its symbiotic relationship with microorganisms housed within its organ gill. Given the extreme conditions and the symbiotic nature of this association, investigating the host's immune genes, particularly immune recognition receptors, is essential for understanding their role in facilitating host-symbiotic interactions. Three short peptidoglycan recognition proteins (PGRPs) were identified in the clam. AmPGRP-S1, -S2, and -S3 were found to possess conserved amidase binding sites and Zn2+ binding sites. Quantitative Real-time PCR (qRT-PCR) analysis revealed differential expression patterns among the PGRPs. AmPGRP-S1 and AmPGRP-S2 exhibited elevated expression levels in the gill, while AmPGRP-S3 displayed the highest expression in the adductor muscle. Functional experiments demonstrated that recombinant AmPGRP-S1, -S2, and -S3 (rAmPGRPs) exhibited binding capabilities to both L-PGN and D-PGN (peptidoglycan). Notably, rAmPGRP-S1 and -S2 possessed Zn2+-independent amidase activity, while rAmPGRP-S3 lacked this enzymatic function. rAmPGRPs were shown to bind to five different bacterial species. Among these, rAmPGRP-S1 inhibited Escherichia coli and Bacillus subtilis, while rAmPGRP-S2 and -S3 inhibited Bacillus subtilis in the absence of Zn2+. In the presence of Zn2+, rAmPGRP-S1 and -S2 exhibited enhanced inhibitory activity against Staphylococcus aureus or Bacillus subtilis. These findings suggest that AmPGRPs may play a pivotal role in mediating the interaction between the host and endosymbiotic bacteria, functioning as PGN and microbe receptors, antibacterial effectors, and regulators of host-microbe symbiosis. These results contribute to our understanding of the adaptive mechanisms of deep-sea organisms to the challenging cold seep environments. 
摘要_英文  

Copyright © 中國科學院深海科學與工程研究所 備案證號:瓊ICP備13001552號-1   瓊公網安備 46020102000014號
地址: 三亞市鹿回頭路28號 郵編:572000 網站維護:深海所辦公室   郵箱:office@idsse.ac.cn

主站蜘蛛池模板: 昌平区| 梧州市| 磐安县| 达拉特旗| 锡林郭勒盟| 红河县| 芒康县| 八宿县| 阿拉善右旗| 郓城县| 垦利县| 博乐市| 乌海市| 永泰县| 察雅县| 平安县| 定日县| 马鞍山市| 应城市| 惠水县| 石狮市| 广安市| 宁波市| 盘山县| 彭州市| 阳谷县| 南汇区| 柳江县| 石河子市| 崇明县| 洪江市| 凤凰县| 普洱| 江源县| 定边县| 张掖市| 民权县| 广丰县| 扎赉特旗| 嘉义市| 江阴市|