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1.
Genes (Basel) ; 15(4)2024 03 22.
Article in English | MEDLINE | ID: mdl-38674329

ABSTRACT

Childhood obesity is a significant public health concern, particularly among Hispanic populations. This study aimed to elucidate the genetic predisposition to obesity in Puerto Rican children of Hispanic descent, addressing a notable gap in existing research. A cohort of 103 children with obesity and hyperphagia underwent genetic screening for rare obesity-related variants. Clinical assessments and family history evaluations were conducted to characterize the demographic and clinical characteristics of the cohort. Genetic testing revealed a high prevalence of variants, with 73% of subjects having at least one reported variant. Pathogenic variants, predominantly associated with obesity-related ciliopathies, were identified in 7% of cases. Additionally, 90% of cases had variants of uncertain significance, highlighting the complexity of genetic contributions to obesity. This study emphasizes the critical need for further investigation into the genetic foundations of obesity, particularly within Hispanic communities. The findings emphasize the importance of early medical evaluation, vigilant monitoring for hyperphagia onset, and targeted interventions tailored to the unique genetic landscape of Puerto Rican children. This research provides a foundational framework for future studies to mitigate the impact of genetic obesity within this population.


Subject(s)
Genetic Predisposition to Disease , Hispanic or Latino , Pediatric Obesity , Humans , Child , Male , Female , Pediatric Obesity/genetics , Pediatric Obesity/epidemiology , Pediatric Obesity/ethnology , Hispanic or Latino/genetics , Puerto Rico/epidemiology , Genotype , Adolescent , Child, Preschool , Genetic Testing/methods , Hyperphagia/genetics
2.
Nutrition ; 54: 105-110, 2018 10.
Article in English | MEDLINE | ID: mdl-29778907

ABSTRACT

OBJECTIVES: The aim of this study was to assess the association between the single-nucleotide polymorphism rs9939609 in the FTO gene and homeostatic/non-homeostatic eating behavior patterns in Chilean children. METHODS: A cross-sectional study was conducted in 258 children (44% female; 8-14 y of age). Anthropometric measurements (weight, height, Z-score of height, body mass index, and waist circumference) were performed. Eating behavior was assessed using the Eating in Absence of Hunger Questionnaire; the Child Eating Behavior Questionnaire; the Three Factor Eating Questionnaire, and the Food Reinforcement Value Questionnaire. Genotype of rs9939609 was determined by a Taqman assay. Association of rs9939609 with eating behavior was assessed using non-parametric tests. RESULTS: Allelic frequencies of rs9939609 were estimated as 77% for the A allele and 23% for the T allele. We found that normal-weight girl A carriers had higher scores of Satiety Responsiveness and Slowness on the Eating subscale. Normal-weight boy A carriers showed significantly higher scores on the Negative Affect and lower scores of the Desire to Drink subscale. In overweight children, A carriers showed higher scores on the Food Responsiveness, Emotional Overeating, Enjoyment of Food, and Food Choice subscales and lower scores on the Satiety- Responsiveness and Slowness in Eating subscales. In obese children, we found higher scores on the Cognitive Restrained subscale and lower Food Choice. CONCLUSION: The rs9939609 A allele of the FTO gene is associated with eating behavior traits and may predispose to obesity.


Subject(s)
Alpha-Ketoglutarate-Dependent Dioxygenase FTO/blood , Eating/genetics , Feeding Behavior/psychology , Pediatric Obesity/genetics , Reward , Alleles , Anthropometry , Body Mass Index , Child , Child Behavior/psychology , Chile , Cross-Sectional Studies , Eating/psychology , Female , Gene Frequency , Genetic Predisposition to Disease/genetics , Genotype , Humans , Hyperphagia/genetics , Hyperphagia/psychology , Male , Pediatric Obesity/psychology , Polymorphism, Single Nucleotide , Satiation , Waist Circumference
3.
Endocrinology ; 159(2): 1021-1034, 2018 02 01.
Article in English | MEDLINE | ID: mdl-29300858

ABSTRACT

Ghrelin is a potent orexigenic peptide hormone that acts through the growth hormone secretagogue receptor (GHSR), a G protein-coupled receptor highly expressed in the hypothalamus. In vitro studies have shown that GHSR displays a high constitutive activity, whose physiological relevance is uncertain. As GHSR gene expression in the hypothalamus is known to increase in fasting conditions, we tested the hypothesis that constitutive GHSR activity at the hypothalamic level drives the fasting-induced hyperphagia. We found that refed wild-type (WT) mice displayed a robust hyperphagia that continued for 5 days after refeeding and changed their food intake daily pattern. Fasted WT mice showed an increase in plasma ghrelin levels, as well as in GHSR expression levels and ghrelin binding sites in the hypothalamic arcuate nucleus. When fasting-refeeding responses were evaluated in ghrelin- or GHSR-deficient mice, only the latter displayed an ∼15% smaller hyperphagia, compared with WT mice. Finally, fasting-induced hyperphagia of WT mice was significantly smaller in mice centrally treated with the GHSR inverse agonist K-(D-1-Nal)-FwLL-NH2, compared with mice treated with vehicle, whereas it was unaffected in mice centrally treated with the GHSR antagonists D-Lys3-growth hormone-releasing peptide 6 or JMV2959. Taken together, genetic models and pharmacological results support the notion that constitutive GHSR activity modulates the magnitude of the compensatory hyperphagia triggered by fasting. Thus, the hypothalamic GHSR signaling system could affect the set point of daily food intake, independently of plasma ghrelin levels, in situations of negative energy balance.


Subject(s)
Fasting/physiology , Ghrelin/physiology , Hyperphagia/etiology , Receptors, Ghrelin/physiology , Animals , Eating/physiology , Ghrelin/metabolism , Hyperphagia/genetics , Hyperphagia/metabolism , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Receptors, Ghrelin/genetics , Receptors, Ghrelin/metabolism , Signal Transduction/genetics
4.
J Physiol Biochem ; 73(1): 29-35, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27730429

ABSTRACT

Studies conducted in monozygotic and dizygotic twins have established a strong genetic component in eating behavior. Rare mutations and common variants of the melanocortin 4 receptor (MC4R) gene have been linked to obesity and eating behavior scores. However, few studies have assessed common variants in MC4R gene with the rewarding value of food in children. The objective of the study was to evaluate the association between the MC4R rs17782313 polymorphism with homeostatic and non-homeostatic eating behavior patterns in Chileans children. This is a cross-sectional study in 258 Chilean children (44 % female, 8-14 years old) showing a wide variation in BMI. Anthropometric measurements (weight, height, Z-score of BMI and waist circumference) were performed by standard procedures. Eating behavior was assessed using the Eating in Absence of Hunger Questionnaire (EAHQ), the Child Eating Behavior Questionnaire (CEBQ), the Three-Factor Eating Questionnaire (TFEQ), and the Food Reinforcement Value Questionnaire (FRVQ). Genotype of the rs17782313 nearby MC4R was determined by a Taqman assay. Association of the rs17782313 C allele with eating behavior was assessed using non-parametric tests. We found that children carrying the CC genotype have higher scores of food responsiveness (p value = 0.02). In obese girls, carriers of the C allele showed lower scores of satiety responsiveness (p value = 0.02) and higher scores of uncontrolled eating (p value = 0.01). Obese boys carrying the C allele showed lower rewarding value of food in relation to non-carriers. The rs17782313 C allele is associated with eating behavior traits that may predispose obese children to increased energy intake and obesity.


Subject(s)
3' Untranslated Regions , Genetic Predisposition to Disease , Hyperphagia/genetics , Overweight/etiology , Pediatric Obesity/etiology , Polymorphism, Genetic , Receptor, Melanocortin, Type 4/genetics , Adolescent , Alleles , Body Mass Index , Case-Control Studies , Child , Chile , Cross-Sectional Studies , Feeding Behavior , Female , Genetic Association Studies , Humans , Hyperphagia/metabolism , Hyperphagia/physiopathology , Male , Receptor, Melanocortin, Type 4/metabolism , Reinforcement, Psychology , Reward , Waist Circumference
5.
J Clin Invest ; 122(11): 4203-12, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23093774

ABSTRACT

Obesity is a chronic metabolic disorder affecting half a billion people worldwide. Major difficulties in managing obesity are the cessation of continued weight loss in patients after an initial period of responsiveness and rebound to pretreatment weight. It is conceivable that chronic weight gain unrelated to physiological needs induces an allostatic regulatory state that defends a supranormal adipose mass despite its maladaptive consequences. To challenge this hypothesis, we generated a reversible genetic mouse model of early-onset hyperphagia and severe obesity by selectively blocking the expression of the proopiomelanocortin gene (Pomc) in hypothalamic neurons. Eutopic reactivation of central POMC transmission at different stages of overweight progression normalized or greatly reduced food intake in these obesity-programmed mice. Hypothalamic Pomc rescue also attenuated comorbidities such as hyperglycemia, hyperinsulinemia, and hepatic steatosis and normalized locomotor activity. However, effectiveness of treatment to normalize body weight and adiposity declined progressively as the level of obesity at the time of Pomc induction increased. Thus, our study using a novel reversible monogenic obesity model reveals the critical importance of early intervention for the prevention of subsequent allostatic overload that auto-perpetuates obesity.


Subject(s)
Adipose Tissue/physiopathology , Adiposity , Eating , Hypothalamus/physiopathology , Obesity/prevention & control , Obesity/physiopathology , Adipose Tissue/metabolism , Adipose Tissue/pathology , Animals , Disease Models, Animal , Hyperphagia/genetics , Hyperphagia/metabolism , Hyperphagia/pathology , Hyperphagia/physiopathology , Hyperphagia/prevention & control , Hypothalamus/metabolism , Hypothalamus/pathology , Mice , Mice, Knockout , Neurons/metabolism , Neurons/pathology , Obesity/genetics , Obesity/metabolism , Pro-Opiomelanocortin/genetics , Pro-Opiomelanocortin/metabolism
6.
Am J Med Genet A ; 152A(1): 102-10, 2010 Jan.
Article in English | MEDLINE | ID: mdl-20034100

ABSTRACT

Rearrangements of 1p36 are the most frequently detected abnormalities in diagnostic testing for chromosomal cryptic imbalances and include variably sized simple terminal deletions, derivative chromosomes, interstitial deletions, and complex rearrangements. These rearrangements result in the specific pattern of malformation and neurodevelopmental disabilities that characterizes monosomy 1p36 syndrome. Thus far, no individual gene within this region has been conclusively determined to be causative of any component of the phenotype. Nor is it known if the rearrangements convey phenotypes via a haploinsufficiency mechanism or through a position effect. We have used multiplex ligation-dependent probe amplification to screen for deletions of 1p36 in a group of 154 hyperphagic and overweight/obese, PWS negative individuals, and in a separate group of 83 patients initially sent to investigate a variety of other conditions. The strategy allowed the identification and delineation of rearrangements in nine subjects with a wide spectrum of clinical presentations. Our work reinforces the association of monosomy 1p36 and obesity and hyperphagia, and further suggests that these features may be associated with non-classical manifestations of this disorder in addition to a submicroscopic deletion of approximately 2-3 Mb in size. Multiplex ligation probe amplification using the monosomy 1p36 syndrome-specific kit coupled to the subtelomeric kit is an effective approach to identify and delineate rearrangements at 1p36.


Subject(s)
Chromosomes, Human, Pair 1 , Hyperphagia/genetics , Obesity/genetics , Chromosome Mapping , Cohort Studies , Humans , In Situ Hybridization, Fluorescence , Phenotype
7.
Eur J Med Genet ; 49(6): 451-60, 2006.
Article in English | MEDLINE | ID: mdl-16564757

ABSTRACT

Monosomy 1p36 is one of the most commonly observed mental retardation (MR) syndromes that results in a clinically recognizable phenotype including delayed psychomotor development and/or MR, hypotonia, epilepsy, hearing loss, growth delay, microcephaly, deep-set eyes, flat nasal bridge and pointed chin. Besides, a Prader-Willi syndrome (PWS)-like phenotype has been described in patients with 1p36 monosomy. Forty-one patients presenting hypotonia, developmental delay, obesity and/or hyperphagia and behavioral problems who tested negative for PWS were investigated by FISH and/or microsatellite markers. Twenty-six were analyzed with a 1p-specific subtelomeric probe, and one terminal deletion was identified. Thirty patients (15 of which also studied by FISH) were investigated by microsatellite markers, and no interstitial 1p36 deletion was found. Our patient presenting the 1p36 deletion did not have the striking features of this monosomy, but her clinical and behavioral features were quite similar to those observed in patients with PWS, except for the presence of normal sucking at birth. The extent of the deletion could be limited to the most terminal 2.5 Mb of 1p36, within the chromosomal region 1p36.33-1p36.32, that is smaller than usually seen in monosomy 1p36 patients. Therefore, chromosome 1p36.33 deletion should be investigated in patients with hypotonia, developmental delay, obesity and/or hyperphagia and behavioral problems who test negative for PWS.


Subject(s)
Chromosome Deletion , Chromosomes, Human, Pair 1/genetics , Prader-Willi Syndrome/genetics , Adolescent , Child , Child Behavior Disorders/genetics , Child, Preschool , Female , Humans , Hyperphagia/genetics , In Situ Hybridization, Fluorescence , Infant , Learning Disabilities/genetics , Male , Microsatellite Repeats , Muscle Hypotonia/genetics , Obesity/genetics , Phenotype , Psychomotor Disorders/genetics
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