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Properties of lamin A mutants found in Emery-Dreifuss muscular dystrophy, cardiomyopathy and Dunnigan-type partial lipodystrophy.

Autosomal dominant Emery-Dreifuss muscular dystrophy is caused by mutations in the LMNA gene, which encodes lamin A and lamin C. Mutations in this gene also give rise to limb girdle muscular dystrophy type 1B, dilated cardiomyopathy with atrioventricular conduction defect and Dunnigan-type partial lipodystrophy. The properties of the mutant lamins that cause muscular dystrophy, lipodystrophy and dilated cardiomyopathy are not known. We transfected C2C12 myoblasts with cDNA encoding wild-type lamin A and 15 mutant forms found in patients affected by these diseases. Immunofluorescence microscopy showed that four mutants, N195K, E358K, M371K and R386K, could have a dramatically aberrant localization, with decreased nuclear rim staining and formation of intranuclear foci. The distributions of endogenous lamin A/C, lamin B1 and lamin B2 were also altered in cells expressing these four mutants and three of them caused a loss of emerin from the nuclear envelope. In the yeast two-hybrid assay, the 15 lamin A mutants studied interacted with themselves and with wild-type lamin A and lamin B1. Pulse-chase experiments showed no decrease in the stability of several representative lamin A mutants compared with wild-type. These results indicate that some lamin A mutants causing disease can be aberrantly localized, partially disrupt the endogenous lamina and alter emerin localization, whereas others localize normally in transfected cells.

Animals↗

Progression of lipodystrophy (LD) with continued thymidine analogue usage: long-term follow-up from a randomized clinical trial (the PIILR study).

PURPOSE: During the 24-week PIILR study of protease inhibitor (PI) withdrawal, improved lipids and reduction in intraabdominal visceral fat was seen, however, there was also a loss of subcutaneous limb fat in patients with HIV-lipodystrophy (LD). It was hypothesized that overall improvement in LD may require a longer period of time off PIs. METHOD: Follow-up of patients randomized to stop or continue PI-based therapy for 24 weeks, in a multicenter study, was continued for up to 120 weeks. Biochemistry and lipid parameters were assessed every 3 months. DEXA and CT scans were performed annually. Limb fat, visceral adipose tissue, and the lipodystrophy case definition score (LCDS) were used as indicators of LD severity. RESULTS: Forty-five male patients with baseline and week 120 body composition data were assessed. There were no significant changes in the limb fat or visceral adipose tissue (VAT) components of LD, with the exception of the LCDS (change from baseline +5.79, p < .001). Control of viral replication was maintained and lipid and glycemic parameters were unchanged over the 120-week follow-up. Linear regression analysis showed on-study usage of stavudine was independently and significantly correlated with both decreased limb fat mass and a higher LCDS. CONCLUSION: Body composition or metabolic features of LD did not improve over 2 years of observation in patients remaining on predominantly PI-sparing therapy. LD was adversely influenced by continued stavudine use.

Abdomen↗

Centralized assessment of dual-energy X-ray absorptiometry (DEXA) in multicenter studies of HIV-associated lipodystrophy.

BACKGROUND: The accurate measurement of total body and subcutaneous fat is essential if therapeutic interventions, aimed at preventing or reversing lipodystrophy syndrome, are to be adequately assessed. The aim of this study was to investigate the variability of dual-energy X-ray absorptiometry (DEXA) scans analysis performed at local sites compared to central analysis in a multicenter clinical trial. METHOD: The PIILR study was a multicenter randomized clinical trial in which 80 HIV-infected patients with physician-documented lipodystrophy had serial measurements of body composition performed with Lunar DEXA scans. Scans were analyzed at local sites and then were reanalyzed centrally. RESULTS: DEXA scans from 73 patients who completed 24 weeks study were compared. Greater variation in the locally analyzed results than in the centrally reanalyzed data was noted, with arm, leg, and combined limb fat being most divergent between the local and centralized assessments (ratio of local to central standard deviation was 1.28, 1.31, and 1.35, respectively). The magnitude of this variance was enough to alter statistically relevant differences between study populations. CONCLUSION: Quality assurance is an important issue in the use of DEXA scans to determine body fat composition in multicenter research studies. A central quality assurance site should be incorporated to reduce variability in results.

Absorptiometry, Photon↗

Uncommon allele in apo AI-CIII-AIV gene cluster in a family with congenital generalized lipodystrophy.

Congenital generalized lipodystrophy is a rare inherited disease. One of its features is a disturbance in lipid metabolism characterized by hypercholesterolemia and hypertriglyceridemia. A brother and a sister with congenital generalized lipodystrophy, an 8-year old male and a 12-year old female were studied. The mother and a 6-year old brother were healthy. The genetic analysis of Sstl RFLP of the apo AI-CIII-AIV gene cluster showed the presence of the rare Sstl allele (S2) in the patients but not in the healthy mother and brother. As this uncommon allele has been reported to be related to high plasma triglyceride levels, this association could be relevant in explaining in part the hypertriglyceridemia observed in these patients.

Alleles↗

Lipid composition of adipose tissue from "membranous lipodystrophy".

The lipid composition of the adipose tissue from the bone marrow and that of the subcutaneous depot fat of four patients of membranous lipodystrophy were investigated. It was found that the lipid composition of the samples from the cases of membranous lipodystrophy was almost similar to that in controls. Also discussions were made on mechanism related to the accumulation of abnormal depot fat.

Adipose Tissue↗

Lipodystrophy syndrome in HIV infection: what is it, what causes it and how can it be managed?

Since the introduction of HIV-1 protease inhibitors as components of antiretroviral drug combination regimens, the clinical course of HIV disease and opportunistic infections has changed dramatically. Besides the favourable virological, immunological and clinical impact of highly active antiretroviral therapy (HAART), several adverse drug reactions have been observed in patients with HIV receiving therapy. Particularly, peripheral lipodystrophy, central adiposity, dyslipidaemia and insulin resistance have been described with a prevalence of up to 80% in patients infected with HIV, and attributed to almost all components of HAART. Hyperlipidaemia is characterised by an increase of low and very low density lipoprotein-cholesterol as well as apolipoproteins B and E. Several studies strongly suggest that there are either multiple syndromes or a variety of factors inducing different changes that influence the ultimate phenotype. Similarities between HIV-associated fat redistribution and metabolic abnormalities with both inherited lipodystrophies and benign symmetric lipomatosis suggest the pathophysiological involvement of, for example, nuclear factors like lamin A/C and drug-induced mitochondrial dysfunction. Moreover, there is some evidence that cytokines and hormones impair fat and glucose homeostasis in patients with HIV receiving HAART. Three years after the first description of HIV therapy-associated abnormal fat redistribution, there is still an ongoing discussion about the case definition, diagnostic procedure and treatment options for both body shape changes and metabolic disturbances. Regarding therapy, there is a major concern about possible complex pharmacological interactions and overlapping adverse effects between HAART and, for example, lipid-lowering therapy. In addition, the likely contribution of both nucleoside analogue reverse transcriptase inhibitors and protease inhibitors to the development of abnormal fat redistribution in patients with HIV limits options of changing to alternative effective antiretroviral drug combinations. Thus, the occurrence of hyperlipidaemia, maturity onset diabetes mellitus, and marked changes in body habitus resulted in important social and clinical consequences such as an increased risk of atherosclerosis. It also sheds new light on the use of protease inhibitors regarding risk factors for the initial treatment decision. In this article, we discuss the features, pathogenesis and treatment options for body fat redistribution and metabolic disturbances associated with HAART in HIV-1 infection.

Animals↗

Do non-nucleoside reverse transcriptase inhibitors contribute to lipodystrophy?

Lipodystrophy complications, including lipoatrophy (pathological fat loss) and metabolic complications, have emerged as important long-term toxicities associated with antiretroviral therapy in the current era. The wealth of data that has accumulated over the past 6 years has now clarified the contribution of specific antiretroviral drugs to the risk of these clinical endpoints, with evidence that lipoatrophy is strongly associated with the choice of nucleoside reverse transcriptase inhibitor therapy (specifically, stavudine and to a lesser extent zidovudine). The aetiological basis of metabolic complications of antiretroviral therapy has proven to be complex, in that the risk appears to be modulated by a number of lifestyle factors that have made the metabolic syndrome highly prevalent in the general population, with additional contributions from HIV disease status itself, as well as from individual drugs within the HIV protease inhibitor class. The currently licensed non-nucleoside reverse transcriptase inhibitor (NNRTI) drugs, efavirenz and nevirapine, have been proven to have a favourable safety profile in terms of lipodystrophy complications. However, it must be noted that NNRTI drugs also have individual toxicity profiles that must be accounted for when considering and/or monitoring their use in the treatment of HIV infection.

Alkynes↗

Total lipodystrophy with heart failure and renal failure: report of a case.

A 38-year-old female was admitted to our hospital because of dyspnea. The diagnosis of total lipodystrophy was made by following findings: (1) gaunt appearance; (2) insulin-resistant diabetes mellitus; (3) hyperlipidemia; (4) fatty liver. Chest X-ray demonstrated cardiomegaly, pulmonary edema and pleural effusion. Echocardiogram was characterized by left ventricular hypertrophy with asymmetrical septal hypertrophy and left ventricular dysfunction. Renal biopsy revealed focal glomerulosclerosis. We reported a patient with total lipodystrophy combined with heart failure and renal failure, which have been rarely associated with the disease.

Adult↗

Lamin A/C gene: sex-determined expression of mutations in Dunnigan-type familial partial lipodystrophy and absence of coding mutations in congenital and acquired generalized lipoatrophy.

Missense mutations of the lamin A/C gene, LMNA, have been recently identified in Dunnigan-type familial partial lipodystrophy (FPLD), which belongs to a heterogeneous group of rare disorders affecting adipose tissue distribution and metabolism. In this study, we sequenced the LMNA coding region from patients presenting with FPLD or other forms of lipodystrophy. We identified two heterozygous mutations in exon 8, R482W and R482Q, in FPLD patients (six families and one individual) with various clinical presentations. In addition, we found a novel heterozygous mutation (R584H) in exon 11, encoding specifically the lamin A isoform, in a patient with typical FPLD. Clinical and biochemical investigations in FPLD patients revealed that the expression and the severity of the phenotype were markedly dependent on sex, with female patients being more markedly affected. In subjects with generalized lipoatrophy, either congenital (13 case subjects) or acquired (14 case subjects), or Barraquer-Simon syndrome (2 case subjects), the entire LMNA coding sequence was normal. Although FPLD mutations are predominantly localized in exon 8 of LMNA, the finding of a novel mutation at codon 584, together with the R582H heterozygous substitution recently described, confirms that the C-terminal region specific to the lamin A isoform is a second susceptibility region for mutations in FPLD.

Adipose Tissue↗

Molecular analysis of Berardinelli-Seip congenital lipodystrophy in Oman: evidence for multiple loci.

Congenital generalized lipodystrophy (CGL) is a rare disorder characterized by the absence of body fat and insulin resistance and accompanied by other features, including acanthosis nigricans, organomegaly, hyperandrogenism, and diabetes. We have examined case subjects from 11 families in Oman with CGL. All subjects were the progeny of consanguineous marriages; therefore, a homozygosity mapping strategy was used to investigate the reported loci, 11q13 and 9q34. Three subjects could be linked to 11q13, and mutations were found within the seipin gene. An additional eight subjects were linked to 9q34, but the locus was in a 9-cM interval with no known microsatellites, so further fine mapping was not possible. However, two sibships (four subjects) did not map to either locus, raising the possibility of more than two lipodystrophy loci within the Oman population.

Chromosome Mapping↗

Severe islet amyloidosis in congenital generalized lipodystrophy.

OBJECTIVE: Islet amyloidosis may be one mechanism for pancreatic islet beta-cell loss that is associated with the development of NIDDM. However, the question remains whether chronic overstimulation of insulin and islet amyloid polypeptide (IAPP) secretion in states of insulin resistance could lead to formation of islet amyloidosis and hence NIDDM in some patients. We studied pancreatic islet pathology in congenital generalized lipodystrophy, a genetic syndrome of extreme insulin resistance that may provide some clues. RESEARCH DESIGN AND METHODS: Our patient was a 24-year-old African-American woman with congenital generalized lipodystrophy. Severe acanthosis nigricans was noted in her since age 6. At ages 12 and 16, normal and impaired glucose tolerances, respectively, were noted on oral glucose tolerance tests but were accompanied by extreme fasting and post-prandial hyperinsulnemia. Overt diabetes developed at age 18 and she required approximately 180 U of insulin daily. Immediately after an accidental death at age 24, an autopsy was performed. Pancreatic histology was studied in detail using routine methods and immunohistochemical techniques. RESULTS: Some scarring of the pancreas as a result of previous episodes of acute pancreatitis was observed. Severe amyloidosis was noted in 89% of the islets, sparing those that were rich in pancreatic polypeptide-secreting cells. Amyloid deposits stained intensely on immunostaining with antibodies against amylin. Marked paucity of beta-cells was evident. The ratio of beta- to alpha-cells was reduced to 1:1 (normal ratio approximately 4:1). CONCLUSIONS: These observations suggest that chronic presence of extreme insulin resistance may induce premature and severe islet amyloidosis as well as beta-cell atrophy.

Adult↗

Köbberling type of familial partial lipodystrophy: an underrecognized syndrome.

OBJECTIVE: The phenotypic expression of partial lipodystrophy is present in two familial syndromes: familial partial lipodystrophy type 1 (FPLD1), with fat loss from the extremities, and central obesity and FPLD type 2, with fat loss from the extremities, abdomen, and thorax. The latter disorder is associated with mutations in the LMNA gene. FPLD1 is thought to be rare. Here, we report 13 subjects with FPLD1, suggesting that this syndrome is more common than previously thought. RESEARCH DESIGN AND METHODS: Fasting glucose, plasma lipids, leptin, HbA(1c), and anthropomorphic measurements were evaluated in 13 subjects with clinical features of FPLD1 and are compared with two age-matched control groups, with and without diabetes. RESULTS: Only women with clinical features of FPLD1 have been identified. Although they lack extremity and gluteal subcutaneous fat, they do have truncal obesity. Skinfold thickness on the arm and leg was significantly less than that in control subjects. The ratio of skinfold thickness from abdomen to thigh was significantly higher in subjects, suggesting an easy method for identifying affected patients. FPLD1 subjects also had components of the metabolic syndrome, including hypertension, insulin resistance, and severe hypertriglyceridemia resulting in pancreatitis. Premature coronary artery disease was present in 31% of subjects. None of the subjects had coding mutations in the LMNA gene or in the gene coding for peroxisome proliferator-activated receptor (PPAR)-gamma. CONCLUSIONS: FPLD1 is more common than previously described, but the diagnosis is often missed. Early recognition and intensive treatment of hyperlipidemia and diabetes in FPLD1 is important for prevention of pancreatitis and early cardiovascular disease.

Anthropometry↗

Syndrome of lipodystrophy, hyperlipidemia, insulin resistance, and diabetes in treated patients with human immunodeficiency virus infection.

OBJECTIVE: To describe the syndrome of lipodystrophy, hyperlipidemia, insulin resistance, and diabetes in patients with human immunodeficiency virus (HIV) infection treated with protease inhibitor drugs. METHODS: This is a case series of patients referred from an infectious disease clinic to a diabetes-endocrinology clinic in an academic medical center because of severe metabolic problems that occurred during the course of otherwise-successful treatment of HIV infection. The clinical course, abnormalities on physical examination, laboratory data, and complications are described and analyzed. The pathogenesis of the syndrome is discussed and compared with that of type 2 diabetes, lipoatrophic diabetes, and mouse models of lipodystrophy. RESULTS: In six male patients receiving antiretroviral therapy for HIV infection, a syndrome of lipoatrophy of the face, legs, and buttocks, hyperlipidemia (predominantly hypertriglyceridemia), and type 2 diabetes mellitus was noted. Two patients had pronounced abdominal obesity, in contrast to their thin extremities. Five of the six patients were receiving protease inhibitor drugs, which have been thought to contribute to metabolic abnormalities. In two patients, ischemic heart disease had developed. CONCLUSION: Protease inhibitors frequently cause insulin resistance and lipoatrophy in subcutaneous adipose tissue. These abnormalities are associated with visceral adiposity, hyperlipidemia, diabetes, and cardiovascular consequences and represent an important and unsolved problem in the treatment of HIV-infected patients.

Adult↗

Sicca syndrome and total lipodystrophy: a case in a fifteen-year-old female patient.

A 15-year-old girl is described with the sicca syndrome of keratoconjunctivitis and xerostomia. There was no associated rheumatoid arthritis or other connective tissue disorder, but total lipodystrophy had been present since the age of 9 years. Marked hyperreactivity of the humoral immune system and suppression of cell-mediated immunity was shown. The association of sicca syndrome with total lipodystrophy has not previously been reported.

Adolescent↗

[Lipodystrophy and 'buffalo hump' during treatment with HIV protease inhibitors].

In three patients, a 36-year-old HIV seropositive homosexual man and two women aged 35 and 59 years who had acquired HIV infection through heterosexual contact, signs of lipodystrophy developed after prolonged anti-HIV triple therapy. The observed syndrome is seen after prolonged use of HIV protease inhibitors: it is characterized by peripheral fat wasting, central fat accumulation, hyperlipidaemia and insulin resistance. Typically the subcutaneous fatty tissue disappears resulting in prominent zygomata, veins and muscles and thinning of extremities and buttocks. In addition to abdominal fat accumulation, there have been reports on the occurrence of a dorsocervical fat pad, the so-called buffalo hump. Lipodystrophy caused by protease inhibitors is a risk factor for cardiovascular disease. Recognition of the syndrome is essential for adequate follow-up and possible treatment.

Adult↗

Studies in congenital generalized lipodystrophy. IV. Effect of muscular exercise on carbohydrate and fat metabolism including plasma levels of IRI and HGH.

Two patients with congenital generalized lipodystrophy have been studied at rest, and during and after long-term exercise at different carefully measured work loads. The two patients represented different stages of diabetes development. Both patients derived most of their energy used during muscular exercise from carbohydrate, and comparatively little from fat. FFA levels remained low throughout the period of observation in contrast to normal individuals and patients with juvinile diabetes. The data presented seem to show that deposition of glucose and free fatty acids (FFA) as triglyceride, must be impaired and are not compatible with the concept of increased triglyceride turnover in the adipocytes. The fall in blood glucose concentration (BCG) was less than in normal individuals and juvenile diabetes during exercise, and the glucose tolerance remained unchanged following work stop in both patients (k-values unchanged), in contrast to normal persons and patients with juvenile diabetes. Both patients showed significant falls in circulating immuno-reactive insulin (IRI) levels during exercise irrespective of a rise or fall in BGC. Thus, the exercise itself might activate endogenous mechanisms which could, on the one hand increase the circulating BGC, and at the same time force circulating IRI to decrease, thus disturbing the well-known relationship between circulating glucose and IRI levels as has been exhibited in normal subjects. The high IRI levels, also during exercise in these patients, indicate a relative insulin resistance in the muscles, but less marked than the insulin resistance in the adipose tissue. The IRI response after glucose infusion did not change significantly with increasing work loads with one exception. Exercose did not alter significantly the human growth hormone (HGH) levels in either the diabetic or the non-diabetic patient indicating an abnormal regulation of the HGH secretion in congenital lipodystrophy.

Adolescent↗

Risk factors for the HIV-associated lipodystrophy syndrome in a cross-sectional single-centre study.

OBJECTIVE: Risk factors for the HIV-associated lipodystrophy syndrome (HALS) were studied in a single-centre, cross-sectional study. - PATIENTS AND METHODS: 278 consecutive HIV-infected outpatients at a German tertiary care centre were enrolled. Changes in body shape were quantified using linear analogue scales. Cumulative treatment duration for each antiretroviral drug, CD4 cells, viral load and age were investigated as potential risk factors for a clinical diagnosis of lipodystrophy syndrome by logistic regression. RESULTS: HALS was diagnosed in 88 patients. The risk of HALS increased significantly with longer protease inhibitor treatment (relative risk 1.61 (95% confidence interval, 1. 24 to 2.09, per year); older age and a history of low CD4 cell counts were cofactors in this multivariate model, but nucleoside analogues did not contribute significantly. Neither pattern nor severity of disease were predicted by these risk factors. Treatment durations and other risk factors were highly correlated with each other. CONCLUSIONS: These findings support a pathogenetic role for protease inhibitor toxicity, advanced HIV disease, and ageing. No evidence for an additional effect of nucleoside analogues was found. The high correlation of potential risk factors indicates that this and other available studies may be too small to detect multiple risk factors without major confounding.

Acquired Immunodeficiency Syndrome↗

Metabolic complications of HIV-1 antiretroviral therapy: the lipodystrophy syndrome.

The lipodystrophy syndrome is one of the complications reported with increased frequency in patients with HIV-1 infection receiving antiretroviral therapy. The wide range of prevalence estimates may be due to differing definitions, methods and patient populations. We described the various pathogenic theories and the morphological and metabolic alterations associated with this syndrome. Even if no effective treatment exists, a correct lifestyle, adequate diet and physical exercise seem to be very important. Moreover drug therapies should be used with care to avoid potentially harmful interactions with antiretroviral agents. Ideally, the future effort to define the mechanism of lipodystrophy would be multidisciplinary and would involve not only experts in AIDS research but also nutritionists, endocrinologists and cardiologists.

Anti-HIV Agents↗