Abstract
The mouse tubby phenotype is characterized by maturity-onset obesity accompanied by retinal and cochlear degeneration. A positional cloning effort to find the gene responsible for this phenotype led to the identification of tub, a member of a novel gene family of unknown function. A splice defect mutation in the 3' end of the tub gene, predicted to disrupt the C terminus of the Tub protein, has been implicated in the genesis of the tubby phenotype. It is not clear, however, whether the Tub mutant protein retains any biological activity, or perhaps has some dominant function, nor is it established that the tubby mutation is itself responsible for all of the observed tubby phenotypes. To address these questions, we generated tub-deficient mice and compared their phenotype to that of tubby mice. Our results demonstrate that tubby is a loss-of-function mutation of the tub gene and that loss of the tub gene is sufficient to give rise to the full spectrum of tubby phenotypes. We also demonstrate that loss of photoreceptors in the retina of tubby and tub-deficient mice occurs by apoptosis. In addition, we show that Tub protein expression is not significantly altered in the ob, db, or melanocortin 4 receptor-deficient mouse model of obesity.
MeSH Terms
Adaptor Proteins, Signal Transducing
Aging/genetics
Animals
Cochlea/pathology
Exons
Female
Homozygote
Male
Mice
Mice, Inbred C57BL
Mice, Knockout
Obesity/genetics,pathology
Phenotype
Proteins/genetics,physiology
RNA Splicing/genetics
Restriction Mapping
Retina/pathology
Retinal Degeneration/genetics,pathology
Sequence Deletion
Sex Characteristics
Weight Gain
Chemicals
Adaptor Proteins, Signal Transducing
Proteins
Tub protein, mouse
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Stubdal H
Millennium Pharmaceuticals, Inc., Cambridge, Massachusetts 02139, USA.
Lynch C A
Moriarty A
Fang Q
Chickering T
Deeds J D
Fairchild-Huntress V
Charlat O
Dunmore J H
Kleyn P
Huszar D
Kapeller R
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