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Gene candidate.

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R C Levitt, V A McKusick, J E Fletcher, H Rosenberg. 1990-05-24. Gene candidate.. https://doi.org/10.1038/345297b0

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Genetic heritage of the Old Order Mennonites of southeastern Pennsylvania.

The Old Order Mennonites of southeastern Pennsylvania are a religious isolate with origins in 16th-century Switzerland. The Swiss Mennonites immigrated to Pennsylvania over a 50-year period in the early 18th century. The history of this population in the United States provides insight into the increased incidence of several genetic diseases, most notably maple syrup urine disease (MSUD), Hirschsprung disease (HSCR), and congenital nephrotic syndrome. A comparison between the Old Order Mennonites and the Old Order Amish demonstrates the unique genetic heritage of each group despite a common religious and geographic history. Unexpectedly, several diseases in both groups demonstrate allelic and/or locus heterogeneity. The population genetics of the 1312T --> A BCKDHA gene mutation, which causes classical MSUD, are presented in detail. The incidence of MSUD in the Old Order Mennonites is estimated to be 1/358 births, yielding a corrected carrier frequency of 7.96% and a mutation allele frequency of 4.15%. Analysis of the population demonstrates that repeated cycles of sampling effects, population bottlenecks, and subsequent genetic drift were important in shaping the current allele frequencies. A linkage disequilibrium analysis of 1312T --> A mutation haplotypes is provided and discussed in the context of the known genealogical history of the population. Finally, data from microsatellite marker genotyping within the Old Order Mennonite population are provided that show a significant but modest decrease in genetic diversity and elevated levels of background linkage disequilibrium.

Chromosomes, Human, Pair 19↗

[From gene to disease; hepatocystin and autosomal dominant polycystic liver disease].

Polycystic liver disease (PCLD, MIM 174050) is a dominantly inherited condition characterised by the presence in the liver of multiple cysts of biliary epithelial origin. It must be distinguished from autosomal dominant polycystic kidney disease type 1 (ADPKD-1, MIM 173900) and type 2 (ADPKD-2). Both disorders may be complicated by polycystic liver disease, but renal involvement is absent in PCLD. PCLD is often asymptomatic, but if symptoms arise, they are usually due to the mass effect of cysts. The phenotype is more severe in females and correlates with the number of pregnancies or estrogen use. The gene for PCLD has been assigned to chromosome 19p13.2-13.1. Two separate large-scale positional cloning efforts have managed to identify PRKCSH as the gene underlying PCLD. Up to now, all mutations found in PRKCSH introduce stopcodons in the m-RNA, resulting in premature termination of translation to protein. This suggests a loss of function of the encoding protein. The protein, designated by us as hepatocystin, is predicted to be localised in the endoplasmic reticulum. Multiple biological roles have been suggested for hepatocystin, such as a substrate for phosphorylation by protein kinase C, binding to advanced glycation endproducts, and a function as the non-catalytic beta-subunit of glucosidase-II. The role of hepatocystin in PCLD, however, remains to be elucidated.

Chromosomes, Human, Pair 19↗