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Identification of Prosaposin as a Novel Interaction Partner for Rhox5

Fen Guo Xiaofeng Huang Shiqian Li Limin Sun Yueqin Li Hongjian Li Yi Zhou Yanhui Chu Tianhong Zhou

Fen Guo, Xiaofeng Huang, Shiqian Li, Limin Sun, Yueqin Li, Hongjian Li, Yi Zhou, Yanhui Chu, Tianhong Zhou. Identification of Prosaposin as a Novel Interaction Partner for Rhox5[J]. Journal of Genetics and Genomics, 2007, 34(5): 392-399. doi: 10.1016/S1673-8527(07)60042-3
Citation: Fen Guo, Xiaofeng Huang, Shiqian Li, Limin Sun, Yueqin Li, Hongjian Li, Yi Zhou, Yanhui Chu, Tianhong Zhou. Identification of Prosaposin as a Novel Interaction Partner for Rhox5[J]. Journal of Genetics and Genomics, 2007, 34(5): 392-399. doi: 10.1016/S1673-8527(07)60042-3

doi: 10.1016/S1673-8527(07)60042-3

Identification of Prosaposin as a Novel Interaction Partner for Rhox5

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    [2] Zhao, Q, Morales, et al. Identification of a novel sequence involved in lysosomal sorting of the sphingolipid activator protein prosaposin J Biol Chem, 275 (2000),pp. 24829-24839
    [3] Kishimoto, Y, Hiraiwa, et al. Saposins: structure, function, distribution, and molecular genetics J Lipid Res, 33 (1992),pp. 1255-1267
    [4] Regis, S, Filocamo, et al. An Asn<Lys substitution in saposin B involving a conservved amino acidic residue and leading to the loss of the single N-glycosylation site in a patient with metachromatic leukorydystrophy and normal arylsulphatase A activity Eur J Hum Genet, 7 (1999),pp. 125-130
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    [6] Spieqel, R, Bach, et al. A mutation in the saposin A coding region of the prosaposin gene in an infant presenting as Krabbe disease: first report of saposin A deficency in humans Mol Genet and Meta, 84 (2005),pp. 160-166
    [7] Morita, F, Wen, et al. Protective effect of a prosaposin derived 18-mer peptide on slowly progressive neuronal degeneration after brief ischemia J Cereb Blood Flow Metab, 21 (2001),pp. 1295-1302
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    [9] Zhao, Q, Hay, et al. Structural analysis of the mouse prosaposin gene reveals the presence of an exon that is alternatively spliced in transcribed mRNAs Mol Reprod Dev, 48 (1997),pp. 1-8
    [10] Maclean, JA, Chen, et al. Rhox: a new homeobox gene cluster Cell, 120 (2005),pp. 369-382
    [11] Wilkinson, MF, Kleeman, et al. A novel oncofetal gene is expressed in a stage-specific manner in murine embryonic development Dev Biol, 141 (1990),pp. 451-455
    [12] Lin, TP, Labosky, et al. The Pem homeobox gene is X-linked and exclusively expressed in extraembryonic tissues during early murine development Dev Biol, 166 (1994),pp. 170-179
    [13] Maiti, S, Doskow, et al. The Pem homeobox gene: Androgen-dependent and –independent promoters and tissue-specific alternative RNA splicing J Biol Chem, 271 (1996),pp. 17536-17546
    [14] Lindsey, S, Wilkinson, et al. Pem: a testosterone- and LH-regulated homeobox gene expressed in mouse Sertoli cells and epididymis Dev Biol, 179 (1996),pp. 471-484
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    [16] Morales, CR, Zhao, et al. Role of prosaposin in the male reproductive system: effect of prosaposin inactivation on the testis, epididymis, prostate, and seminal vesicles Arch Androl, 44 (2000),pp. 173-186
    [17] Fan, Y, Melhem, et al. Forced expression of the homeobox-containing gene Pem blocks differentiation of embryonic stem cells Dev Biol, 210 (1999),pp. 481-496
    [18] Guo, F, Li, et al. Interaction of mouse Pem protein and cell division cycle 37 homolog Acta Biochim Biophys Sin, 37 (2005),pp. 784-787
    [19] Luo, ZW, Guo, et al. Screening and detecting of proteins interacting with mPem Shengwu Gongcheng Xuebao, 22 (2006),pp. 125-130
    [20] Lemmens, IH, Forsberg, et al. Menin interacts directly with the homeobox-containing protein Pem Biochem Biophys Res Commun, 286 (2001),pp. 426-431
    [21] Cohen, T, Auerbach, et al. The exon-8 containing prosaposin gene splice variant is dispensable for mouse development, lysosomal function, and secretion Mol and Cell Biol, 25 (2005),pp. 2431-2440
    [22] Morales, CR, Zhao, et al. Targeted disruption of mouse prosaposin gene affects the development of the prostate gland and other male reproductive organs J Androl, 21 (2000),pp. 765-775
    [23] Morales, CR, Badran, et al. Prosaposin ablation inactivates the MAPK and Akt signaling pathways and interferes with the development of the prostate gland Asian J Androl, 5 (2003),pp. 57-63
    [24] Koochekpour, S, Sartor, et al. Prosaptide TX14A stimulates growth, migration, and invasion and activates the Raf-MEK-ERK-RSK-ELK-1 signaling pathway in prostate cancer cells Prostate, 61 (2004),pp. 114-123
    [25] Lee, TJ, Sartor, et al. Saposin C promotes survival and prevents apoptosis via PI3K/Akt-dependent pathway in prostate cancer cells Mol Cancer, 3 (2004),pp. 31-45
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出版历程
  • 收稿日期:  2006-10-25
  • 录用日期:  2006-11-29
  • 网络出版日期:  2007-06-07
  • 刊出日期:  2007-05-20

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