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Metabolic basis of HIV-lipodystrophy syndrome.

Human immunodeficiency virus (HIV)-lipodystrophy syndrome (HLS) is characterized by hypertriglyceridemia, low high-density lipoprotein-cholesterol, lipoatrophy, and central adiposity. We investigated fasting lipid metabolism in six men with HLS and six non-HIV-infected controls. Compared with controls, HLS patients had lower fat mass (15.9 +/- 1.3 vs. 22.3 +/- 1.7 kg, P < 0.05) but higher plasma glycerol rate of appearance (R(a)), an index of total lipolysis (964.71 +/- 103.33 vs. 611.08 +/- 63.38 micromol x kg fat(-1) x h(-1), P < 0.05), R(a) palmitate, an index of net lipolysis (731.49 +/- 72.36 vs. 419.72 +/- 33.78 micromol x kg fat(-1) x h(-1), P < 0.01), R(a) free fatty acids (2,094.74 +/- 182.18 vs. 1,470.87 +/- 202.80 micromol x kg fat(-1) x h(-1), P < 0.05), and rates of intra-adipocyte (799.40 +/- 157.69 vs. 362.36 +/- 74.87 micromol x kg fat(-1) x h(-1), P < 0.01) and intrahepatic fatty acid reesterification (1,352.08 +/- 123.90 vs. 955.56 +/- 124.09 micromol x kg fat(-1) x h(-1), P < 0.05). Resting energy expenditure was increased in HLS patients (30.51 +/- 2.53 vs. 25.34 +/- 1.04 kcal x kg lean body mass(-1) x day(-1), P < 0.05), associated with increased non-plasma-derived fatty acid oxidation (139.04 +/- 24.17 vs. 47.87 +/- 18.81 micromol x kg lean body mass(-1) x min(-1), P < 0.02). The lipoatrophy observed in HIV lipodystrophy is associated with accelerated lipolysis. Increased hepatic reesterification promotes the hypertriglyceridemia observed in this syndrome.

Adipocytes↗

Intramyocellular lipid accumulation and reduced whole body lipid oxidation in HIV lipodystrophy.

Antiretroviral therapy in human immunodeficiency virus (HIV)-positive patients can induce a lipodystrophy syndrome of peripheral fat wasting and central adiposity, dyslipidemia, and insulin resistance. To test whether in this syndrome insulin resistance is associated with abnormal muscle handling of fatty acids, 12 HIV-1 patients (8 females/4 males, age = 26 +/- 2 yr, HIV duration = 8 +/- 1 yr, body mass index = 22.0 +/- 1.0 kg/m(2), on protease inhibitors and nucleoside analog RT inhibitors) and 12 healthy subjects were studied. HIV-1 patients had a total body fat content (assessed by dual-energy X-ray absorptiometry) similar to that of controls (22 +/- 1 vs. 23 +/- 2%; P = 0.56), with a topographic fat redistribution characterized by reduced fat content in the legs (18 +/- 2 vs. 32 +/- 3%; P < 0.01) and increased fat content in the trunk (25 +/- 2 vs. 19 +/- 2%; P = 0.03). In HIV-positive patients, insulin sensitivity (assessed by QUICKI) was markedly impaired (0.341 +/- 0.011 vs. 0.376 +/- 0.007; P = 0.012). HIV-positive patients also had increased total plasma cholesterol (216 +/- 20 vs. 174 +/- 9 mg/dl; P = 0.05) and triglyceride (298 +/- 96 vs. 87 +/- 11 mg/dl; P = 0.03) concentrations. Muscular triglyceride content assessed by means of (1)H NMR spectroscopy was higher in HIV patients in soleus [92 +/- 12 vs. 42 +/- 5 arbitrary units (AU); P < 0.01] and tibialis anterior (26 +/- 6 vs. 11 +/- 3 AU; P = 0.04) muscles; in a stepwise regression analysis, it was strongly associated with QUICKI (R(2) = 0.27; P < 0.0093). Even if the basal metabolic rate (assessed by indirect calorimetry) was comparable to that of normal subjects, postabsorptive lipid oxidation was significantly impaired (0.30 +/- 0.07 vs. 0.88 +/- 0.09 mg x kg(-1) x min(-1); P < 0.01). In conclusion, lipodystrophy in HIV-1 patients in antiretroviral treatment is associated with intramuscular fat accumulation, which may mediate the development of the insulin resistance syndrome.

Adipose Tissue↗

Effects of rosiglitazone on gene expression in subcutaneous adipose tissue in highly active antiretroviral therapy-associated lipodystrophy.

Highly active antiretroviral therapy (HAART) has improved the prognosis of human immunodeficiency virus (HIV)-infected patients but is associated with severe adverse events, such as lipodystrophy and insulin resistance. Rosiglitazone did not increase subcutaneous fat in patients with HAART-associated lipodystrophy (HAL) in a randomized, double-blind, placebo-controlled trial, although it attenuated insulin resistance and decreased liver fat content. The aim of this study was to examine effects of rosiglitazone on gene expression in subcutaneous adipose tissue in 30 patients with HAL. The mRNA concentrations in subcutaneous adipose tissue were measured using real-time PCR. Twenty-four-week treatment with rosiglitazone (8 mg/day) compared with placebo significantly increased the expression of adiponectin, peroxisome proliferator-activated receptor-gamma (PPARgamma), and PPARgamma coactivator 1 and decreased IL-6 expression. Expression of other genes involved in lipogenesis, fatty acid metabolism, or glucose transport, such as acyl-CoA synthase, adipocyte lipid-binding protein, CD45, fatty acid transport protein-1 and -4, GLUT1, GLUT4, keratinocyte lipid-binding protein, lipoprotein lipase, PPARdelta, and sterol regulatory element-binding protein-1c, remained unchanged. Rosiglitazone also significantly increased serum adiponectin concentration. The change in serum adiponectin concentration was inversely correlated with the change in fasting serum insulin concentration and liver fat content. In conclusion, rosiglitazone induced significant changes in gene expression in subcutaneous adipose tissue and ameliorated insulin resistance in patients with HAL. Increased expression of adiponectin might have mediated most of the favorable insulin-sensitizing effects of rosiglitazone in these patients.

Adiponectin↗

[Pathogenesis of lipodystrophy and metabolic syndromes associated with HIV infection].

Lipodystrophy, and the metabolic alterations (dislipemia, insulin-resistance) associated with human immunodeficiency virus (HIV) infection, is a multifactorial syndrome due to the interaction of host related factors (cellular immune status, diet, gene mutations), viral factors (cytokine synthesis, polyunsaturated fatty acid or PUFA depletion), and pharmacological effects (mitochondrial DNA-polymerase inhibition, lipolysis inhibition, adiponectin synthesis reduction). HIV probably modifies the adipocyte differentiation and the lipid metabolism. This retroviral effect is mediated by proinflammatory cytokines (tumor necrosis factor) and the participation of other factors (drugs, diet), all in the context of a particular host genetic setting. The adipocyte (and several cellular receptors, fatty acids, membrane proteins, and cytokines) plays a central role in the pathogenesis of HIV-associated lipodystrophy.

Adipocytes↗

Partial lipodystrophy and familial C3 deficiency.

A familial deficiency of C3 in the family of a patient with partial lipodystrophy is reported for the first time. This genetic defect is termed hypomorphism of C3 fast (C3f). The defect is detected by analysis of C3 phenotype by densitometry and crossed gel-immunoelectrophoresis; all affected individuals have had reduced serum C3 (lower than 2 SD below mean) on at least one occasion. The possibility that partial lipodystrophy and the frequently associated glomerulonephritis occur in immunologically deficient individuals is supported by this observation.

Complement C3↗

Regulation of plasma PAI-1 concentrations in HAART-associated lipodystrophy during rosiglitazone therapy.

OBJECTIVE: Patients with highly active antiretroviral therapy-associated lipodystrophy (HAART+LD+) have high plasminogen activator inhibitor-1 (PAI-1) concentrations for unknown reasons. We determined whether (1). plasma PAI-1 antigen concentrations are related to liver fat content (LFAT) independently of the size of other fat depots and (2) rosiglitazone decreases PAI-1 and LFAT in these patients. METHODS AND RESULTS: In the cross-sectional study, 3 groups were investigated: 30 HIV-positive patients with HAART+LD+, 13 HIV-positive patients without lipodystrophy (HAART+LD-), and 15 HIV-negative subjects (HIV-). In the treatment study, the HAART+LD+ group received either rosiglitazone (8 mg, n=15) or placebo (n=15) for 24 weeks. Plasma PAI-1 was increased in HAART+LD+ (28+/-2 ng/mL) compared with the HAART+LD- (18+/-3, P<0.02) and HIV- (10+/-3, P<0.001) groups. LFAT was higher in HAART+LD+ (7.6+/-1.7%) than in the HAART+LD- (2.1+/-1.1%, P<0.001) and HIV- (3.6+/-1.2%, P<0.05) groups. Within the HAART+LD+ group, plasma PAI-1 was correlated with LFAT (r=0.49, P<0.01) but not with subcutaneous or intra-abdominal fat or serum insulin or triglycerides. In subcutaneous adipose tissue, PAI-1 mRNA was 2- to 3-fold higher in the HAART+LD+ group than in either the HAART+LD- or HIV- group. Rosiglitazone decreased LFAT, serum insulin, and plasma PAI-1 and increased serum triglycerides but had no effect on intra-abdominal or subcutaneous fat mass or PAI-1 mRNA. CONCLUSIONS: Plasma PAI-1 concentrations are increased in direct proportion to LFAT in HAART+LD+ patients. Rosiglitazone decreases LFAT, serum insulin, and plasma PAI-1 without changing the size of other fat depots or PAI-1 mRNA in subcutaneous fat. These data suggest that liver fat contributes to plasma PAI-1 concentrations in these patients.

Adipose Tissue↗

Leptin reverses insulin resistance and hepatic steatosis in patients with severe lipodystrophy.

Lipodystrophy is a rare disorder that is characterized by selective loss of subcutaneous and visceral fat and is associated with hypertriglyceridemia, hepatomegaly, and disordered glucose metabolism. It has recently been shown that chronic leptin treatment ameliorates these abnormalities. Here we show that chronic leptin treatment improves insulin-stimulated hepatic and peripheral glucose metabolism in severely insulin-resistant lipodystrophic patients. This improvement in insulin action was associated with a marked reduction in hepatic and muscle triglyceride content. These data suggest that leptin may represent an important new therapy to reverse the severe hepatic and muscle insulin resistance and associated hepatic steatosis in patients with lipodystrophy.

Adult↗

Unbuckling lipodystrophy from insulin resistance and hypertension.

Lipodystrophy and insulin resistance are the core features of human PPARgamma deficiency states. Metabolic complications in PPARgamma deficiency, such as hypertension, have been considered to be secondary to insulin resistance. However, a new mouse model that expresses the analog of a human PPARG mutation displays minimal lipodystrophy and insulin resistance but rather severe hypertension. Furthermore, the mutant protein appears to directly modulate the renin-angiotensin system in adipose tissue, providing evidence of the pleiotropic effects of PPARgamma.

Animals↗

Lipodystrophy syndrome: the morphologic and metabolic effects of antiretroviral therapy in HIV infection.

Widespread use of highly active antiretroviral therapy (HAART) to manage HIV infection is now associated with the development of lipodystrophy syndrome. This syndrome is a combination of such morphologic and metabolic changes as hyperlipidemia, fat redistribution, and insulin resistance. Although many of the long-term effects of HAART have not been fully recognized, it is thought that lipodystrophy syndrome may now contribute to early-onset hypercholesterolemia, heart disease, and diabetes, and may have a negative psychological impact on the individual living with HIV infection.

Antiretroviral Therapy, Highly Active↗

Circulating concentration of adiponectin and its expression in subcutaneous adipose tissue in patients with highly active antiretroviral therapy-associated lipodystrophy.

Highly active antiretroviral therapy (HAART) has dramatically reduced HIV-related mortality, but is associated with severe metabolic adverse events, such as lipodystrophy and insulin resistance, the mechanisms of which are unknown. Adiponectin is a adipocytokine that is decreased in insulin resistant conditions. In mice, adiponectin decreases liver and muscle fat content and enhances insulin sensitivity. We determined serum adiponenctin and adiponectin mRNA concentrations in subcutaneous adipose tissue in HIV-positive HAART-treated patients with (HAART+LD+, n = 30) and without lipodystrophy (HAART+LD-, n = 13). The HAART+ LD+ group had significantly less subcutaneous and more intra-abdominal fat than the HAART+LD- group. Liver fat content (spectroscopy), serum insulin, C-peptide and triglyceride concentrations were significantly higher, and HDL cholesterol concentration lower in the HAART+LD+ than the HAART+LD- group. Serum adiponectin (3.4 +/- 0.4 vs 8.5 +/- 1.0 micro g/mL, p < 0.001) and adiponectin mRNA concentration in subcutaneous adipose tissue (7 +/- 1 x 10(-4) vs 24 +/- 6 x 10(-4), p < 0.001) were significantly lower in the HAART+LD+ than the HAART+LD- group. Both serum adiponectin and mRNA concentrations correlated closely with features of insulin resistance, including liver fat content. These data suggest that the decreased production of adiponectin in lipoatrophic adipose tissue may contribute to hepatic insulin resistance in these patients.

Abdomen↗

Phenotypic and genetic heterogeneity in congenital generalized lipodystrophy.

Congenital generalized lipodystrophy (CGL) is a rare autosomal recessive disorder characterized by near complete absence of adipose tissue from birth. Recently, mutations in 1-acylglycerol-3-phosphate O-acyltransferase 2 (AGPAT2) and Berardinelli-Seip congenital lipodystrophy 2 (BSCL2) genes were reported in pedigrees linked to chromosomes 9q34 and 11q13, respectively. There are limited data regarding phenotypic differences between the various subtypes of CGL. Furthermore, whether there are additional loci for CGL remains unknown. Therefore, we genotyped 45 pedigrees with CGL for AGPAT2 and BSCL2 loci and compared the phenotypes in the various subtypes. Twenty-six pedigrees harbored mutations, including seven novel variants, in the AGPAT2 gene, and 11 pedigrees harbored mutations in the BSCL2 gene, including five novel variants. Eight pedigrees had no substantial alterations in either gene. Of these, three informative pedigrees showed no linkage to markers spanning the AGPAT2 and BSCL2 loci, and in six of the affected subjects, the transcripts of AGPAT2 and BSCL2 were normal. All subtypes of CGL showed high prevalence of diabetes, hypertriglyceridemia, and acanthosis nigricans. However, patients with BSCL2 mutations had lower serum leptin levels, an earlier onset of diabetes, and higher prevalence of mild mental retardation compared with other subtypes. We conclude that besides AGPAT2 and BSCL2, there may be additional loci for CGL. The genetic heterogeneity in CGL patients is accompanied by phenotypic heterogeneity.

1-Acylglycerol-3-Phosphate O-Acyltransferase↗

Energy expenditure and adaptive responses to an acute hypercaloric fat load in humans with lipodystrophy.

Humans respond to an acute excess of ingested energy by storing the surplus energy as triglyceride in white adipose tissue. To study the energetic response to acute overfeeding in human subjects with limited adipose tissue capacity, we recruited seven subjects with lipodystrophy and seven lean healthy controls. Total fat mass was approximately 70% lower in lipodystrophic subjects (mean, 6.1 kg) than in body mass index-matched lean controls (mean, 22.0 kg). Energy expenditure and macronutrient oxidation rates were assessed in chamber calorimeters on two separate occasions for 40 h, during which time subjects consumed either an energy-balanced diet or a diet incorporating 30% excess energy as fat. On the energy-balanced diet, total daily energy expenditure and basal metabolic rate were linearly associated with lean mass in both groups (r(2) = 0.83) and were not significantly different between groups when corrected for lean mass. In response to the fat challenge, total energy expenditure did not increase significantly in healthy controls (9,472 +/- 1,069 to 9,724 +/- 1,114 kJ/d; P = 0.189). Substrate oxidation results confirm that excess fat was predominantly stored. In contrast, lipodystrophic subjects significantly increased total daily energy expenditure (11,081 +/- 1,226 to 11,730 +/- 1,374 kJ/d; P < 0.005). This was largely attributable to a 29% increase in fat oxidation. Thus, subjects with lipodystrophy uniquely respond to an acute hypercaloric load with a higher energy expenditure increment and by increasing fat oxidation. Insight into the molecular mechanisms responsible for this phenomenon may yield novel therapeutic approaches for obesity.

Adaptation, Physiological↗

Leptin replacement therapy modulates circulating lymphocyte subsets and cytokine responsiveness in severe lipodystrophy.

CONTEXT: We conducted this study to understand the role of leptin therapy in immunomodulation. OBJECTIVE: Our objective was to study lymphocyte subpopulations and in vitro peripheral blood mononuclear cell (PBMC) activation during a study evaluating the effects of leptin on metabolic functions in severe lipodystrophy (serum leptin levels < 4 ng/ml). DESIGN AND SETTING: We conducted an open-label study with patients serving as their own control at the Clinical Research Center of the National Institutes of Health. PATIENTS: Ten patients (age range, 15-63 yr; one male and nine females) with generalized forms of lipodystrophy were studied. INTERVENTION: Patients were treated with recombinant human leptin to achieve high normal concentrations for 4 to 8 months. RESULTS: Leptin levels increased from 1.8 +/- 0.4 to 16.5 +/- 3.9 ng/dl (P < 0.001), whereas metabolic control improved [glycosylated hemoglobin (HbA(1c)) fell from 9.3 +/- 0.4 to 7.1 +/- 1.4%, P < 0.001, and triglycerides decreased by 45 +/- 11% from a mean of 1490 +/- 710 mg/dl, P = 0.001]. Lymphocyte subsets were studied by flow cytometry at baseline and at 4 and 8 months of therapy. PBMC responsiveness was evaluated by cytokine release and proliferation after stimulation with phytohemagglutinin, phytohemagglutinin plus IL-12, lipopolysaccharide, and lipopolysaccharide plus interferon-gamma at baseline and 4 months. Various T lymphocyte subsets were significantly lower than age- and sex-matched controls at baseline; however, the CD4/CD8 ratio was normal. The relative percentages of B lymphocytes and monocytes were elevated, although the absolute levels were normal. Leptin therapy induced significant changes in T lymphocyte subsets, which normalized both the absolute number of T lymphocyte subsets and relative percentages of all lineages. Additionally, in vitro TNF-alpha secreted from PBMC of patients was significantly increased to normal after 4 months of leptin therapy compared with baseline. CONCLUSION: These data support existing evidence that leptin has a modest immunomodulatory effect in hypoleptinemic humans.

Adolescent↗

Cephalothoracic lipodystrophy with hypocomplementemic renal disease: discordance in identical twin sisters.

This report describes the occurrence of cephalothoracic lipodystrophy in one of 7-yr-old identical twin sisters. The affected twin had classical loss of sc fat from her face, upper arms, and trunk as well as associated hypocomplementemia, microscopic hematuria, and a borderline oral glucose tolerance test without hyperinsulinism. The unaffected twin had a normal urinalysis, serum complement, and oral glucose tolerance. Both twins, when challenged iv with LRH or TRH, showed appropriate FSH and LH or TSH and PRL responses, respectively. This report, in conjunction with another similar twin pair recently described in the German literature, makes a simple, single gene genetic etiology untenable and supports the view that cephalothoracic lipodystrophy in an acquired disease.

Blood Glucose↗

Eucaloric substitution of medium chain triglycerides for dietary long chain fatty acids in acquired total lipodystrophy: effects on hyperlipoproteinemia and endogenous insulin resistance.

Previous studies have suggested that reduction of dietary fat intake, with or without caloric restriction, may lead to improvement in certain of the characteristic abnormalities that accompany total lipodystrophy (TLD). We have studied the effects of eucaloric medium chain triglyceride (MCT) substitution for dietary long chain fatty acids in a patient with acquired total lipodystrophy and unusual somatic and visceral anomalies. The patient exhibited insulin resistance, carbohydrate intolerance, striking fasting- and glucose-stimulated hyperinsulinemia, hyperglucagonemia, type V hyperlipoproteinemia, and lipoprotein lipase deficiency on a normal diet. Improvement in chylomicronemia, hypertriglyceridemia, and xanthomatosis occurred during eucaloric MCT substitution. Carbohydrate intolerance decreased and fasting immunoreactive glucagon and insulin concentrations fell 37% and 83%, respectively. Plasma triglyceride polyunsaturated fatty acid concentrations decreased to very low levels. With long term MCT feeding supplemented by polyunsaturated fatty acids, hepatomegaly has gradually decreased, while body weight has remained stable. The patient has not yet required insulin therapy. These observations suggest that the abnormalities in carbohydrate metabolism are closely linked to, and perhaps dependent on, the abnormalities in lipoprotein transport in TLD. Long chain triglyceride restriction and MCT supplementation should be attempted in additional patients with the features of TLD to determine whether this is a generally effective therapeutic approach.

Adolescent↗

Discordant metabolic actions of insulin in extreme lipodystrophy of childhood.

Congenital lipodystrophy includes a group of disorders characterized by total or partial absence of adipose tissue and insulin resistance. In this study we investigated the nature of insulin resistance in an 11-yr-old girl with one form of congenital lipodystrophy. We examined in vivo insulin and glycemic responses to feeding and iv glucose and in vitro amino acid and thymidine incorporation responses of skin fibroblasts to insulin exposure. In addition, we used stable isotope infusions of glucose, glycerol, and amino acids to investigate the in vivo metabolic actions of insulin on carbohydrate, fat, and protein. At 5 yr of age, she first demonstrated clinical glucose intolerance. Her basal insulin levels were normal (129 and 114 pmol/L), but increased markedly (peak values, 1304 and 5045 pmol/L) after iv glucose and a mixed meal. Insulin antibodies were undetectable, and specific [125I]insulin binding to her skin fibroblasts was normal. Both [3H]aminoisobutyric acid transport and [3H]thymidine incorporation by her fibroblasts were similar to responses obtained using control cells. At 11 5/12 yr of age, while receiving an infusion of stable isotopes, infusions of insulin at doses of 0.1 and 0.3 U/kg BW.h were ineffective in reducing her blood glucose despite elevating her serum insulin level to approximately 2500 pmol/L. Resting metabolic rate, respiratory quotient, VCO2, carbohydrate and lipid oxidation rates, glucose production rate, glycerol appearance rate, and plasma glycerol concentrations were unperturbed by the insulin infusions. By contrast, the insulin infusions reduced plasma leucine concentrations (124.2 to 86.1 to 66.7 mumol/L) and 13CO2 production rates (0.034 to 0.017 to 0.011 mumol/kg/min; baseline, 0.1, and 0.3 U insulin/kg.h, respectively). The leucine appearance rate declined (1.96 to 1.72 mumol/kg.min) in response to the 0.1 U/kg.h dose, but did not decline further in response to the 0.3 U/kg.h dose. The leucine oxidation rate also declined (0.87 to 0.39 to 0.25 mumol/kg.min), and there was a dose-related reduction in most plasma amino acid concentrations. Finally, nonoxidative leucine disposal increased progressively (1.09, 1.34, and 1.48 mumol/kg.min), suggestive of an insulin-induced increase in protein synthesis. These data indicate profound metabolic resistance to the carbohydrate and lipid actions of insulin, with preservation of protein anabolism. These observations suggest that in this patient, the biological effects of insulin on carbohydrate, lipid, and protein are distinct metabolic actions, regulated independently.

Amino Acids↗

Body fat distribution and metabolic derangements in patients with familial partial lipodystrophy associated with mandibuloacral dysplasia.

Mandibuloacral dysplasia (MAD) is a rare autosomal recessive disorder that is characterized by mandibular and clavicular hypoplasia, acroosteolysis, delayed closure of cranial sutures, joint contractures, and mottled cutaneous pigmentation. It is also associated with partial lipodystrophy, but the pattern of fat loss has not been well characterized. We studied body fat distribution in two male and two female patients with MAD by anthropometry, dual energy x-ray absorptiometry, and magnetic resonance imaging. Blood glucose and insulin responses during an oral glucose tolerance test and fasting serum lipoproteins were determined. Three of the four subjects had loss of sc fat from the extremities with normal or slight excess in the neck and truncal regions (termed type A pattern). In contrast, one patient had generalized loss of sc fat involving the face, trunk, and extremities (type B pattern). All of the patients had normal glucose tolerance but had fasting and postprandial hyperinsulinemia suggestive of insulin resistance. Elevated serum triglycerides with low high-density lipoprotein cholesterol levels were noted in three subjects. We conclude that familial partial lipodystrophy associated with MAD presents with two types of body fat distribution patterns, both of which are associated with insulin resistance and its metabolic complications.

Absorptiometry, Photon↗

Lamin A/C mutations with lipodystrophy, cardiac abnormalities, and muscular dystrophy.

Mutations in the lamin A/C gene are found in Emery-Dreifuss muscular dystrophy, limb girdle muscular dystrophy with cardiac conduction disturbances, dilated cardiomyopathy with conduction system disease, and familial partial lipodystrophy. Cases with lamin A/C mutations presenting with lipodystrophy in combination with cardiac and/or skeletal muscle abnormalities are described.

Adult↗