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Published in: Calcified Tissue International 1/2005

01-07-2005

Tooth Enamel Defects in Mice with a Deletion at the Arhgap6/AmelX Locus

Authors: S. K. Prakash, C. W. Gibson, J. T. Wright, C. Boyd, T. Cormier, R. Sierra, Y. Li, W. R. Abrams, M. A. Aragon, Z. A. Yuan, I. B. van den Veyver

Published in: Calcified Tissue International | Issue 1/2005

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Abstract

The amelogenin proteins regulate enamel mineral formation in the developing tooth. The human AMELX gene, which encodes the amelogenin proteins, is located within an intron of the Arhgap6gene. ARHGAP6 encodes a RhoGAP, which regulates activity of RhoA, a small G protein involved in intracellular signal transduction. Mice were generated in which the entire ARHGAP6 gene was deleted by Cre-mediated recombination, which also removed the nested AmelX gene. Enamel from these mice appeared chalky white, and the molars showed excessive wear. The enamel layer was hypoplastic and nonprismatic, whereas other dental tissues had normal morphology. This phenotype is similar to that reported for AmelX null mice, which have a short deletion that removed the region surrounding the translation initiation site, and resembles some forms of X-linked amelogenesis imperfecta in humans. Analysis of the enamel from the Arhgap6/AmelX-deleted mice verifies that the AmelX gene is nested within the murine Arhgap6 gene and shows that removal of the entire AmelX gene leads to a phenotype similar to the earlier AmelX null mouse results, in which no amelogenin protein was detected. However, an unusual layer of aprismatic enamel covers the enamel surface, which may be related to the 1.1-Mb deletion, which included Arhgap6 in these mice.
Literature
1.
go back to reference Termine, JD, Belcourt, AB, Christner, PJ, Conn, KM, Nylen, MU 1980Properties of dissociatively extracted fetal tooth matrix proteinsI. Principal molecular species in developing bovine enamel. J Biol Chem25597609768 Termine, JD, Belcourt, AB, Christner, PJ, Conn, KM, Nylen, MU 1980Properties of dissociatively extracted fetal tooth matrix proteinsI. Principal molecular species in developing bovine enamel. J Biol Chem25597609768
2.
go back to reference Robinson, C, Brookes, SJ, Shore, RC, Kirkham, J 1998The developing enamel matrix: nature and functionEur J Oral Sci 106 Suppl1282291 Robinson, C, Brookes, SJ, Shore, RC, Kirkham, J 1998The developing enamel matrix: nature and functionEur J Oral Sci 106 Suppl1282291
3.
go back to reference Lagerstrom, M, Dahl, N, Nakahori, Y, Nakagome, Y, Backman, B, Landegren, U, et al. 1991A deletion in the amelogenin gene (AMG) causes X-linked amelogenesis imperfecta (AIH1)Genomics10971975CrossRefPubMed Lagerstrom, M, Dahl, N, Nakahori, Y, Nakagome, Y, Backman, B, Landegren, U,  et al. 1991A deletion in the amelogenin gene (AMG) causes X-linked amelogenesis imperfecta (AIH1)Genomics10971975CrossRefPubMed
4.
go back to reference Hart, PS, Hart, TC, Simmer, JP, Wright, JT 2002A nomenclature for X-linked amelogenesis imperfectaArch Oral Biol47255260CrossRefPubMed Hart, PS, Hart, TC, Simmer, JP, Wright, JT 2002A nomenclature for X-linked amelogenesis imperfectaArch Oral Biol47255260CrossRefPubMed
5.
go back to reference Diekwisch, T, David, S, Bringas, P,Jr, Santos, V, Slavkin, HC 1993Antisense inhibition of AMEL translation demonstrates supramolecular controls for enamel HAP crystal growth during embryonic mouse molar developmentDevelopment117471482PubMed Diekwisch, T, David, S, Bringas, P,Jr, Santos, V, Slavkin, HC 1993Antisense inhibition of AMEL translation demonstrates supramolecular controls for enamel HAP crystal growth during embryonic mouse molar developmentDevelopment117471482PubMed
6.
go back to reference Lyngstadaas, SP, Risnes, S, Sproat, BS, Thrane, PS, Prydz, HP 1995A synthetic, chemically modified ribozyme eliminates amelogenin, the major translation product in developing mouse enamel in vivoEMBO J1452245229PubMed Lyngstadaas, SP, Risnes, S, Sproat, BS, Thrane, PS, Prydz, HP 1995A synthetic, chemically modified ribozyme eliminates amelogenin, the major translation product in developing mouse enamel in vivoEMBO J1452245229PubMed
7.
go back to reference Gibson, CW, Yuan, ZA, Hall, B, Longenecker, G, Chen, E, Thyagarajan, T, Sreenath, T, Wright, JT, Decker, S, Piddington, R, Harrison, G, Kulkarni, AB 2001Amelogenin-deficient mice display an amelogenesis imperfecta phenotypeJ Biol Chem2763187131875CrossRefPubMed Gibson, CW, Yuan, ZA, Hall, B, Longenecker, G, Chen, E, Thyagarajan, T, Sreenath, T, Wright, JT, Decker, S, Piddington, R, Harrison, G, Kulkarni, AB 2001Amelogenin-deficient mice display an amelogenesis imperfecta phenotypeJ Biol Chem2763187131875CrossRefPubMed
8.
go back to reference Nakahori Y, Takenaka O, Nakagome Y (1991) A human X-Y homologous region encodes “amelogenin”. Genomics 9:264–269CrossRefPubMed Nakahori Y, Takenaka O, Nakagome Y (1991) A human X-Y homologous region encodes “amelogenin”. Genomics 9:264–269CrossRefPubMed
9.
go back to reference Salido, EC, Yen, PH, Koprivnikar, K, Yu, LC, Shapiro, LJ 1992The human enamel protein gene amelogenin is expressed from both the X and Y chromosomesAm J Hum Genet50303316PubMed Salido, EC, Yen, PH, Koprivnikar, K, Yu, LC, Shapiro, LJ 1992The human enamel protein gene amelogenin is expressed from both the X and Y chromosomesAm J Hum Genet50303316PubMed
10.
go back to reference Lau, EC, Mohandas, TK, Shapiro, LJ, Slavkin, HC, Snead, ML 1989Human and mouse amelogenin gene loci are on the sex chromosomesGenomics4162168CrossRefPubMed Lau, EC, Mohandas, TK, Shapiro, LJ, Slavkin, HC, Snead, ML 1989Human and mouse amelogenin gene loci are on the sex chromosomesGenomics4162168CrossRefPubMed
11.
go back to reference Gibson, CW, Golub, EE, Abrams, WR, Shen, G, Ding, W, Rosenbloom, J 1992Bovine amelogenin message heterogeneity: alternative splicing and Y-chromosomal gene transcriptionBiochemistry3183848388CrossRefPubMed Gibson, CW, Golub, EE, Abrams, WR, Shen, G, Ding, W, Rosenbloom, J 1992Bovine amelogenin message heterogeneity: alternative splicing and Y-chromosomal gene transcriptionBiochemistry3183848388CrossRefPubMed
12.
go back to reference Bailey, DMD, Affara, NA, Ferguson-Smith, MA 1992The X-Y homologous gene amelogenin maps to the short arms of both the X and Y chromosomes and is highly conserved in primatesGenomics14203205CrossRefPubMed Bailey, DMD, Affara, NA, Ferguson-Smith, MA 1992The X-Y homologous gene amelogenin maps to the short arms of both the X and Y chromosomes and is highly conserved in primatesGenomics14203205CrossRefPubMed
13.
go back to reference Girandot, M, Sire, J-Y 1998Evolution of the amelogenin gene in toothed and toothless vertebratesEur J Oral Sci106501508PubMed Girandot, M, Sire, J-Y 1998Evolution of the amelogenin gene in toothed and toothless vertebratesEur J Oral Sci106501508PubMed
14.
go back to reference Prakash, SK, Paylor, R, Jenna, S, Lamarche-Vane, N, Armstrong, DL, Xu, B, Mancini, MA, Zoghbi, HY 2000Functional analysis of ARHGAP6, a novel GTPase activating protein for RhoAHum Mol Genet9477488CrossRefPubMed Prakash, SK, Paylor, R, Jenna, S, Lamarche-Vane, N, Armstrong, DL, Xu, B, Mancini, MA, Zoghbi, HY 2000Functional analysis of ARHGAP6, a novel GTPase activating protein for RhoAHum Mol Genet9477488CrossRefPubMed
15.
go back to reference Schaefer, L, Prakash, S, Zoghbi, HY 1997Cloning and characterization of a novel rho-type GTPase-activating protein gene (ARHGAP6) from the critical region for microphthalmia with linear skin defectsGenomics46268277CrossRefPubMed Schaefer, L, Prakash, S, Zoghbi, HY 1997Cloning and characterization of a novel rho-type GTPase-activating protein gene (ARHGAP6) from the critical region for microphthalmia with linear skin defectsGenomics46268277CrossRefPubMed
18.
go back to reference Aelst, L, D’Souza-Schorey, C 1997Rho GTPases and signaling networksGenes Devel1122952322PubMed Aelst, L, D’Souza-Schorey, C 1997Rho GTPases and signaling networksGenes Devel1122952322PubMed
19.
go back to reference Veyver, IB, Cormier, TA, Jurecic, V, Baldini, A, Zoghbi, HY 1998Characterization and physical mapping in human and mouse of a novel RING finger gene in Xp22Genomics51251261CrossRefPubMed Veyver, IB, Cormier, TA, Jurecic, V, Baldini, A, Zoghbi, HY 1998Characterization and physical mapping in human and mouse of a novel RING finger gene in Xp22Genomics51251261CrossRefPubMed
20.
go back to reference Prakash, SK, Cormier, TA, McCall, AE, Garcia, JJ, Sierra, R, Haupt, B, Zoghbi, HY, Veyver, IB 2002Loss of holocytochrome c-type synthetase causes the male lethality of X-linked dominant microphthalmia with linear skin defects (MLS) syndromeHum Molec Genet1132373248CrossRefPubMed Prakash, SK, Cormier, TA, McCall, AE, Garcia, JJ, Sierra, R, Haupt, B, Zoghbi, HY, Veyver, IB 2002Loss of holocytochrome c-type synthetase causes the male lethality of X-linked dominant microphthalmia with linear skin defects (MLS) syndromeHum Molec Genet1132373248CrossRefPubMed
21.
go back to reference Zheng, B, Mills, AA, Bradley, A 1999A system for rapid generation of coat color-tagged knockouts and defined chromosomal rearrangements in miceNucleic Acids Res2723542360CrossRefPubMed Zheng, B, Mills, AA, Bradley, A 1999A system for rapid generation of coat color-tagged knockouts and defined chromosomal rearrangements in miceNucleic Acids Res2723542360CrossRefPubMed
22.
go back to reference Lakso, M, Pichel, JG, German, JR, Sauer, B, Okamoto, Y, Lee, E, Alt, FW, Westphal, H 1996Efficient in vivo manipulation of mouse genomic sequences at the zygote stageProc Natl Acad Sci USA9358605865CrossRefPubMed Lakso, M, Pichel, JG, German, JR, Sauer, B, Okamoto, Y, Lee, E, Alt, FW, Westphal, H 1996Efficient in vivo manipulation of mouse genomic sequences at the zygote stageProc Natl Acad Sci USA9358605865CrossRefPubMed
23.
go back to reference Hirotsune, S, Fleck, MW, Gambello, MJ, Bix, GJ, Chen, A, Clark, GD, Ledbetter, DH, McBain, CJ, Wynshaw-Boris, A 1998Graded reduction of Pafah1b1 (Lis1) activity results in neuronal migration defects and early embryonic lethalityNat Genet19333339CrossRefPubMed Hirotsune, S, Fleck, MW, Gambello, MJ, Bix, GJ, Chen, A, Clark, GD, Ledbetter, DH, McBain, CJ, Wynshaw-Boris, A 1998Graded reduction of Pafah1b1 (Lis1) activity results in neuronal migration defects and early embryonic lethalityNat Genet19333339CrossRefPubMed
24.
go back to reference Gibson, CW, Thomson, NH, Abrams, WR, Kirkham, J (2005) Nested genes: biological implications and use of AFM for analysis. Gene 350: 15–23CrossRefPubMed Gibson, CW, Thomson, NH, Abrams, WR, Kirkham, J (2005) Nested genes: biological implications and use of AFM for analysis. Gene 350: 15–23CrossRefPubMed
25.
go back to reference Li, W, Mathews, C, Gao, C, DenBesten, PK 1998Identification of two additional exons at the 3′ end of the amelogenin geneArch Oral Biol43497504CrossRefPubMed Li, W, Mathews, C, Gao, C, DenBesten, PK 1998Identification of two additional exons at the 3′ end of the amelogenin geneArch Oral Biol43497504CrossRefPubMed
26.
go back to reference Baba, O, Takahashi, N, Terashima, T, Li, W, DenBesten, PK, Takano, Y 2002Expression of alternatively spliced RNA transcripts of amelogenin gene exons 8 and 9 and its end products in the rat incisorJ Histochem Cytochem5012291236PubMed Baba, O, Takahashi, N, Terashima, T, Li, W, DenBesten, PK, Takano, Y 2002Expression of alternatively spliced RNA transcripts of amelogenin gene exons 8 and 9 and its end products in the rat incisorJ Histochem Cytochem5012291236PubMed
28.
go back to reference Smith, CE, McKee, MD, Nanci, A 1987Cyclic induction and rapid movement of sequential waves of new smooth-ended ameloblast modulation bands in rat incisors as visualized by polychrome fluorescent labeling and GBHA-staining of maturing enamelAdv Dent Res1162175PubMed Smith, CE, McKee, MD, Nanci, A 1987Cyclic induction and rapid movement of sequential waves of new smooth-ended ameloblast modulation bands in rat incisors as visualized by polychrome fluorescent labeling and GBHA-staining of maturing enamelAdv Dent Res1162175PubMed
29.
go back to reference Nishikawa, S, Josephsen, K 1987Cyclic localization of actin and its relationship to junctional complexes in maturation ameloblasts of the rat incisorAnat Rec2192131CrossRefPubMed Nishikawa, S, Josephsen, K 1987Cyclic localization of actin and its relationship to junctional complexes in maturation ameloblasts of the rat incisorAnat Rec2192131CrossRefPubMed
Metadata
Title
Tooth Enamel Defects in Mice with a Deletion at the Arhgap6/AmelX Locus
Authors
S. K. Prakash
C. W. Gibson
J. T. Wright
C. Boyd
T. Cormier
R. Sierra
Y. Li
W. R. Abrams
M. A. Aragon
Z. A. Yuan
I. B. van den Veyver
Publication date
01-07-2005
Publisher
Springer-Verlag
Published in
Calcified Tissue International / Issue 1/2005
Print ISSN: 0171-967X
Electronic ISSN: 1432-0827
DOI
https://doi.org/10.1007/s00223-004-1213-7

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