Phosphoglycerate Kinase 2 (PGK2) Is Essential for Sperm Function and Male Fertility in Mice1
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William D. Willis | W. Willis | D. A. O’Brien | C. Geyer | J. McCarrey | E. M. Eddy | E. Goulding | John R. McCarrey | Polina V. Danshina | Christopher B. Geyer | Qunsheng Dai | Eugenia H. Goulding | G. Barrie Kitto | E.M. Eddy | Deborah A. O'Brien | Q. Dai | G. Kitto
[1] G. Ramponi,et al. Aromatic acyl phosphates as substrates of acyl phosphatase. , 1966, Archives of biochemistry and biophysics.
[2] John Calvin Reed,et al. Testis-Specific Cytochrome c-Null Mice Produce Functional Sperm but Undergo Early Testicular Atrophy , 2002, Molecular and Cellular Biology.
[3] D. Cooper,et al. Testis specific phosphoglycerate kinase B in mouse. , 1976, The Journal of experimental zoology.
[4] J. McCarrey,et al. Human testis-specific PGK gene lacks introns and possesses characteristics of a processed gene , 1987, Nature.
[5] P. Park,et al. Postmeiotic Sex Chromatin in the Male Germline of Mice , 2006, Current Biology.
[6] V. Muronetz,et al. A study on the complexes between human erythrocyte enzymes participating in the conversions of 1,3-diphosphoglycerate. , 1997, Archives of biochemistry and biophysics.
[7] M. Nakamura,et al. Studies of metabolism of round spermatids: glucose as unfavorable substrate. , 1986, Biology of reproduction.
[8] J. Kramer. Immunofluorescent localization of PGK-1 and PGK-2 isozymes within specific cells of the mouse testis. , 1981, Developmental biology.
[9] W. Willis,et al. Glyceraldehyde 3-phosphate dehydrogenase-S, a sperm-specific glycolytic enzyme, is required for sperm motility and male fertility. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[10] A. Travis,et al. Functional Relationships between Capacitation-dependent Cell Signaling and Compartmentalized Metabolic Pathways in Murine Spermatozoa* , 2001, The Journal of Biological Chemistry.
[11] M. Griswold,et al. The Murine Testicular Transcriptome: Characterizing Gene Expression in the Testis During the Progression of Spermatogenesis1 , 2004, Biology of reproduction.
[12] P. Nordlund,et al. Crystal structure of common type acylphosphatase from bovine testis. , 1997, Structure.
[13] D. A. O’Brien,et al. Expression of a glyceraldehyde 3-phosphate dehydrogenase gene specific to mouse spermatogenic cells. , 1992, Biology of reproduction.
[14] R. Erickson,et al. Haploid accumulation and translational control of phosphoglycerate kinase-2 messenger RNA during mouse spermatogenesis. , 1983, Developmental biology.
[15] L. Russell,et al. Histological and Histopathological Evaluation of the Testis , 1990 .
[16] N. Nakamura,et al. Mouse spermatogenic cell–specific type 1 hexokinase (mHk1‐s) transcripts are expressed by alternative splicing from the mHk1 gene and the HK1‐S protein is localized mainly in the sperm tail , 1998, Molecular reproduction and development.
[17] N. Taddei,et al. Insights into acylphosphatase structure and catalytic mechanism , 1997, Cellular and Molecular Life Sciences CMLS.
[18] D. Sakkas,et al. Protein Tyrosine Phosphorylation in Sperm During Gamete Interaction in the Mouse: The Influence of Glucose1 , 2001, Biology of reproduction.
[19] J. Rossi,et al. Differential transcription of Pgk genes during spermatogenesis in the mouse. , 1992, Developmental biology.
[20] J. Grootegoed,et al. Effect of glucose on ATP dephosphorylation in rat spermatids. , 1986, Journal of reproduction and fertility.
[21] D. A. O’Brien,et al. Unique hexokinase messenger ribonucleic acids lacking the porin-binding domain are developmentally expressed in mouse spermatogenic cells. , 1993, Biology of reproduction.
[22] D. Dix,et al. Targeted gene disruption of Hsp70-2 results in failed meiosis, germ cell apoptosis, and male infertility. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[23] C. P. Leblond,et al. Spermiogenesis of rat, mouse, hamster and guinea pig as revealed by the periodic acid-fuchsin sulfurous acid technique. , 1952, The American journal of anatomy.
[24] D. A. O’Brien,et al. X‐ray analysis of phosphoglycerate kinase 2, a sperm‐specific isoform from Mus musculus , 2008, Proteins.
[25] J. VandeBerg,et al. Immunohistochemical localization of phosphoglycerate kinase isozymes in mouse testes. , 1981, The Journal of experimental zoology.
[26] Yanli Wang,et al. Crystal Structure of Human Bisphosphoglycerate Mutase* , 2004, Journal of Biological Chemistry.
[27] J. McCarrey,et al. Analysis of the cDNA and encoded protein of the human testis-specific PGK-2 gene. , 1996, Developmental genetics.
[28] H. Blüthmann,et al. Immunohistochemical localization of mouse testis‐specific phosphoglycerate kinase (PGK‐2) by monoclonal antibodies. , 1982, The EMBO journal.
[29] J. Tobias,et al. Expression profiling reveals meiotic male germ cell mRNAs that are translationally up- and down-regulated , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[30] Richard van Wijk,et al. The energy-less red blood cell is lost: erythrocyte enzyme abnormalities of glycolysis , 2005 .
[31] C. Boyd,et al. Novel placental expression of 2,3-bisphosphoglycerate mutase. , 2006, Placenta.
[32] C. Mukai,et al. Glycolysis Plays a Major Role for Adenosine Triphosphate Supplementation in Mouse Sperm Flagellar Movement , 2004, Biology of reproduction.
[33] L. Fraser,et al. A glycolytic product is obligatory for initiation of the sperm acrosome reaction and whiplash motility required for fertilization in the mouse. , 1981, Journal of reproduction and fertility.
[34] P. D. de Jong,et al. Bacterial artificial chromosome libraries for mouse sequencing and functional analysis. , 2000, Genome research.
[35] T. A. Bell,et al. Three male germline-specific aldolase A isozymes are generated by alternative splicing and retrotransposition. , 2007, Developmental biology.
[36] W. Willis,et al. Expression of the Gene for Mouse Lactate Dehydrogenase C (Ldhc) Is Required for Male Fertility1 , 2008, Biology of reproduction.
[37] R N Peterson,et al. ATP synthesis and oxidative metabolism in human spermatozoa. , 1970, Biology of reproduction.
[38] H. Yoshioka,et al. In Vivo Analysis of Developmentally and Evolutionarily Dynamic Protein-DNA Interactions Regulating Transcription of the Pgk2 Gene during Mammalian Spermatogenesis , 2007, Molecular and Cellular Biology.
[39] D. A. O’Brien,et al. Fibrous sheath of mammalian spermatozoa , 2003, Microscopy research and technique.
[40] M. Nakamura,et al. Regulation of glucose metabolism by adenine nucleotides in round spermatids from rat testes. , 1982, The Journal of biological chemistry.
[41] I. Krimsky. Enzymatic formation of high levels of 1,3-diphosphoglycerate from 3-phosphoglycerate; isolation and further metabolism. , 1959, The Journal of biological chemistry.
[42] A. Lehninger,et al. Regulation of free Ca2+ by liver mitochondria and endoplasmic reticulum. , 1980, The Journal of biological chemistry.
[43] R. Erickson,et al. Developmental program of PGK-1 and PGK-2 isozymes in spermatogenic cells of the mouse: specific activities and rates of synthesis. , 1981, Developmental biology.
[44] E. Goldberg. Lactic and Malic Dehydrogenases in Human Spermatozoa , 1963, Science.
[45] M. McBurney,et al. The testis-specific phosphoglycerate kinase gene pgk-2 is a recruited retroposon , 1987, Molecular and cellular biology.
[46] D. A. O’Brien,et al. Differential activity and synthesis of lactate dehydrogenase isozymes A (muscle), B (heart), and C (testis) in mouse spermatogenic cells. , 1989, Biology of reproduction.
[47] Rafael Oliva,et al. Proteomic identification of human sperm proteins , 2006, Proteomics.
[48] J. Turner,et al. Meiotic sex chromosome inactivation , 2007, Development.
[49] Wouter W van Solinge,et al. The energy-less red blood cell is lost: erythrocyte enzyme abnormalities of glycolysis. , 2005, Blood.
[50] D. A. O’Brien,et al. Glyceraldehyde 3-phosphate dehydrogenase-S protein distribution during mouse spermatogenesis. , 1998, Biology of reproduction.
[51] A. Williams,et al. The role of glucose in supporting motility and capacitation in human spermatozoa. , 2001, Journal of andrology.
[52] T. Cooper. The onset and maintenance of hyperactivated motility of spermatozoa from the mouse , 1984 .
[53] W. Willis,et al. Targeted disruption of the Akap4 gene causes defects in sperm flagellum and motility. , 2002, Developmental biology.
[54] A. Sato,et al. Importance of Ca2+, K+ and glucose in the medium for sperm penetration through the human zona pellucida. , 1991, The Tohoku journal of experimental medicine.
[55] D. A. O’Brien,et al. Multiple Glycolytic Enzymes Are Tightly Bound to the Fibrous Sheath of Mouse Spermatozoa1 , 2006, Biology of reproduction.
[56] A. Terzic,et al. Mitochondrial ATP-sensitive K+ channels modulate cardiac mitochondrial function. , 1998, American journal of physiology. Heart and circulatory physiology.