Literature DB >> 21653890

DDX4 (VASA) is conserved in germ cell development in marsupials and monotremes.

Danielle E Hickford1, Stephen Frankenberg, Andrew J Pask, Geoff Shaw, Marilyn B Renfree.   

Abstract

DDX4 (VASA) is an RNA helicase expressed in the germ cells of all animals. To gain greater insight into the role of this gene in mammalian germ cell development, we characterized DDX4 in both a marsupial (the tammar wallaby) and a monotreme (the platypus). DDX4 is highly conserved between eutherian, marsupial, and monotreme mammals. DDX4 protein is absent from tammar fetal germ cells but is present from Day 1 postpartum in both sexes. The distribution of DDX4 protein during oogenesis and spermatogenesis in the tammar is similar to eutherians. Female tammar germ cells contain DDX4 protein throughout all stages of postnatal oogenesis. In males, DDX4 is in gonocytes, and during spermatogenesis it is present in spermatocytes and round spermatids. A similar distribution of DDX4 occurs in the platypus during spermatogenesis. There are several DDX4 isoforms in the tammar, resulting from both pre- and posttranslational modifications. DDX4 in marsupials and monotremes has multiple splice variants and polyadenylation motifs. Using in silico analyses of genomic databases, we found that these previously unreported splice variants also occur in eutherians. In addition, several elements implicated in the control of Ddx4 expression in the mouse, including RGG (arginine-glycine-glycine) and dimethylation of arginine motifs and CpG islands within the Ddx4 promoter, are also highly conserved. Collectively these data suggest that DDX4 is essential for the regulation of germ cell proliferation and differentiation across all three extant mammalian groups-eutherians, marsupials, and monotremes.

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Year:  2011        PMID: 21653890     DOI: 10.1095/biolreprod.111.091629

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  16 in total

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2.  Vasa Is a Potential Germ Cell Marker in Leopard Coral Grouper (Plectropomus leopardus).

Authors:  Mingyi Wang; Hui Ding; Shaoxuan Wu; Mengya Wang; Cun Wei; Bo Wang; Zhenmin Bao; Jingjie Hu
Journal:  Genes (Basel)       Date:  2022-06-16       Impact factor: 4.141

3.  Taf7l cooperates with Trf2 to regulate spermiogenesis.

Authors:  Haiying Zhou; Ivan Grubisic; Ke Zheng; Ying He; P Jeremy Wang; Tommy Kaplan; Robert Tjian
Journal:  Proc Natl Acad Sci U S A       Date:  2013-09-30       Impact factor: 11.205

4.  Genome sequence of an Australian kangaroo, Macropus eugenii, provides insight into the evolution of mammalian reproduction and development.

Authors:  Marilyn B Renfree; Anthony T Papenfuss; Janine E Deakin; James Lindsay; Thomas Heider; Katherine Belov; Willem Rens; Paul D Waters; Elizabeth A Pharo; Geoff Shaw; Emily S W Wong; Christophe M Lefèvre; Kevin R Nicholas; Yoko Kuroki; Matthew J Wakefield; Kyall R Zenger; Chenwei Wang; Malcolm Ferguson-Smith; Frank W Nicholas; Danielle Hickford; Hongshi Yu; Kirsty R Short; Hannah V Siddle; Stephen R Frankenberg; Keng Yih Chew; Brandon R Menzies; Jessica M Stringer; Shunsuke Suzuki; Timothy A Hore; Margaret L Delbridge; Hardip R Patel; Amir Mohammadi; Nanette Y Schneider; Yanqiu Hu; William O'Hara; Shafagh Al Nadaf; Chen Wu; Zhi-Ping Feng; Benjamin G Cocks; Jianghui Wang; Paul Flicek; Stephen M J Searle; Susan Fairley; Kathryn Beal; Javier Herrero; Dawn M Carone; Yutaka Suzuki; Sumio Sugano; Atsushi Toyoda; Yoshiyuki Sakaki; Shinji Kondo; Yuichiro Nishida; Shoji Tatsumoto; Ion Mandiou; Arthur Hsu; Kaighin A McColl; Benjamin Lansdell; George Weinstock; Elizabeth Kuczek; Annette McGrath; Peter Wilson; Artem Men; Mehlika Hazar-Rethinam; Allison Hall; John Davis; David Wood; Sarah Williams; Yogi Sundaravadanam; Donna M Muzny; Shalini N Jhangiani; Lora R Lewis; Margaret B Morgan; Geoffrey O Okwuonu; San Juana Ruiz; Jireh Santibanez; Lynne Nazareth; Andrew Cree; Gerald Fowler; Christie L Kovar; Huyen H Dinh; Vandita Joshi; Chyn Jing; Fremiet Lara; Rebecca Thornton; Lei Chen; Jixin Deng; Yue Liu; Joshua Y Shen; Xing-Zhi Song; Janette Edson; Carmen Troon; Daniel Thomas; Amber Stephens; Lankesha Yapa; Tanya Levchenko; Richard A Gibbs; Desmond W Cooper; Terence P Speed; Asao Fujiyama; Jennifer A M Graves; Rachel J O'Neill; Andrew J Pask; Susan M Forrest; Kim C Worley
Journal:  Genome Biol       Date:  2011-08-29       Impact factor: 13.583

5.  Vasa-Like DEAD-Box RNA Helicases of Schistosoma mansoni.

Authors:  Danielle E Skinner; Gabriel Rinaldi; Sutas Suttiprapa; Victoria H Mann; Pablo Smircich; Alexis A Cogswell; David L Williams; Paul J Brindley
Journal:  PLoS Negl Trop Dis       Date:  2012-06-12

6.  Differential Regulation of Gene and Protein Expression by Zinc Oxide Nanoparticles in Hen's Ovarian Granulosa Cells: Specific Roles of Nanoparticles.

Authors:  Yong Zhao; Lan Li; Peng-Fei Zhang; Wei Shen; Jing Liu; Fen-Fang Yang; Hong-Bo Liu; Zhi-Hui Hao
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Review 7.  Primordial Germ Cell Specification and Migration.

Authors:  Florence Marlow
Journal:  F1000Res       Date:  2015-12-16

8.  Postnatal epigenetic reprogramming in the germline of a marsupial, the tammar wallaby.

Authors:  Shunsuke Suzuki; Geoffrey Shaw; Marilyn B Renfree
Journal:  Epigenetics Chromatin       Date:  2013-06-03       Impact factor: 4.954

9.  The Expression of a Novel Mitochondrially-Encoded Gene in Gonadic Precursors May Drive Paternal Inheritance of Mitochondria.

Authors:  Liliana Milani; Fabrizio Ghiselli; Andrea Pecci; Maria Gabriella Maurizii; Marco Passamonti
Journal:  PLoS One       Date:  2015-09-04       Impact factor: 3.240

10.  Splice variants and promoter methylation status of the Bovine Vasa Homology (Bvh) gene may be involved in bull spermatogenesis.

Authors:  Hua Luo; Yang Zhou; Yingxia Li; Qifa Li
Journal:  BMC Genet       Date:  2013-07-01       Impact factor: 2.797

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