Oyster studies reveal the duplication and functional diversification of Bivalvia caspase-8 genes

被引:0
|
作者
Deng, Shaoxi [1 ,2 ]
Qu, Tao [1 ,4 ]
Zhang, Guofan [1 ,2 ,3 ]
Xu, Fei [1 ,2 ,3 ]
机构
[1] Chinese Acad Sci, Inst Oceanol, Ctr Ocean Mega Sci, CAS & Shandong Prov Key Lab Expt Marine Biol, Qingdao 266071, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[3] Qingdao Natl Lab Marine Sci & Technol, Lab Marine Biol & Biotechnol, Qingdao 266000, Peoples R China
[4] Gansu Prov Hosp, NHC Key Lab Diag & Therapy Gastrointestinal Tumor, Lanzhou 730000, Peoples R China
关键词
caspase-8; apoptosis; metamorphosis; inflammation; Crassostrea gigas; NF-KAPPA-B; TNF RECEPTOR; CELL-DEATH; APOPTOSIS; ACTIVATION; PATHWAY; CLONING; DOMAIN; RECOGNITION; ILLUSTRATOR;
D O I
10.1007/s00343-022-2129-7
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Caspase-8, first classified as a pro-apoptotic caspase, is considered to have arisen from duplication with caspase-10 and involves multiple immune and inflammatory responses in mammals. However, few are known on the phylogeny and function of caspase-8 in molluscs, one of the largest phyla in marine invertebrates. In this study, we conducted phylogenetic and functional analysis on molluscan caspase-8-like genes. Results indicate that duplication occurred in molluscan caspase-8-like genes, resulting in at least two caspase-8 copies in some groups of bivalves. Additional studies in Pacific oyster Crassostrea gigas showed different spatio-temporal expression patterns and subcellular localizations of CgCaspase-8-1 and CgCaspase-8-2. While no interaction was observed between CgCaspase-8-2 and CgFADD, the adaptor molecule in apoptosis, yeast two-hybrid and co-immunoprecipitation assays suggested the interaction between CgCaspase-8-1 and CgFADD, indicating its pro-apoptotic function. In addition, CgCaspase-8-1 showed interaction with the CARD domain of CgRIG-I. Together with two NF-& kappa;B subunits (Cgp105 and CgRel), their transcripts were up-regulated in response to poly(I:C) stimuli, supporting the immune function of both pro, and anti-inflammation. The results provide insight into the evolution and functional diversification of Bivalvia caspase-8 genes.
引用
收藏
页码:1109 / 1121
页数:13
相关论文
共 50 条
  • [21] The Apoptotic Initiator Caspase-8: Its Functional Ubiquity and Genetic Diversity during Animal Evolution
    Sakamaki, Kazuhiro
    Shimizu, Kouhei
    Iwata, Hiroaki
    Imai, Kenichiro
    Satou, Yutaka
    Funayama, Noriko
    Nozaki, Masami
    Yajima, Mamiko
    Nishimura, Osamu
    Higuchi, Mayura
    Chiba, Kumiko
    Yoshimoto, Michi
    Kimura, Haruna
    Gracey, Andrew Y.
    Shimizu, Takashi
    Tomii, Kentaro
    Gotoh, Osamu
    Akasaka, Koji
    Sawasaki, Tatsuya
    Miller, David J.
    MOLECULAR BIOLOGY AND EVOLUTION, 2014, 31 (12) : 3282 - 3301
  • [22] Molecular and functional characterization of caspase-8 from the big-belly seahorse (Hippocampus abdominalis)
    Oh, Minyoung
    Elvitigala, Don Anushka Sandaruwan
    Bathige, S. D. N. K.
    Lee, Seongdo
    Kim, Myoung-Jin
    Lee, Jehee
    FISH & SHELLFISH IMMUNOLOGY, 2016, 58 : 650 - 662
  • [23] Caspase-8 Binding to Cardiolipin in Giant Unilamellar Vesicles Provides a Functional Docking Platform for Bid
    Jalmar, Olivier
    Francois-Moutal, Liberty
    Garcia-Saez, Ana-Jesus
    Perry, Mark
    Granjon, Thierry
    Gonzalvez, Francois
    Gottlieb, Eyal
    Ayala-Sanmartin, Jesus
    Klosgen, Beate
    Schwille, Petra
    Petit, Patrice X.
    PLOS ONE, 2013, 8 (02):
  • [24] Caspase-8 activation requires functional mitochondria in camptothecin-induced apoptosis in intestinal epithelial cells
    Jin, Shi
    Ray, Ramesh M.
    Johnson, Leonard R.
    FASEB JOURNAL, 2009, 23
  • [25] Patterns of gene duplication and functional evolution during the diversification of the AGAMOUS subfamily of MADS box genes in angiosperms
    Kramer, EM
    Jaramillo, MA
    Di Stilio, VS
    GENETICS, 2004, 166 (02) : 1011 - 1023
  • [26] Expression of caspase-8L, a functional splice variant of caspase-8, is modulated in human T cells and B cells after activation by antigen receptor.
    Uchino, Ayumi
    Mitoma, Hiroki
    Himeji, Daisuke
    Tsukamoto, Hiroshi
    Tamimoto, Yasuhiro
    Kimoto, Yasutaka
    Horiuchi, Takahiko
    Harada, Mine
    ARTHRITIS AND RHEUMATISM, 2006, 54 (09): : S458 - S459
  • [27] Phylogeny and regulation of four lipocalin genes clustered in the chicken genome:: evidence of a functional diversification after gene duplication
    Pagano, A
    Giannoni, P
    Zambotti, A
    Sánchez, D
    Ganfornina, MD
    Gutiérrez, G
    Randazzo, N
    Cancedda, R
    Dozin, B
    GENE, 2004, 331 : 95 - 106
  • [28] Polymorphisms and Haplotypes in the Caspase-3, Caspase-7, and Caspase-8 Genes and Risk for Endometrial Cancer: A Population-Based, Case-Control Study in a Chinese Population
    Xu, Hong-Li
    Xu, Wang-Hong
    Cai, Qiuyin
    Feng, Min
    Long, Jirong
    Zheng, Wei
    Xiang, Yong-Bing
    Shu, Xiao-Ou
    CANCER EPIDEMIOLOGY BIOMARKERS & PREVENTION, 2009, 18 (07) : 2114 - 2122
  • [29] Large-scale analyses of angiosperm Flowering Locus T genes reveal duplication and functional divergence in monocots
    Liu, Hongling
    Liu, Xing
    Chang, Xiaojun
    Chen, Fei
    Lin, Zhenguo
    Zhang, Liangsheng
    FRONTIERS IN PLANT SCIENCE, 2023, 13
  • [30] TNF-α in vivo stimulates apoptosis in fibroblasts through caspase-8 activation and modulates the expression of pro-apoptotic genes
    Alikhani, M
    Alikhani, Z
    Raptis, M
    Graves, DT
    JOURNAL OF CELLULAR PHYSIOLOGY, 2004, 201 (03) : 341 - 348