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Molecular genetic approaches to the study of individual risk in alcoholism.

Genetic studies of alcoholics, their families and controls have given credence to the idea that genetic influences in alcoholism exist, and set the stage for efforts to identify alcoholism-susceptibility genes (Devor and Cloninger, 1989). My purpose is not to review the genetics of alcoholism, but rather to review the genetic approaches that have been successful in identifying the genes responsible for genetic conditions such as muscular dystrophy and cystic fibrosis. In these disorders our current knowledge of the basic biochemical defect was derived directly from the cloning of the gene that is defective in the disorder. The cloned gene provides DNA probes for carrier identification and prenatal diagnosis, while knowledge of the basic defect allows new and direct investigation of potential therapeutic strategies. The genetic approach is much less definitive when it comes to the study of polygenic or multifactorial disorders such as schizophrenia or Alzheimer's disease. In the case of alcoholism the problem is exacerbated not only by environmental factors but also by phenotypic and genetic heterogeneity. The lack of a clear inheritance pattern means that plausible modes of inheritance must be invoked and tested on families with multiple affected members. Direct segregation analysis may not be possible and the less informative analysis of sib-pairs may be the method of choice. Ultimately, however, it should be possible to identify and clone those genes that play a major role in determining susceptibility to alcoholism. Once cloned, the protein products can be identified, and study of their function should lead to new understanding of the complex biological processes involved in this disorder.

Alcoholism↗

[The genetics of rheumatic diseases: genetic basis of the classification of multifactorial diseases].

Examination of the pattern of hereditary predisposition allows a more precise determination of pathogenetic relationships between individual clinical forms and variants of multifactorial diseases (MFD), as well as assessment of the possibilities and approaches to a genetic classification to be made. The construction of genetic classifications is based on the identification of differences in the type of inheritance, the study of the progeny in families where both parents have the same or different forms of the disease, the results of the marker adhesion test, and the genetic correlation coefficients. The study has made use of some clinical forms of rheumatic diseases, whose relationships are a subject of controversy among the clinicians, as splitting phenotypes. Segregation analysis of the selected clinical forms of rheumatic diseases and genetic correlation coefficients obtained within the framework of a quasi-continuous model provide no indication that these forms can be isolated as independent nosologic entities. Possible phenotype splitting into individual subtypes and the potentialities of a marker approach to the construction of genetic MFD classifications are demonstrated, with rheumatoid arthritis associated with HLA antigen Dr 4 taken as an example.

Classification↗

Segregation analysis of diastolic blood pressure in a large pedigree.

Hypertension, a major risk factor for cardiovascular diseases, is thought to be inherited to some extent. However, the nature of its genetic component remains unresolved. In the present study, data from a single large kindred (the HGAR1 pedigree) were used to search for evidence of single gene and multifactorial effects on diastolic blood pressure. Commingling analyses found that a mixture of three distributions fit the data significantly better than a single normal distribution, suggesting a major effect influencing diastolic blood pressure levels. However, segregation analysis, using regressive models, indicated that the transmission probabilities were not consistent with Mendelian expectations. There was no evidence of either major gene or polygenic effects on diastolic blood pressure levels in this family.

Blood Pressure↗

Osteoarthritis: a problem of joint failure.

Osteoarthritis can be viewed as the clinical and pathological outcome of a range of disorders that results in structural and functional failure of synovial joints. Osteoarthritis occurs when the dynamic equilibrium between the breakdown and repair of joint tissues is overwhelmed. Structural failure of articular cartilage can result from abnormal mechanical strains injuring healthy cartilage as well as from failure of pathologically impaired cartilage degenerating under the influence of physiological mechanical strains. Primary and secondary subsets of OA and defined but in the majority of cases the pathogenesis is multifactorial, involving environmental as well as genetic factors. The influence of occupational factors, body weight, trauma and recreational activities are briefly reviewed, as are the role of developmental abnormalities, collagen gene mutations, denervation of joints and inherited and acquired erros of metabolism.

Animals↗

Hyperlipidemia in children.

Advances toward improving cardiovascular health of tomorrow's adults lie both in acknowledging that the pathogenesis of atherosclerosis begins in childhood and in considering the influence of environmental factors on genetic endowment of risk. Based on current understanding of lipoprotein transport processes, an array of genetic disorders with various degrees of atherogenicity can be classified according to the predominant lipoprotein density class, as represented by a standard lipid profile, and then further defined by assaying apolipoproteins and their receptors, lipoprotein transport enzymes, or the respective variant genes. Alternatively, a simple and potentially cost-effective representation of multifactorial influences on lipid transport is provided by an assessment of apolipoprotein particle composition using serial immunologic precipitation of apolipoproteins while on their intact plasma lipoproteins. A comprehensive intervention strategy can be based on identification of inherited risk and the effects of nongenetic factors, which include dietary excess, inactivity, disease states, and medications.

Adolescent↗

Inheritance of Indian childhood cirrhosis.

Detailed pedigree charts were prepared from 120 index patients suffering from Indian childhood cirrhosis (ICC). Of the 120 families, 84 were informative for segregation analysis. Since families were ascertained through patients who came to hospital for treatment, the data were analyzed according to a single-selection model. The observed segregation ratio for the entire data was significantly lower than the one expected under the hypothesis of autosomal recessive inheritance (p = smaller than 0.005). On the other hand, the segregation data for families with at least two affected children (multiplex families) were compatible with autosomal recessive inheritance. On this basis, however, at least 50% of all the cases of ICC would have to be of nongenetic origin. Alternatively, analysis of the data by the Falconer method indicated that ICC could be of multifactorial origin with very strong genetic determination (over 85%).

Age Factors↗

[Research advances in molecular genetics of epilepsies].

Last years brought a large number of papers shedding light on the molecular and genetic background of epilepsy. The aim of the present work was to review recent literature concerning this issue. In the first section, the authors presented biochemical and functional characteristics of receptors and ion channels. Mutations in their genes can lead to epileptic seizure development. Particularly, the role of GABA receptors as well as voltage-gated sodium, calcium and potassium channels in epilepsy pathogenesis was discussed. The second part of the work focuses on clinical implications of these receptors and channels disturbances. Epileptic syndromes with proved genetic defect are presented on the basis of recent literature and OMIM (Online Mendelian Inheritance in Man) database. The authors point out that reviewed results show vast heterogeneity of many known epileptic syndromes. On the other hand, defects in the same locus can result in heterogeneous phenotypes. This can indicate multifactorial pathogenesis of epilepsy and implicate further revision of epilepsies and epileptic seizures classification.

Calcium Channels↗

What can genetics contribute to reduce the problems of schizo-affective psychoses?

The biological base of psychoses is controlled by multifactorial genotype compounds using sometimes the same gene locus or DNA information section for diverse diseases, but always in different and repeatable combinations. These compounds can be formed by special regulatory or junction genes. With the help of inherited serum markers of the haptoglobin and the Gc system including quantitative studies of the ceruloplasmin and transferrin serum level, the combinations of diverse biological factors have been presented especially for cycloid psychoses, unsystematic schizophrenias, and paranoid psychoses with late onset and a cyclic axis syndrome. Considering the specifications of genetic control and clinical course no indefinite mixtures in the sense of schizo-affective psychoses should be discussed furthermore.

Chromosome Mapping↗

Inflammatory bowel disease: Crohn's disease and the success of NODern genetics.

The inflammatory bowel diseases (IBDs), Crohn's disease and ulcerative colitis, are multifactorial in etiology, but a major causative role for genetic factors has long been recognized. Recent advances in genetic technologies have made dissection of the genes underlying common diseases possible; consequently, there is an emerging understanding of the inherited factors that predispose to IBD. In this review, we summarize current information on the genetics of IBD, emphasizing the discovery of CARD15 variants as susceptibility alleles for Crohn's disease and the impact of this discovery on patient care and in delineating pathogenesis of this complex disease.

Carrier Proteins↗

Pacific Craniofacial Team and Cleft Prevention Program.

There is no doubt modern genetics have greatly influenced our professional and personal lives during the last decade. Uncovering genetic causes of many medical and dental pathologies is helping to narrow the diagnosis and select a treatment plan that would provide the best outcome. Importantly, having an understanding of multifactorial etiology helps direct our attention toward prevention. We now understand much better our own health problems. In some cases, we can modify our lifestyle and diet in order to prevent "environmental factors" from triggering the mutated genes inherited from our parents. Good examples are diabetes and cardiovascular diseases. If we realize we might have inherited genes for cardiovascular problems from several ancestors who had heart attacks, we already know that these genes will make us only "susceptible" for disease. Those who exercise, watch one's weight, diet, and carefully monitor one's lifestyle will very likely--though possessing "susceptibility genes"--stay healthier and, maybe, will never experience any cardiovascular problems. In principle, the same applies for craniofacial anomalies, especially for nonsyndromic cleft lip and palate. One needs to understand genetic and environmental causes of nonsyndromic orofacial clefts in order to prevent them. With all this in mind, the Pacific Craniofacial Team and Cleft Prevention Program have been established at the Department of Orthodontics, University of the Pacific Arthur A. Dugoni School of Dentistry in San Francisco. A partnership with Rotaplast International, Inc., has made it possible for the faculty, orthodontic residents, and students to participate in 27 multidisciplinary cleft medical missions in underdeveloped and developing countries by donating professional and educational services, and, last but not least, by collecting valuable data and specimens to further research. A significant number of research studies, including 15 master of science theses, have been accomplished in UOP's Craniofacial Genetics Laboratory, with contributions by faculty, undergraduate and graduate students. It has been leading to a better understanding of etiology of nonsyndromic orofacial clefts. It has been learned that genetic factors and environmental factors are ethnicity-specific and, in many places throughout the world, location-specific. Thus, a specific protocol for cleft prevention has to be worked out based on genetic and nutritional studies of each specific population group in order to be effective. This is our ultimate goal.

California↗

The use of hydrolysates in allergy prevention programmes.

The beneficial effect of a prevention programme regarding the frequency and severity of manifestations suggestive of atopic disease is difficult to prove since the genesis of atopy is multifactorial, including genetic and environmental factors. Twin studies indicate that genetic and environmental factors may each account for about 50% of the phenotype expression of allergic disease (Schultz-Larsen, Holm & Henningsen, 1986). Family studies suggest a heterogenic inheritance (Lee, Geha & Leung, 1988). In order to increase the scientific persuasive impact, as many as possible of these influencing factors should be controlled. However, the more all these factors are controlled, the less persuasive the results will be in daily practice, when dealing with a 'population' instead of a highly motivated selected study cohort. Results of most of the 'atopy prevention trials' starting at birth suggest that prevention is antigen-specific: elimination of cow's milk protein from feeding of high-risk infants, selected because of a family history of atopy, results in a life-long decreased incidence of cow's milk protein allergy. We present here five-year follow-up data of a prevention program using a partial hydrolysate. It is unclear if the introduction of 'tolerance' to cow's milk proteins early in life is relevant or not, since the natural history of allergy to cow's milk protein is transient in a majority of infants. It is also unclear if a high-degree hydrolysate would result in a more efficient prevention than a partial-degree hydrolysate, or that a partial-degree hydrolysate would result in a better development of tolerance than a high-degree hydrolysate.

Child, Preschool↗

Inheritance of melanocytic tumors in Duroc swine.

Phenotypes, with respect to cutaneous melanocytic lesions, of 37 Duroc swine from five matings were analyzed prospectively. No evidence for a recessive or X-linked trait was found. Larger numbers of animals will have to be studied to determine whether the presence of these tumors is a multifactorial or autosomal dominantly transmitted trait.

Animals↗

Fibromuscular dysplasia and the brain. II. Current concept of the disease.

Eleven hundred cases from the literature of fibromuscular dysplasia (FMD) are reviewed including 300 cases with aortocranial lesions. The male-female ratio is 1:2, and the prevalence seems increased among Caucasians. The clinical diagnosis of FMD is made by angiography, ten years earlier in patients with hypertension (mean age 39 years) than in those with cerebrovascular symptoms (mean age 50 years). Segmental dysplastic lesions are found mainly in primary aortic branches. All age groups may be affected and follow-up studies give evidence for stationary as well as slowly progressive lesions. A multifactorial hypothesis of etiology is presented: congenital minor lesions of tunica medial might predispose to aneurysms and to an abnormal fibroproliferative response to mechanical or circulatory stimuli. The association of FMD and intracranial aneurysmal disease in females is discussed. Inheritance as a dominant trait with reduced penetrance in males is suspected. Current aspects on morphology, symptomatology and clinical management are presented.

Adolescent↗

Genetic alterations and polymorphisms in gastric cancer.

The etiology of gastric cancer (GC) is multifactorial, and is likely to involve the actions of genes at multiple levels along the multistage carcinogenesis process. This article reviews the considerable progress that has been achieved in understanding the genetics of GC. The genetic effects consist of inherited genetic factors that predispose to GC, and the genetic targets of neoplastic progression that confer altered growth capacity to neoplastic cells. Inherited genotypes include germline mutations of high-penetrance genes directly associated with hereditary GC syndromes and genetic polymorphisms that indirectly affect the susceptibility to GC after exposure to carcinogens or Helicobacter pylori infection. Based on accumulation of different oncogenes or tumor suppressor genes alterations, 2 broad classes of genetic pathways called suppressor and mutator phenotypes are defined that participate in the development and progression of GC. Examples of genes involved in pathogenesis of GC include p53, adenomatous polyposis coli (APC), beta-catenin, E-cadherin, transforming growth factor (TGF)-betaRII, and hMLH1. Delineating genes involved in different subtypes of GC can reflect the heterogeneity and biologic characteristics of GC. Elucidation of the role of inherited genotypes and genetic alterations at different stages of gastrocarcinogenesis may provide a more coherent picture of the mechanism of this devastating disease and facilitate the development of novel approaches to effective prevention and intervention. Advances in high throughput technologies and functional genomics have rapidly increased our understanding of gene structure and function and its role in disease.

Disease Progression↗

Genetic studies of a cleft palate clinic population.

The genetic program at the Lancaster Cleft Palate Clinic is briefly described. The aim of the study is to obtain quantitative estimates of various components which contribute to genetic heterogeneity. Of 260 families interviewed, 26.1% of cleft lip, 42.5% of cleft lip and palate and 30.0% of isolated cleft palate propositi had one or more affected relatives. That isolated cleft palate is etiologically distinct from cleft lip with or without cleft palate is once again demonstrated. Eight of the cleft palate propositi are from mixed pedigrees with Van der Woude syndrome. While a majority of the familial cleft cases are compatible with the multifactorial hypothesis, five pedigrees of cleft lip and cleft palate propositi and one of a cleft palate propositus are in apparent agreement with the hypothesis of single autosomal dominant gene in each pedigree. No case of sex-linked inheritance was found.

Cleft Lip↗

Genetic models of sex effect in unipolar affective illness.

Family study data on unipolar affective illness are analyzed by multiple threshold models of inheritance that incorporate sex effect. In these models males and females share a common genetic-environmental liability, but the less prevalent sex, i.e., males, has a higher genetic threshold for the disorder. Neither single major locus (SML) nor multifactorial-polygenic (MFP) transmission can account for the sex differences in the morbid risk for unipolar disorder. The implications for genetic research in affective disorders are discussed.

Chromosome Mapping↗

Torus mandibularis: an estimation of the degree of genetic determination.

Torus mandibularis has frustrated several attempts to make family patterns of variation fit modifications of Mendelian models. It is suggested that the quasi-continuous model of inheritance provides a rational explanation for the diverging opinions. The model implies an underlying continuous and normally distributed variable, 'liability', with a threshold value beyond which individuals will be affected. Both genetic and environmental factors determine liability, making the system multifactorial. The incidence of variable degrees of torus was examined in two groups of patients with different stresses on the jaws: one group with bruxism and one comparison group. The transformation of incidences to group means and variances of liability was demonstrated. Muscular forces during bruxism were shown to influence liability. The relative importance of environmental and genetic components of variance could, however, not be estimated directly from the entire groups, since both were mixed with regard to the genetic predisposition. To achieve materials with uniform genotypes, all individuals without torus were omitted. The estimate of the genotypic variance (VG) was obtained by subtracting the variance of the bruxism sub-group--the environmental component associated with bruxism (VEB)--from the total phenotypic variance of the comparison sub-group (VP). The estimate of the genetic determination of torus (VG/VP) turned out to be about 30%, whereas approximately 70% of the causes seemed to be attributable to environmental influence in terms of occlusal stress. Gene effects on the morphologic level are usually pleiotropic, and it is suggested that the correlation of torus mandibularis with other clinical variables might make an interesting subject for further investigation.

Adult↗

Experimental models of multifactorial epilepsies: the EL mouse and mice susceptible to audiogenic seizures.

This chapter reviews two well-characterized mouse epilepsy models with a multifactorial etiology, the epileptic EL mouse and mice susceptible to audiogenic seizures (AGS). Multifactorial disorders are quantitative traits where the action of more than one gene together with environmental factors contributes to the disease phenotype. The EL (epilepsy) mouse has been studied extensively as a genetic model for idiopathic complex partial seizures in humans. EL seizures are associated with an intense hippocampal gliosis in the absence of obvious neuronal loss and an elevated calcium-dependent release of aspartate that is present both before and after seizure onset. The inheritance of epilepsy is complex and several seizure frequency quantitative trait loci (QTL) have been mapped. Much of this genetic complexity may arise from the influence of environmental factors, including the seizure testing procedure, seizure history, and age. AGS, which are violent sound-induced convulsions, are considered a genetic model for generalized brainstem or reflex epilepsies. AGS susceptibility can arise as an inherited trait in some mouse strains or can be induced in genetically resistant strains from environmental factors (e.g., prior acoustic stimulation). AGS susceptibility and long-term potentiation (LTP) may also share common mechanisms. Several Asp genes have been mapped that influence AGS susceptibility. The expression of one of these can be modified by genomic imprinting and another has been identified as the X-linked 5-HT2e serotonin receptor. The genetic dissection of convulsive behavior in EL and AGS susceptible mice could help identify candidate genes for human multifactorial epilepsies.

Animals↗