Molecular evolution of Cide family proteins: Novel domain formation in early vertebrates and the subsequent divergence

被引:46
作者
Wu, Congyang [1 ]
Zhang, Yinxin [1 ]
Sun, Zhirong [2 ]
Li, Peng [1 ]
机构
[1] Tsinghua Univ, Prot Sci Lab, Minist Educ, Dept Biol Sci & Biotechnol, Beijing 100084, Peoples R China
[2] Tsinghua Univ, MOE Key Lab Bioinformat, State Key Lab Biomembrane & Membrane Biotechnol, Dept Biol Sci & Biotechnol, Beijing 100084, Peoples R China
基金
中国国家自然科学基金;
关键词
D O I
10.1186/1471-2148-8-159
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Cide family proteins including Cidea, Cideb and Cidec/Fsp27, contain an N-terminal CIDE-N domain that shares sequence similarity to the N-terminal CAD domain (NCD) of DNA fragmentation factors Dffa/Dff45/ICAD and Dffb/Dff40/CAD, and a unique C-terminal CIDE-C domain. We have previously shown that Cide proteins are newly emerged regulators closely associated with the development of metabolic diseases such as obesity, diabetes and liver steatosis. They modulate many metabolic processes such as lipolysis, thermogenesis and TAG storage in brown adipose tissue (BAT) and white adipose tissue (WAT), as well as fatty acid oxidation and lipogenesis in the liver. Results: To understand the evolutionary process of Cide proteins and provide insight into the role of Cide proteins as potential metabolic regulators in various species, we searched various databases and performed comparative genomic analysis to study the sequence conservation, genomic structure, and phylogenetic tree of the CIDE-N and CIDE-C domains of Cide proteins. As a result, we identified signature sequences for the N-terminal region of Dffa, Dffb and Cide proteins and CIDE-C domain of Cide proteins, and observed that sequences homologous to CIDE-N domain displays a wide phylogenetic distribution in species ranging from lower organisms such as hydra (Hydra vulgaris) and sea anemone (Nematostella vectensis) to mammals, whereas the CIDE-C domain exists only in vertebrates. Further analysis of their genomic structures showed that although evolution of the ancestral CIDE-N domain had undergone different intron insertions to various positions in the domain among invertebrates, the genomic structure of Cide family in vertebrates is stable with conserved intron phase. Conclusion: Based on our analysis, we speculate that in early vertebrates CIDE-N domain was evolved from the duplication of NCD of Dffa. The CIDE-N domain somehow acquired the CIDE-C domain that was formed around the same time, subsequently generating the Cide protein. Subsequent duplication and evolution have led to the formation of different Cide family proteins that play unique roles in the control of metabolic pathways in different tissues.
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共 65 条
  • [1] Gapped BLAST and PSI-BLAST: a new generation of protein database search programs
    Altschul, SF
    Madden, TL
    Schaffer, AA
    Zhang, JH
    Zhang, Z
    Miller, W
    Lipman, DJ
    [J]. NUCLEIC ACIDS RESEARCH, 1997, 25 (17) : 3389 - 3402
  • [2] Zebrafish hox clusters and vertebrate genome evolution
    Amores, A
    Force, A
    Yan, YL
    Joly, L
    Amemiya, C
    Fritz, A
    Ho, RK
    Langeland, J
    Prince, V
    Wang, YL
    Westerfield, M
    Ekker, M
    Postlethwait, JH
    [J]. SCIENCE, 1998, 282 (5394) : 1711 - 1714
  • [3] ANTONIO C, 2004, INVERTEBR BIOL, V123, P23
  • [4] Whole-genome shotgun assembly and analysis of the genome of Fugu rubripes
    Aparicio, S
    Chapman, J
    Stupka, E
    Putnam, N
    Chia, J
    Dehal, P
    Christoffels, A
    Rash, S
    Hoon, S
    Smit, A
    Gelpke, MDS
    Roach, J
    Oh, T
    Ho, IY
    Wong, M
    Detter, C
    Verhoef, F
    Predki, P
    Tay, A
    Lucas, S
    Richardson, P
    Smith, SF
    Clark, MS
    Edwards, YJK
    Doggett, N
    Zharkikh, A
    Tavtigian, SV
    Pruss, D
    Barnstead, M
    Evans, C
    Baden, H
    Powell, J
    Glusman, G
    Rowen, L
    Hood, L
    Tan, YH
    Elgar, G
    Hawkins, T
    Venkatesh, B
    Rokhsar, D
    Brenner, S
    [J]. SCIENCE, 2002, 297 (5585) : 1301 - 1310
  • [5] Resveratrol improves health and survival of mice on a high-calorie diet
    Baur, Joseph A.
    Pearson, Kevin J.
    Price, Nathan L.
    Jamieson, Hamish A.
    Lerin, Carles
    Kalra, Avash
    Prabhu, Vinayakumar V.
    Allard, Joanne S.
    Lopez-Lluch, Guillermo
    Lewis, Kaitlyn
    Pistell, Paul J.
    Poosala, Suresh
    Becker, Kevin G.
    Boss, Olivier
    Gwinn, Dana
    Wang, Mingyi
    Ramaswamy, Sharan
    Fishbein, Kenneth W.
    Spencer, Richard G.
    Lakatta, Edward G.
    Le Couteur, David
    Shaw, Reuben J.
    Navas, Placido
    Puigserver, Pere
    Ingram, Donald K.
    de Cabo, Rafael
    Sinclair, David A.
    [J]. NATURE, 2006, 444 (7117) : 337 - 342
  • [6] Benson DA, 2010, NUCLEIC ACIDS RES, V38, pD46, DOI [10.1093/nar/gkp1024, 10.1093/nar/gkq1079, 10.1093/nar/gkl986, 10.1093/nar/gks1195, 10.1093/nar/gkw1070, 10.1093/nar/gkr1202, 10.1093/nar/gkn723, 10.1093/nar/gkx1094]
  • [7] Mitochondria localization and dimerization are required for CIDE-B to induce apoptosis
    Chen, ZM
    Guo, K
    Toh, SY
    Zhou, ZH
    Li, P
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (30) : 22619 - 22622
  • [8] The Jalview Java']Java alignment editor
    Clamp, M
    Cuff, J
    Searle, SM
    Barton, GJ
    [J]. BIOINFORMATICS, 2004, 20 (03) : 426 - 427
  • [9] The CIDEA gene V115F polymorphism is associated with obesity in Swedish subjects
    Dahlman, I
    Kaaman, M
    Jiao, H
    Kere, J
    Laakso, M
    Arner, P
    [J]. DIABETES, 2005, 54 (10) : 3032 - 3034
  • [10] DANESCH U, 1992, J BIOL CHEM, V267, P7185