Ectopic Expression of Cenexin1 S796A Mutant in $ODF2^{+/-}$ Knockout Background Causes a Sperm Tail Development Defect

  • Lee, Kyung Ho (Laboratory of Metabolism, Center for Cancer Research, National Cancer Institute)
  • 투고 : 2012.10.19
  • 심사 : 2012.12.07
  • 발행 : 2012.12.31

초록

The outer dense fiber 2 (ODF2) protein is an important component of sperm tail outer dense fiber and localizes at the centrosome. It has been reported that the RO072 ES cell derived homozygote knock out of ODF2 results in an embryonic lethal phenotype, and XL169 ES cell derived heterozygote knock out causes severe defects in sperm tail development. The ODF2s splicing variant, Cenexin1, possesses a C-terminal extension, and the phosphorylation of serine 796 residue in an extended C-terminal is responsible for Plk1 binding. Cenexin1 assembles ninein and causes ciliogenesis in early stages of the cell cycle in a Plk1-independent manner. Alternatively, in the late stages of the cell cycle, G2/M phase, Cenexin1 binds to Plk1 and results in proper mitotic progression. In this study, to identify the in vivo function of Plk1 binding to phosphorylated Cenexin1 S796 residue, and to understand the in vivo functional differences between ODF2 and Cenexin1, we generated ODF2/Cenexin1 S796A/Cenexin1 WT expressing transgenic mice in a RO072 ES cell derived $ODF2^{+/-}$ knock out background. We observed a severe defect of sperm tail development by ectopic expression of Cenexin1 S796A mutant and no phenotypic differences between the ectopic expression of ODF2/Cenexin1 WT in $ODF2^{+/-}$ background and in normal wild type mice.

키워드

참고문헌

  1. Baltz JM, Williams PO, Cone RA (1990) Dense fibers protect mammalian sperm against damage. Biol Reprod 43:485-491. https://doi.org/10.1095/biolreprod43.3.485
  2. Brohmann H, Pinnecke S, Hoyer-Fender S (1997) Identification and characterization of new cDNAs encoding outer dense fiber proteins of rat sperm. J Biol Chem 272:10327-10332. https://doi.org/10.1074/jbc.272.15.10327
  3. Chiang YJ, Kole HK, Brown K, Naramura M, Fukuhara S, Hu RJ, Jang IK, Gutkind JS, Shevach E, Gu H (2000) Cbl-b regulates the CD28 dependence of T-cell activation. Nature 403:216-220. https://doi.org/10.1038/35003235
  4. Haidl G, Becker A, Henkel R (1991) Poor development of outer dense fibers as a major cause of tail abnormalities in the spermatozoa of asthenoteratozoospermic men. Hum Reprod 6:1431-1438.
  5. Horowitz E, Zhang Z, Jones BH, Moss SB, Ho C, Wood JR, Wang X, Sammel MD, Strauss JF III (2005) Patterns of expression of sperm flagellar genes: Early expression of genes encoding axonemal proteins during the spermatogenic cycle and shared features of promoters of genes encoding central apparatus proteins. Mol Hum Reprod 11:307-317. https://doi.org/10.1093/molehr/gah163
  6. Hoyer-Fender S, Petersen C, Brohmann H, Rhee K, Wolgemuth DJ (1998) Mouse Odf2 cDNAs consist of evolutionary conserved as well as highly variable sequences and encode outer dense fiber proteins of the sperm tail. Mol Reprod Dev 51:167-175. https://doi.org/10.1002/(SICI)1098-2795(199810)51:2<167::AID-MRD6>3.0.CO;2-O
  7. Lindemann CB (1996) Functional significance of the outer dense fibers of mammalian sperm examined by computer simulation with the geometric clutch model. Cell Motil Cytoskel 34:258-270. https://doi.org/10.1002/(SICI)1097-0169(1996)34:4<258::AID-CM1>3.0.CO;2-4
  8. Mariappa D, Aladakatti RH, Dasari SK, Sreekumar A, Wolkowicz MJ, Van Der Hoorn F, Seshagiri PB (2010) Inhibition of tyrosine phosphorylation of sperm flagellar proteins, outer dense fiber protein-2 and Tektin-2, is associated with impaired motility during apacitation of hamster spermatozoa. Mol Reprod Dev 77:182-193.
  9. Nakagawa Y, Yamane Y, Okanoue T, Tsukita S, Tsukita S (2001) Outer dense fiber 2 is a widespread centrosome scaffold component preferentially associated with mother centrioles: its identification from isolated centrosomes. Mol Biol Cell 12:1687-1697. https://doi.org/10.1091/mbc.12.6.1687
  10. Oko R (1988) Comparative analysis of proteins from the fibrous sheath and outer dense fibers of rat spermatozoa. Biol Reprod 39:169-182. https://doi.org/10.1095/biolreprod39.1.169
  11. Salmon NA, Reijo Pera RA, Xu EY (2006) A gene trap knockout of the abundant sperm tail protein, outer dense fiber 2, results in preimplantation lethality. Genesis 44:515-22. https://doi.org/10.1002/dvg.20241
  12. Schalles U, Shao X, van der Hoorn FA, Oko R (1998) Developmental expression of the 84-kDa ODF sperm protein: Localization to both the cortex and medulla of outer dense fibers and to the connecting piece. Dev Biol 199:250-260. https://doi.org/10.1006/dbio.1998.8931
  13. Shao X, Tarnasky HA, Schalles U, Oko R, van der Hoorn FA (1997) Interactional cloning of the 84-kDa major outer dense fiber protein Odf84. Leucine zippers mediate associations of Odf84 and Odf27. J Biol Chem 272:6105-6113. https://doi.org/10.1074/jbc.272.10.6105
  14. Soung NK, Kang YH, Kim K, Kamijo K, Yoon H, Seong YS, Kuo YL, Miki T, Kim SR, Kuriyama R, Giam CZ, Ahn CH, Lee KS (2006) Requirement of hCenexin for proper mitotic functions of polo-like kinase 1 at the centrosomes. Mol Cell Biol 26:8316-8335. https://doi.org/10.1128/MCB.00671-06
  15. Soung NK, Park JE, Yu LR, Lee KH, Lee JM, Bang JK, Veenstra TD, Rhee K, Lee KS (2009) Plk1-dependent and -independent roles of an ODF2 splice variant, hCenexin1, at the centrosome of somatic cells. Dev Cell 16:539-550. https://doi.org/10.1016/j.devcel.2009.02.004
  16. Tarnasky H, Cheng M, Ou Y, Thundathil JC, Oko R, van der Hoorn FA (2010) Gene trap mutation of murine outer dense fiber protein-2 gene can result in sperm tail abnormalities in mice with high percentage chimaerism. BMC Dev Biol 10:67. https://doi.org/10.1186/1471-213X-10-67
  17. Turner KJ, Sharpe RM, Gaughan J, Millar MR, Foster PM, Saunders PT (1997) Expression cloning of a rat testicular transcript abundant in germ cells, which contains two leucine zipper motifs. Biol Reprod 57:1223-1232. https://doi.org/10.1095/biolreprod57.5.1223