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1.
Hum Mol Genet ; 15(4): 653-63, 2006 Feb 15.
Article in English | MEDLINE | ID: mdl-16415042

ABSTRACT

Mutations in the LMNA gene encoding A-type lamins cause several diseases, including Emery-Dreifuss muscular dystrophy and Dunnigan-type familial partial lipodystrophy (FPLD). We analyzed differentiation of 3T3-L1 preadipocytes to adipocytes in cells overexpressing wild-type lamin A as well as lamin A with amino acid substitutions at position 482 that cause FPLD. We also examined adipogenic conversion of mouse embryonic fibroblasts lacking A-type lamins. Overexpression of both wild-type and mutant lamin A inhibited lipid accumulation, triglyceride synthesis and expression of adipogenic markers. This was associated with inhibition of expression of peroxisome-proliferator-activated receptor gamma 2 (PPARgamma2) and Glut4. In contrast, embryonic fibroblasts lacking A-type lamins accumulated more intracellular lipid and exhibited elevated de novo triglyceride synthesis compared with wild-type fibroblasts. They also had increased basal phosphorylation of AKT1, a mediator of insulin signaling. We conclude that A-type lamins act as inhibitors of adipocyte differentiation, possibly by affecting PPARgamma2 and insulin signaling.


Subject(s)
Adipocytes/metabolism , Cell Differentiation/genetics , Diabetes Mellitus, Lipoatrophic/metabolism , Lamin Type A/metabolism , Muscular Dystrophy, Emery-Dreifuss/metabolism , Point Mutation , 3T3 Cells , Amino Acid Substitution , Animals , Diabetes Mellitus, Lipoatrophic/genetics , Fibroblasts/metabolism , Gene Expression Regulation/genetics , Humans , Insulin/metabolism , Lamin Type A/genetics , Mice , Muscular Dystrophy, Emery-Dreifuss/genetics , PPAR gamma/metabolism , Signal Transduction/genetics
2.
BMC Cell Biol ; 6: 27, 2005 Jun 27.
Article in English | MEDLINE | ID: mdl-15982412

ABSTRACT

BACKGROUND: Hutchinson-Gilford progeria syndrome (HGPS, OMIM 176670) is a rare sporadic disorder with an incidence of approximately 1 per 8 million live births. The phenotypic appearance consists of short stature, sculptured nose, alopecia, prominent scalp veins, small face, loss of subcutaneous fat, faint mid-facial cyanosis, and dystrophic nails. HGPS is caused by mutations in LMNA, the gene that encodes nuclear lamins A and C. The most common mutation in subjects with HGPS is a de novo single-base pair substitution, G608G (GGC>GGT), within exon 11 of LMNA. This creates an abnormal splice donor site, leading to expression of a truncated protein. RESULTS: We studied a new case of a 5 year-old girl with HGPS and found a heterozygous point mutation, G608G, in LMNA. Complementary DNA sequencing of RNA showed that this mutation resulted in the deletion of 50 amino acids in the carboxyl-terminal tail domain of prelamin A. We characterized a primary dermal fibroblast cell line derived from the subject's skin. These cells expressed the mutant protein and exhibited a normal growth rate at early passage in primary culture but showed alterations in nuclear morphology. Expression levels and overall distributions of nuclear lamins and emerin, an integral protein of the inner nuclear membrane, were not dramatically altered. Ultrastructural analysis of the nuclear envelope using electron microscopy showed that chromatin is in close association to the nuclear lamina, even in areas with abnormal nuclear envelope morphology. The fibroblasts were hypersensitive to heat shock, and demonstrated a delayed response to heat stress. CONCLUSION: Dermal fibroblasts from a subject with HGPS expressing a mutant truncated lamin A have dysmorphic nuclei, hypersensitivity to heat shock, and delayed response to heat stress. This suggests that the mutant protein, even when expressed at low levels, causes defective cell stability, which may be responsible for phenotypic abnormalities in the disease.


Subject(s)
Fibroblasts/pathology , Heat Stress Disorders/genetics , Lamin Type A/genetics , Point Mutation , Progeria/genetics , Cell Nucleus/chemistry , Cell Nucleus/pathology , Cell Nucleus/ultrastructure , Cells, Cultured , Child, Preschool , Chromatin , Female , Fibroblasts/ultrastructure , Humans , Lamin Type A/analysis , Lamins/analysis , Membrane Proteins/analysis , Nuclear Envelope/pathology , Nuclear Proteins , Progeria/pathology , Sequence Deletion , Skin/pathology , Thymopoietins/analysis
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