Evolution of enzymatic function through gene duplication in the metallocarboxypeptidase family

被引:0
|
作者
Fajardo, Daniel S.
Saint Jean, Ritchie
Lyons, Peter J.
机构
[1] Biology, rews University
来源
FASEB JOURNAL | 2022年 / 36卷
关键词
D O I
10.1096/fasebj.2022.36.S1.R2601
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Changes in the genetic code occur frequently through, for example, DNA breaks and recombination events, often leading to the duplication of genes. The M14 family of metallocarboxypeptidases suggests such a history of gene duplication. In order to understand the functional outcome of such events, we investigated more recent duplication events in the M14 family of enzymes through analysis of genomic data found in the Ensembl genome database. Of the 23 M14 genes found in most vertebrates, four genes were present as two or more copies in many fish species. The AEBP1, CPXM1, and CPZ genes were duplicated in most fish with an arrangement suggesting a large-scale event such as whole-genome duplication. The CPO gene was also frequently duplicated in many fish species, but with copies tandemly arranged, suggestive of crossing-over errors. A close analysis of the synteny of four CPO paralogs found in Xenopus tropicalis suggested potential transposon-mediated duplication. Prediction of enzyme functions for the products of these genes showed that a greater amount of neofunctionalization was present in CPO paralogs as compared with other carboxypeptidase enzymes; purifying selection to maintain function remained detectable. To further examine function, the four CPO paralogs found in Xenopus tropicalis were examined biochemically. All were expressed in HEK293T cells, but no enzymatic activity was detected. Subcellular distribution suggested a possible function on lipid droplets similar to that previously shown for human CPO. Experiments to further examine enzyme activity using the Sf9 expression system are ongoing. © FASEB.
引用
收藏
页数:1
相关论文
共 50 条
  • [41] Evolution of the Vertebrate Cytosolic Malate Dehydrogenase Gene Family: Duplication and Divergence in Actinopterygian Fish
    T.J.S. Merrit
    J.M. Quattro
    Journal of Molecular Evolution, 2003, 56 : 265 - 276
  • [42] Leaf Shape Evolution Through Duplication, Regulatory Diversification, and Loss of a Homeobox Gene
    Vlad, Daniela
    Kierzkowski, Daniel
    Rast, Madlen I.
    Vuolo, Francesco
    Dello Ioio, Raffaele
    Galinha, Carla
    Gan, Xiangchao
    Hajheidari, Mohsen
    Hay, Angela
    Smith, Richard S.
    Huijser, Peter
    Bailey, C. Donovan
    Tsiantis, Miltos
    SCIENCE, 2014, 343 (6172) : 780 - 783
  • [43] Venomous Noodles: The Evolution of Toxins in Nemertea through Positive Selection and Gene Duplication
    Sonoda, Gabriel Gonzalez
    Tobaruela, Eric de Castro
    Norenburg, Jon
    Fabi, Joao Paulo
    Andrade, Sonia C. S.
    TOXINS, 2023, 15 (11)
  • [44] Evolution of the vertebrate cytosolic malate dehydrogenase gene family: Duplication and divergence in actinopterygian fish
    Merrit, TJS
    Quattro, JM
    JOURNAL OF MOLECULAR EVOLUTION, 2003, 56 (03) : 265 - 276
  • [45] GENE DUPLICATION IN EXPERIMENTAL ENZYME EVOLUTION
    RIGBY, PWJ
    BURLEIGH, BD
    HARTLEY, BS
    NATURE, 1974, 251 (5472) : 200 - 204
  • [46] Fox gene duplication in vertebrate evolution
    Wotton, KR
    Mazet, F
    Shimeld, SM
    INTEGRATIVE AND COMPARATIVE BIOLOGY, 2005, 45 (06) : 1211 - 1211
  • [47] Adaptive evolution after gene duplication
    Hughes, AL
    TRENDS IN GENETICS, 2002, 18 (09) : 433 - 434
  • [48] Evolution by leaps: gene duplication in bacteria
    Margrethe H Serres
    Alastair RW Kerr
    Thomas J McCormack
    Monica Riley
    Biology Direct, 4
  • [49] Introduction: Gene duplication in development and evolution
    Holland, PWH
    SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 1999, 10 (05) : 515 - 516
  • [50] Gene duplication and the evolution of moonlighting proteins
    Espinosa-Cantu, Adriana
    Ascencio, Diana
    Barona-Gomez, Francisco
    DeLuna, Alexander
    FRONTIERS IN GENETICS, 2015, 6