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J J Rutledge

Publications and source records attributed to J J Rutledge.

57 records · Page 4Linked to original sources

Genomic organization of prolactin and growth hormone coding sequences in dwarf and normal mice.

The genomic organization of DNA encoding growth hormone (GH) and prolactin (PRL) genes has been investigated in two types of homozygous dwarf mice and their normal counterparts. We have previously shown that dwarf mice of either strain fail to initiate pituitary synthesis of GH or PRL during perinatal development. Analysis by Southern transfer of restriction enzyme-digested DNA and hybridization to 32P-labeled cloned probes derived from bovine GH and rat PRL mRNAs revealed no evidence for deletions or rearrangements in or around the structural genes for GH or PRL in either dwarf genotype. In situ hybridization of the probes to pituitary and liver tissue slices failed to detect specifically hybridizing RNA species in dwarf pituitaries. These findings suggest that the pleiotropic effects of the dwarf mutations, which lead to abnormalities in transcription of the genes or in the processing of transcripts, may be due to blocks in the development of functional somatotrophs and mammotrophs.

Animals↗

Genetic analysis of crossfostering data with sire and dam records.

A method is presented for the analysis of data from crossfostering experiments in which parts of litters are reciprocally interchanged at birth. Observed variances and covariances of differently related individuals are expressed as functions of theoretical causal components of phenotypic variance (additive direct, dominance direct, additive maternal, dominance maternal, direct-maternal covariance, and environmental). Causal components are estimated by weighted least squares analysis of this system of equations, including a ridge-regression procedure to examine consequences of correlation between observed components. Ridge regression suggests that dominance direct genetic variance is generally underestimated, but that narrow-sense heritability estimates are reliable.

Animals↗