A genetic study of Hirschsprung disease

J A Badner, W K Sieber, K L Garver, A Chakravarti, J A Badner, W K Sieber, K L Garver, A Chakravarti

Abstract

Hirschsprung disease, or congenital aganglionic megacolon, is commonly assumed to be a sex-modified multifactorial trait. To test this hypothesis, complex segregation analysis was performed on data on 487 probands and their families. Demographic information on probands and the recurrence risk to relatives of probands are presented. An increased sex ratio (3.9 male:female) and an elevated risk to sibs (4%), as compared with the population incidence (0.02%), are observed, with the sex ratio decreasing and the recurrence risk to sibs increasing as the aganglionosis becomes more extensive. Down syndrome was found at an increased frequency among affected individuals but not among their unaffected sibs, and the increase was not associated with maternal age. Complex segregation analysis was performed on these family data. The families were classified into separate categories by extent of aganglionosis. For cases with aganglionosis beyond the sigmoid colon, the mode of inheritance is compatible with a dominant gene with incomplete penetrance, while for cases with aganglionosis extending no farther than the sigmoid colon, the inheritance pattern is equally likely to be either multifactorial or due to a recessive gene with very low penetrance. A model of gene action with random effects during morphogenesis is compatible with our observations.

References

    1. J Hered. 1966 Jan-Feb;57(1):29-31
    1. Bull Johns Hopkins Hosp. 1965 May;116:285-326
    1. Pediatrics. 1970 Jan;45(1):60-70
    1. J Embryol Exp Morphol. 1973 Dec;30(3):573-85
    1. Am J Hum Genet. 1974 Jul;26(4):489-503
    1. Birth Defects Orig Artic Ser. 1977;13(3A):123-41
    1. Am J Med Genet. 1979;3(3):217-23
    1. Proc Natl Acad Sci U S A. 1980 Mar;77(3):1580-2
    1. Arch Dermatol. 1980 Oct;116(10):1102
    1. J Med Genet. 1981 Apr;18(2):87-90
    1. J Pediatr. 1981 Sep;99(3):432-5
    1. Z Kinderchir. 1981 Jan;32(1):68-73
    1. Hum Hered. 1981;31(5):312-21
    1. Birth Defects Orig Artic Ser. 1982;18(3B):187-91
    1. J Pediatr Surg. 1982 Oct;17(5):632-4
    1. Pediatrics. 1983 Feb;71(2):246-9
    1. J Pediatr Gastroenterol Nutr. 1982;1(4):603-7
    1. Am J Med Genet. 1983 Oct;16(2):163-7
    1. Proc Natl Acad Sci U S A. 1984 Apr;81(8):2426-30
    1. Hum Genet. 1984;68(3):258-9
    1. Pediatr Radiol. 1984;14(6):441-2
    1. Am J Epidemiol. 1985 Jan;121(1):31-6
    1. Int J Epidemiol. 1984 Dec;13(4):479-85
    1. Am J Med Genet. 1985 Jan;20(1):165-71
    1. Teratology. 1985 Oct;32(2):171-7
    1. Clin Genet. 1985 Dec;28(6):503-8
    1. Circulation. 1986 Feb;73(2):360-4
    1. Eur J Pediatr. 1986 Aug;145(3):229-32
    1. Am J Med Genet. 1987 Jan;26(1):45-57
    1. J Comp Neurol. 1987 Jan 15;255(3):425-38
    1. Clin Genet. 1987 Sep;32(3):175-8
    1. Genomics. 1987 Sep;1(1):3-18
    1. Am J Hum Genet. 1987 Dec;41(6):979-95
    1. Am J Med Genet. 1988 Jan;29(1):9-19
    1. J Med Genet. 1988 Feb;25(2):125-7
    1. J Med Genet. 1988 Mar;25(3):204-5
    1. J Med Genet. 1988 Jul;25(7):494-7
    1. Am J Hum Genet. 1988 Oct;43(4):355-63
    1. J Med Genet. 1989 Feb;26(2):100-4
    1. J Med Genet. 1988 Nov;25(11):758-61
    1. J Med Genet. 1989 Apr;26(4):272-4
    1. N Engl J Med. 1967 Jan 19;276(3):138-43

Source: PubMed

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