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Journal of Bacteriology|February 1, 1984
Sterol methylation in Saccharomyces cerevisiaeM T McCammon, M A Hartmann, C D Bottema, et al.Genomics|August 1, 1991
Evidence that descendants of three founders constitute about 25% of hemophilia B in the United StatesR P Ketterling, C D Bottema, J A Phillips, et al.Mayo Clinic Proceedings|November 1, 1989
A novel method for detecting point mutations or polymorphisms and its application to population screening for carriers of phenylketonuriaS S Sommer, J D Cassady, J L Sobell, et al.American Journal of Human Genetics|September 1, 1989
Functionally important regions of the factor IX gene have a low rate of polymorphism and a high rate of mutation in the dinucleotide CpGD D Koeberl, C D Bottema, J M Buerstedde, et al.Methods in Enzymology|January 1, 1985
Yeast sterols: yeast mutants as tools for the study of sterol metabolismL W Parks, C D Bottema, R J Rodriguez, et al.Journal of Animal Science|April 16, 1998
Breed comparison of the fatty acid composition of muscle phospholipids in Jersey and Limousin cattleA E Malau-Aduli, B D Siebert, C D Bottema, et al.Endocrinology|September 1, 1986
Unexpected presence of estrogens in culture medium supplements: subsequent metabolism by the yeast Sacchromyces cerevisiaeS C Miller, C D Bottema, P A Stathis, et al.Human Genetics|July 1, 1991
T296----M, a common mutation causing mild hemophilia B in the Amish and others: founder effect, variability in factor IX activity assays, and rapid carrier detectionR P Ketterling, C D Bottema, D D Koeberl, et al.Gene|November 24, 1999
Genomic characterization of the sheep vasopressin V1a receptor gene and promoter, with assignment to bands q23-24 of sheep chromosome 3 and cattle chromosome 5I Koukoulas, G C Webb, C D Bottema, et al.Human Genetics|April 1, 1990
Recurrent nonsense mutations at arginine residues cause severe hemophilia B in unrelated hemophiliacsD D Koeberl, C D Bottema, G Sarkar, et al.Pageof 4