In a four-week-old child with female external and internal genitalia but with clitoris hypertrophy chromosome analysis from blood lymphocytes revealed a 46,XY karyotype. No deletion of Y chromosomal sequences was detected by PCR analysis of genomic DNA isolated from peripheral blood leucocytes. Because of the increased risk for gonadal tumours, gonadectomy was performed. Conventional cytogenetic analysis of the left dysgenetic gonad revealed a gonosomal mosaicism with a 45,X cell line in 27 of 50 metaphases. The dysgenetic left gonad demonstrated a significantly higher proportion (P = 0.005) of cells carrying a Y chromosome (46.3%) than the streak gonad from the right side (33.9%). Histomorphological examination of the left gonad revealed immature testicular tissue and rete-like structures as well as irregular ovarian type areas with cystic follicular structures. Interphase FISH analysis of the different tissues of this dysgenetic gonad demonstrated variable proportions of cells with an X and a Y chromosome. Whereas Sertoli cells and rete-like structures revealed a significantly higher proportion of XY cells in relation to the whole section of the dysgenetic gonad (P < 0.0001), almost all granulose-like cells carried no Y chromosome. The proportion of XY/X cells in theca-like cells and Leydig cells was similar to that of the whole dysgenetic gonad. In contrast to these findings, spermatogonia exclusively contained an XY constellation.

1.
Albrecht KH, Eicher EM: Evidence that Sry is expressed in pre-Sertoli cells and Sertoli and granulosa cells have a common precursor. Dev Biol 240:92–107 (2001).
2.
Burgoyne PS, Buehr M, McLaren A: XY follicle cells in ovaries of XX↔XY female mouse chimaeras. Development 104:683–688 (1988).
3.
Capel B: The battle of the sexes. Mech Dev 92:89–103 (2000).
4.
Capel B, Albrecht KH, Washburn LL, Eicher EM: Migration of mesonephric cells into the mammalian gonad depends on Sry. Mech Dev 84:127–131 (1999).
5.
Hatano O, Takakusu A, Nomura M, Morohashi K: Identical origin of adrenal cortex and gonad revealed by expression profiles of Ad4BP/SF-1. Genes Cells 1:663–671 (1996).
6.
Henke RP, Ayhan N: Enhancement of hybridization efficiency in interphase cytogenetics on paraffin-embedded tissue sections by microwave treatment. Anal Cell Pathol 6:319–325 (1994).
7.
Hopman AH, Ramaekers FC, Raap AK, Beck JL, Devilee P, van der Ploeg M, Vooijs GP: In situ hybridization as a tool to study numerical chromosome aberrations in solid bladder tumors. Histochemistry 89:307–316 (1988).
8.
Jeske YW, Bowles J, Greenfield A, Koopman P: Expression of a linear Sry transcript in the mouse genital ridge. Nat Genet 10:480–482 (1995).
9.
Koopman P, Münsterberg A, Capel B, Vivian N, Lovell-Badge R: Expression of a candidate sex-determining gene during mouse testis differentiation. Nature 348:450–452 (1990).
10.
Leong A, Cooper K, Leong FJ: Manual of Diagnostic Antibodies for Immunohistology. (Greenwich Medical Media, London 1999).
11.
Mackay S: Gonadal development in mammals at the cellular and molecular levels. Int Rev Cytol 200:47–99 (2000).
12.
Magre S, Jost A: The initial phases of testicular organogenesis in the rat. An electron microscopy study. Arch Anat Microsc Morphol Exp 69:297–318 (1980).
13.
Merchant-Larios H, Moreno-Mendoza N: Mesonephric stromal cells differentiate into Leydig cells in the mouse fetal testis. Exp Cell Res 244:230–238 (1998).
14.
Merchant-Larios H, Moreno-Mendoza N, Buehr M: The role of the mesonephros in cell differentiation and morphogenesis of the mouse fetal testis. Int J Dev Biol 37:407–415 (1993).
15.
Morrish BC, Sinclair AH: Vertebrate sex determination: many means to an end. Reproduction 124:447–457 (2002).
16.
Ortenberg J, Oddoux C, Craver R, McElreavey K, Salas-Cortes L, et al: SRY gene expression in the ovotestes of XX true hermaphrodites. J Urol 167:1828–1831 (2002).
17.
Palmer SJ, Burgoyne PS: In situ analysis of fetal, prepuberal and adult XX↔XY chimaeric mouse testes: Sertoli cells are predominantly, but not exclusively, XY. Development 112:265–268 (1991).
18.
Parrott JA, Skinner MK: Gonadogenesis, Female, in Knobil E, Neill JD (eds): Encyclopedia of Reproduction, Vol 2, pp 483–491 (Academic Press, San Diego 1999).
19.
Patek CE, Kerr JB, Gosden RG, Jones KW, Hardy K, et al: Sex chimaerism, fertility and sex determination in the mouse. Development 113:311–325 (1991).
20.
Ragg S, Harle M, Scherthan H: Analysis of sex chromosome distribution in the gonadal tissue of a 45,X/47,XYY mosaic by fluorescence in situ hybridization. Mod Pathol 8:295–298 (1995).
21.
Reddy KS, Sulcova V: Pathogenetics of 45,X/46,XY gonadal mosaicism. Cytogenet Cell Genet 82:52–57 (1998).
22.
Reddy KS, Sulcova V, Ho CK, Conner ED, Khurana A: An infant with a mosaic 45,X/46,X,psu dic(Y) (pter→q11.2::q11.2→pter) karyotype and mixed gonadal dysgenesis studied for extent of mosaicism in the gonads. Am J Med Genet 66:441–444 (1996).
23.
Robboy SJ, Miller T, Donahoe PK, Jahre C, Welch WR, et al: Dysgenesis of testicular and streak gonads in the syndrome of mixed gonadal dysgenesis: perspective derived from a clinicopathologic analysis of twenty-one cases. Hum Pathol 13:700–716 (1982).
24.
Röpke A, Pelz AF, Volleth M, Schlosser HW, Morlot S, Wieacker PF: Sex chromosomal mosaicism in the gonads of patients with gonadal dysgenesis, but normal female or male karyotypes in lymphocytes. Am J Obstet Gynecol 190:1059–1062 (2004a).
25.
Röpke A, Erbersdobler A, Hammerer P, John K, Stumm M, Wieacker PF: Gain of androgen receptor gene copies in primary prostate cancer due to X chromosome polysomy. Prostate 59:59–68 (2004b).
26.
Salas-Cortes L, Jaubert F, Barbaux S, Nessmann C, Bono MR, et al: The human SRY protein is present in fetal and adult Sertoli cells and germ cells. Int J Dev Biol 43:135–140 (1999).
27.
Salas-Cortés L, Jaubert F, Nihoul-Feketé C, Brauner R, Rosemblatt M, Fellous M: SRY protein is expressed in ovotestis and streak gonads from human sex-reversal. Cytogenet Cell Genet 91:212–216 (2000).
28.
Simpson JL: Abnormal sexual differentiation in humans. Annu Rev Genet 16:193–224 (1982).
29.
Sinclair AH, Berta P, Palmer MS, Hawkins JR, Griffiths BL, et al: A gene from the human sex-determining region encodes a protein with homology to a conserved DNA-binding motif. Nature 346:240–244 (1990).
30.
Swain A, Narvaez V, Burgoyne P, Camerino G, Lovell-Badge R: Dax1 antagonizes Sry action in mammalian sex determination. Nature 391:761–767 (1998).
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