Lineage-specific evolution of zona pellucida genes in fish.


Journal

Journal of experimental zoology. Part B, Molecular and developmental evolution
ISSN: 1552-5015
Titre abrégé: J Exp Zool B Mol Dev Evol
Pays: United States
ID NLM: 101168228

Informations de publication

Date de publication:
05 2022
Historique:
revised: 25 01 2022
received: 04 10 2021
accepted: 03 02 2022
pubmed: 22 2 2022
medline: 16 4 2022
entrez: 21 2 2022
Statut: ppublish

Résumé

The zona pellucida (ZP) protein constitutes the egg envelope, which surrounds the vertebrate embryo. We performed a comprehensive study on the molecular evolution of ZP genes in Teleostei by cloning and analyzing the expression of ZP genes in fish of Anguilliformes in Elopomorpha, Osteoglossiformes in Osteoglossomorpha, and Clupeiformes in Otocephala to cover unsurveyed fish groups in Teleostei. The present results confirmed findings from our previous reports that the principal organ of ZP gene expression changed from ovary to liver in the common ancestors of Clupeocephala. Even fish species that synthesize egg envelopes in the liver carry the ovary-expressed ZP proteins as minor egg envelope components that were produced by gene duplication during the early stage of Teleostei evolution. The amino acid repeat sequences located at the N-terminal region of ZP proteins are known to be the substrates of transglutaminase responsible for egg envelope hardening and hatching. A repeat sequence was found in zona pellucida Cs of phylogenetically early diverged fish. After changing the synthesis organ, its role is inherited by the N-terminal Pro-Gln-Xaa repeat sequence in liver-expressed zona pellucida B genes of Clupeocephala. These results suggest that teleost ZP genes have independently evolved to maintain fish-specific functions, such as egg envelope hardening and egg envelope digestion, at hatching.

Identifiants

pubmed: 35189032
doi: 10.1002/jez.b.23122
doi:

Substances chimiques

Egg Proteins 0
Zona Pellucida Glycoproteins 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

181-191

Subventions

Organisme : Japan Society for the Promotion of Science
ID : 19K06744
Organisme : Japan Society for the Promotion of Science
ID : 16K18593
Organisme : Japan Society for the Promotion of Science
ID : 19K06793

Informations de copyright

© 2022 Wiley Periodicals LLC.

Références

Berg, A. H., Westerlund, L., & Olsson, P. E. (2004). Regulation of Arctic char (Salvelinus alpinus) egg shell proteins and vitellogenin during reproduction and in response to 17beta-estradiol and cortisol. General and Comparative Endocrinology, 135, 276-285.
Bleil, J. D., & Wassarman, P. M. (1980). Structure and function of the zona pellucida: identification and characterization of the proteins of the mouse oocyte's zona pellucida. Developmental Biology, 1980(76), 185-202.
Frankenberg, S., & Renfree, B. M. (2018). Conceptus coats of marsupials and monotremes. Extracellular Matrix and Egg Coats, 130, 357-377.
Goudet, G., Mugnier, S., Callebaut, I., & Monget, P. (2008). Phylogenetic analysis and identification of pseudogenes reveal a progressive loss of zona pellucida genes during evolution of vertebrates. Biology of Reproduction, 78, 796-806.
Hamazaki, T. S., Ichiro, I., & Yamagami, K. (1987a). Production of a “spawning female-specific substance” in hepatic cells and its accumulation in the ascites of the estrogen-treated adult fish, Oryzias latipes. Journal of Experimental Zoology, 242, 325-332.
Hamazaki, T. S., Ichiro, I., & Yamagami, K. (1987b). Isolation and partial characterization of a “spawning female-specific substance” in the teleost, Oryzias latipes. Journal of Experimental Zoology, 242, 343-349.
Hamazaki, T. S., Nagahama, Y., Iuchi, I., & Yamagami, K. (1989). A glycoprotein from the liver constitutes the inner layer of the egg envelope (zona pellucid interna) of the fish, Olyzias latipes. Developmental Biology, 133, 101-110.
Hall, B. G. (2005). Phylogenetic trees made easy: A how-to manual, (2nd ed.). Sinauer Associates.
Jovine, L., Darie, C. C., Litscher, E. S., & Wassarman, P. M. (2005). Zona pellucida domain proteins. Annual Review of Biochemistry, 74, 83-114.
Jovine, L., Qi, H., Williams, Z., Litscher, E., & Wassarman, P. M. (2002). The ZP domain is a conserved module for polymerization of extracellular proteins. Nature Cell Biology, 4, 457-461.
Jovine, L., Qi, H., Williams, Z., Litscher, E., & Wassarman, P. M. (2004). A duplicated motif controls assembly of zona pellucida domain proteins. Proceedings of the National Academy of Sciences USA, 101, 5922-5927.
Kanamori, A. (2000). Systematic identification of genes expressed during early oogenesis in medaka. Molecular Reproduction and Development, 55, 31-36.
Kanamori, A., Naruse, K., Mitani, H., Shima, A., & Hori, H. (2003). Genomic organization of ZP domain containing egg envelope genes in medaka (Oryzias latipes). Gene, 305, 35-45.
Kim, B. M., Amores, A., Kang, S., Ahn, D. H., Kim, H. J., Kim, I. C., Lee, J. H., Lee, S. G., Lee, H., Lee, J., Kim, H. W., Desvignes, T., Batzel, P., Sydes, J., Titus, T., Wilson, A. C., Catchen, J. M., Warren, W. C., Schartl, M., … Park, H. (2019). Antarctic blackfin icefish genome reveals adaptations to extreme environments. Nature Ecology and Evolution, 3, 469-478.
Kurn, U., Sommer, F., Bosch, T. C., & Khalturin, K. (2007). In the urochordate Ciona intestinalis zona pellucida domain proteins vary among individuals. Developmental and Comparative Immunology, 31, 1242-1254.
Lee, K. S., Yasumasu, S., Nomura, K., & Iuchi, I. (1994). HCE, a constituent of the hatching enzymes of Oryzias latipes embryos, releases unique proline-rich polypeptides from its natural substrate, the hardened chorion. FEBS Letters, 339, 281-284.
Lefièvre, L., Conner, S. J., Salpekar, A., Olufowobi, O., Ashton, P., Pavlovic, B., Lenton, W., Afnan, M., Brewis, I. A., Monk, M., Hughes, D. C., & Barratt, C. L. (2004). Four zona pellucida glycoproteins are expressed in the human. Human Reproduction, 19, 1580-1586.
Lindsay, L. L., Wallace, M. A., & Hedrick, J. L. (2002). A hatching enzyme substrate in the Xenopus laevis egg envelope is a high molecular weight ZPA homolog. Development Growth and Differentiation, 43, 305-313.
Litscher, E. S., & Wassarman, P. M. (2007). Egg extracellular coat proteins: From fish to mammals. Histology and Histopathology, 22, 337-347.
Llorca, O., Trujillo, A., Blanco, F. J., & Bernabeu, C. (2007). Structural model of human endoglin, a transmembrane receptor responsible for hereditary hemorrhagic telangiectasia. Journal of Molecular Biology, 365, 694-705.
Murata, K., Sugiyama, H., Yasumasu, S., Iuchi, I., Yasumasu, I., & Yamagami, K. (1997). Cloning of cDNA and estrogen-induced hepatic gene expression for choriogenin H, a precursor protein of the fish egg envelope (chorion). Proceedings of the National Academy of Sciences of the United States of America, 94, 2050-2055.
Murata, K., Yamamoto, K., Iuchi, I., Yasumasu, I., & Yamagami, K. (1997). Intrahepatic expression of the genes encoding choriogenins, the precursor proteins of the egg envelope of the fish, Medaka, Oryzias latipes. Fish Physiology and Biochemistry, 17, 135-142.
Nagasawa, T., Kawaguchi, M., Sano, K., & Yasumasu, S. (2015). Sturgeon hatching enzyme and mechanism of egg envelope digestion: Insight into changes in the mechanism of egg envelope digestion during the evolution of ray-finned fish. Journal of Experimental Zoology, 324, 720-732.
Nelson, J. S., Grande, T. C., & Wilson, M. V. H. (2016). Fishes of the world (5th ed.). Wiley.
Sano, K., Kawaguchi, M., Watanabe, S., Nagakura, Y., Hiraki, T., & Yasumasu, S. (2013). Inferring the evolution of teleostean ZP genes based on their sites of expression. Journal of Experimental Zoology, 320B, 332-343.
Sano, K., Kawaguchi, M., Yoshikawa, M., Iuchi, I., & Yasumasu, S. (2010). Evolution of the teleostean zona pellucida gene inferred from the egg envelope protein genes of the Japanese eel, Anguilla japonica. FEBS Journal, 277, 4674-4684.
Sano, K., Kawaguchi, M., Yoshikawa, M., Kaneko, T., Tanaka, T., Iuchi, I., & Yasumasu, S. (2011). Hatching enzyme of Japanese eel Anguilla japonica and the possible evolution of the egg envelope digestion mechanism. FEBS Journal, 278, 3711-3723.
Sievers, F., Wilm, A., Dineen, D., Gibson, J. T., Karplus, K., Li, W., Lopez, R., McWilliam, H., Remmert, M., Söding, J., & Thompson, D. J. (2011). Higgins G D. Fast, scalable generation of high-quality protein multiple sequence alignments using Clustal Omega. Molecular Systems Biology, 7, 539.
Smith, J., Paton, I. R., Hughes, D. C., & Burt, D. W. (2005). Isolation and mapping the chicken zona pellucida genes: An insight into the evolution of orthologous genes in different species. Molecular Reproduction, 70, 133-145.
Tamura, K., Peterson, D., Peterson, N., Stecher, G., Nei, M., & Kumar, S. (2011). MEGA5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. Molecular Biology and Evolution, 28, 2731-2739.
Wu, T., Cheng, Y., Liu, Z., Tao, W., Zheng, S., & Wang, D. (2018). Bioinformatic analyses of zona pellucida genes in vertebrates and their expression in Nile tilapia. Fish Physiology and Biochemistry, 44, 435-449.
Xu, Q., Li, G., Gao, L., Wang, Z., Ye, H., Chen, X., Yang, X., Wang, Y., & Chen, L. (2012). Proteomic characterization and evolutionary analyses of zona pellucida domain-containing proteins in the egg coat of the cephalochordate, Branchiostoma belcheri. BMC Evolutionary Biology, 12, 239.
Yang, J. C., & Hedrick, J. L. (1997). cDNA cloning and sequence analysis of the Xenopus laevis egg envelope glycoprotein gp43. Development, Growth & Differentiation, 39, 457-467.
Yasumasu, S., Kawaguchi, M., Ouchi, S., Sano, K., Murata, K., Sugiyama, H., Akema, T., & Iuchi, I. (2010). Mechanism of egg envelope digestion by hatching enzymes, HCE and LCE in medaka, Oryzias latipes. Journal of Biochemistry, 148, 439-448.

Auteurs

Kaori Sano (K)

Deparatment of Chemistry, Faculty of Science, Josai University, Sakado, Saitama, Japan.

Sho Shimada (S)

Deparatment of Chemistry, Faculty of Science, Josai University, Sakado, Saitama, Japan.

Hideki Mibu (H)

Deparatment of Chemistry, Faculty of Science, Josai University, Sakado, Saitama, Japan.

Mizuki Taguchi (M)

Department of Biology, Research and Education Center for Natural Sciences, Keio University, Yokohama, Kanagawa, Japan.

Takasumi Ohsawa (T)

Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, Chiyoda-ku, Tokyo, Japan.

Mari Kawaguchi (M)

Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, Chiyoda-ku, Tokyo, Japan.

Shigeki Yasumasu (S)

Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, Chiyoda-ku, Tokyo, Japan.

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