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The inherited susceptibility to cancer.

The study of inherited cancer syndromes has led to the identification of over 25 genes directly involved in tumorigenesis. These genes have functions as diverse as signal transduction, cell cycle control, cell-to-cell adhesion, control of apoptosis, DNA repair and the maintenance of genome stability. Most cancer syndromes have a dominant pattern of inheritance, due to germline loss-of-function mutation of a tumour suppressor gene. All the recessively inherited genes have been implicated in the maintenance of genome stability. This review summarises our current understanding of the functions of the major cancer susceptibility genes.

Animals↗

Inheritance of the replication complex: a unique or common phenomenon in the control of DNA replication?

Early models of the regulation of initiation of DNA replication by protein complexes predicted that binding of a replication initiator protein to a replicator region is required for initiation of each DNA replication round, since after the initiation event the replication initiator should dissociate from DNA. It was, therefore, assumed that binding of the replication initiator is a signal for triggering DNA replication. However, more recent investigations have revealed that in many replicons this is not the case. Studies on the regulation of the replication of plasmids derived from bacteriophage lambda demonstrated that, once assembled, the replication complex can be inherited by one of the two daughter plasmid copies after each replication round and may function in subsequent replication rounds. Since this DNA-bound protein complex bears information about specific initiation of DNA replication, this phenomenon has been called "protein inheritance." A similar phenomenon has recently been reported for oriJ-based plasmids. Moreover, the current model of the initiation of DNA replication in the yeast Saccharomyces cerevisiae proposes that the origin recognition complex (ORC) remains bound to one copy of the ori sequence (the ARS region) after initiation of DNA replication. Thus, it seems plausible that protein inheritance is not unique for lambda plasmids, but may be a common phenomenon in the control of DNA replication, at least in microbes.

Bacteriophage lambda↗

Major histocompatibility complex controls susceptibility and dominant inheritance, but not the severity of the disease in mouse models of rheumatoid arthritis.

Collagen-induced arthritis (CIA) in DBA/1 and proteoglycan-induced arthritis (PGIA) in BALB/c mice are the most frequently used mouse models for studying clinical, immunological and genetic factors contributing to rheumatoid arthritis. DBA/1 ( H2(q)) mice are susceptible to CIA but resistant to PGIA, whereas BALB/c mice ( H2 (d)) are susceptible to PGIA and resistant to CIA. To gain insight into the mechanisms of how the major clinical (disease susceptibility, severity and onset of arthritis) and immunological traits (antigen-specific T- and B-cell responses) are influenced by the major histocompatibility complex (MHC), we have generated a unique intercross of BALB/c and DBA/1 parent strains, and the F1 and F2 hybrids were immunized for either CIA or PGIA. The major clinical and immunological traits were identified as either binary (qualitative) or quantitative traits on Chromosome 17 with a peak at MHC when the entire population was analyzed. In contrast, when only arthritic (susceptible) mice were selected and analyzed, the major clinical traits (severity and onset) 'lost' the linkage to MHC. Thus, MHC dictates disease susceptibility, but not the severity of arthritis. This was even more evident in the case of the H2(q) allele, which was clearly responsible for the dominant inheritance of arthritis in F2 hybrids (either CIA or PGIA). In conclusion, while certain MHC alleles strongly affect disease susceptibility and determine the mode of inheritance of a polygenic autoimmune disease, neither the type of inheritance (dominant vs recessive) nor other MHC components have evident effects upon the clinical symptoms of arthritis.

Animals↗

Genome-wide linkage analysis of inherited hydrocephalus in the H-Tx rat.

Inherited hydrocephalus in humans has received very little attention, most probably because known occurrences are sporadic and systematic investigation is difficult. The H-Tx rat, one of a number of rodent strains with inherited hydrocephalus, has a complex inheritance with more than one postulated susceptibility gene and 40% penetrance. The aim of this study was to perform a genome-wide scan on backcross progeny derived from H-Tx and Fisher F344 rats, to identify genomic regions associated with hydrocephalus. Penetrance of hydrocephalus in (H-Tx x F344) F1 x H-Tx was 12.3%. All severely hydrocephalic progeny (n = 185) and a subset of normal progeny (n = 128) were screened with 110 simple sequence length polymorphisms (SSLPs) with 83% coverage of the genome. A significant susceptibility locus was found on chromosome (Chr) 11 (LOD = 3.1). Three loci with suggestive linkage were found on Chr 17 (LOD = 2.4), on Chr 9 (LOD = 1.94), and on Chr 19 (LOD = 1.91). For the loci on Chr 11 and 19, hydrocephalus was associated with the heterozygous genotype, while the other two were recessive. Although none of the four loci was essential for the hydrocephalic phenotype, the additive effects of two, three, or four loci increased the penetrance in a linear fashion. Altogether these four loci accounted for 13.5% of the total variance. It is concluded that hydrocephalus in the H-Tx rat is associated with two, possibly four genetic loci, but that there may be additional undefined genetic and environmental influences.

Animals↗

Dominantly inherited myopathy with novel tubular aggregates containing 1-21 tubulofilamentous structures.

Tubular aggregates (TAs) in skeletal muscle fibers have been observed as a nonspecific finding in a number of different conditions such as periodic paralysis, myotonic disorders, hyperaldosteronism, chronic use of drugs, and alcoholism. However, TAs were also found more specifically in well-defined muscle disorders, e.g., exercise-induced cramps, myasthenic syndromes, and even in dominantly or recessively inherited familial myopathies. We report on a presumably dominantly inherited familial myopathy with late onset characterized morphologically by the presence of three types of TAs in type II muscle fibers identified in three affected members of one family (a 86-year-old man and his two sons). The first, novel type was characterized by tubules, 30-200 nm in thickness which included 1-21 tubulofilamentous structures 14-18 nm in diameter. The second type of TAs corresponded to previously well-described tubules and were derived from terminal cisternae, which were rather irregularly arranged or widened, and filled with material of medium electron density. The third type of TAs were occasional, hexagonally arranged TAs of the usual type [type Ib and Ic]. Rare annulate lamellae were also seen. Our findings support the evidence of tubular aggregates as the major finding in certain dominantly inherited myopathies. Tubules of the first type, to the best of our knowledge, have not been recorded in any other myopathy. It is therefore suggested that these tubules characterize a novel type of a benign, slowly progressive myopathy with late onset, muscle pain, cramps, and stiffness.

Adult↗

Histopathological changes in iridocorneal angle of inherited glaucoma in rabbits.

BACKGROUND: We examined morphologically the angular region of eyes affected by inherited glaucoma in rabbits genetically developed by crossbreeding in order to investigate the etiologic changes in the iridocorneal angle and to establish whether this strain of rabbit is a suitable animal model of goniodysgenetic glaucoma in humans. METHODS: The angular regions of both normal and glaucomatous eyes from four rabbits having unilateral inherited glaucoma were observed with light and electron microscopy. RESULTS: In the glaucomatous eyes angular region, the aqueous plexus corresponding to Schlemm's canal in humans was open and located far peripherally to the peripheral margin of the anterior chamber angle, although the plexus of one glaucomatous eye was poorly developed with a small lumen. In the angular meshwork, which corresponds to the trabecular meshwork in humans, a thick abnormal tissue with round cells embedded in the extracellular matrix was located just beneath the plexus. A large amount of extracellular matrix of basal lamina-like material was observed in the thick tissue. In the normal eyes, the angular region consisted of well-developed trabecular sheets with neither a thick tissue nor accumulations of extracellular matrix in the angular meshwork. CONCLUSION: The findings observed in the glaucomatous eyes are much the same as those observed in goniodysgenetic glaucoma in humans, suggesting that this strain of inherited glaucoma rabbits is a suitable animal model of goniodysgenetic glaucoma in humans. The present study also supports the hypothesis that the presence of a thick subcanalicular tissue due to maldevelopment of the iridocorneal angle is one of the main causes of this type of glaucoma.

Animals↗

Kinetoplast DNA minicircles are inherited from both parents in genetic crosses of Trypanosoma brucei.

In the order Kinetoplastida, genetic exchange has been demonstrated only in the genus Trypanosoma. Analysis of kinetoplast DNA (kDNA) in genetic crosses of T. brucei has shown that whereas maxicircles are inherited uniparentally, minicircles are inherited from both parents. This result was confirmed for a new cross of T. b. brucei and T. b. rhodesiense by restriction enzyme digestion and Southern analysis of purified kDNA. By hybridisation with small minicircle-derived probes, we could demonstrate the presence of particular parental minicircles in the kDNA of hybrid progeny clones. All hybrid clones had inherited two minicircles from one parent despite two of the four clones having maxicircles from the other parent. The results suggest that rather than small-scale exchange of minicircles between parental networks, gross breakdown and reassembly of the minicircle network occurs during genetic exchange.

Animals↗

Inherited deficiency of properdin and C2 in a patient with recurrent bacteremia.

A nine-year-old white boy with recurrent pneumococcal bacteremia is described. His serum had no hemolytic activity in either the classic or alternative complement pathways. Absence of classic pathway activity was secondary to a homozygous deficiency of C2. The parents had half-normal levels of C2, compatible with an autosomal recessive mode of inheritance. Measurement of serum properdin levels by radial immunodiffusion and enzyme-linked immunoabsorbent assay revealed a profound deficiency in the patient, normal levels in the father, and half-normal levels in the mother, suggesting X-linked inheritance of the deficiency. Addition of purified properdin to the patient's serum fully reconstituted the alternative pathway function. This patient's unique combination of inherited deficiencies of properdin and C2 is a likely explanation for his susceptibility to bacterial infection.

Child↗

Are mitochondria inherited paternally in Ascaris?

Mitochondrial DNA (mtDNA) is finding increasing usage as a tool for studying the systematics, population genetics and epidemiology of parasitic helminths, and is generally assumed to be inherited maternally. Yet two features of Ascaris biology--fertilization by large amoeboid sperm and some novel aspects of sperm mitochondria--suggest a paternal component to mitochondrial inheritance in this organism. In this study, we compare mtDNA restriction patterns of parental worms with those of their progeny but find no evidence for paternal inheritance. We suggest that sperm-derived mitochondria are actively destroyed or outcompeted by maternal organelles in the zygote.

Animals↗

Inheritability of atherosclerosis and the role of lipoproteins as risk factors in the development of atherosclerosis in WHHL rabbits: risk factors related to coronary atherosclerosis are different from those related to aortic atherosclerosis.

Inheritability of atherosclerosis and the influences of serum lipids on atherosclerosis were examined by following its progression in selectively bred WHHL rabbits. Our studies indicate (1) coronary atherosclerosis is clearly inherited from parents by offspring whereas inheritability of aortic atherosclerosis is uncertain; (2) coronary stenosis is positively correlated to serum cholesterol level, although the correlation coefficient is markedly low: in contrast, no relationship between serum lipid levels and aortic atherosclerosis was observed; (3) cholesterol-rich VLDL showed atherogenicity in aorta, but not in coronary arteries; (4) an unknown lipoprotein detected by 3.6% polyacrylamide gel electrophoresis was related to coronary atherosclerosis, although no relationship between the unknown lipoprotein and aortic atherosclerosis was observed. These findings suggest that there are two types of genetic factors involved in atherosclerosis, one of which is unique to coronary atherosclerosis whereas the other is related to only aortic atherosclerosis.

Animals↗

Inheritance of the replication complex by one of two daughter copies during lambda plasmid replication in Escherichia coli.

Direct measurement of DNA synthesis confirmed that lambda plasmid replication proceeds for several hours in an amino acid-starved relA mutant of Escherichia coli, leading to plasmid amplification; this replication is lambda cro-independent, but requires the function of lambda O initiator in the absence of its synthesis. This suggests that after the assembly of the replication complex (RC) at ori lambda the lambda O protein remains in this structure and the affinity of lambda O to ori lambda is alleviated in the assembled RC allowing its movement along the DNA. During amino acid starvation the lambda plasmid DNA synthesis per bacterial mass occurs at a constant level, as would be expected if the number of functioning RCs remained constant. This favors the idea that under these conditions the next replication round operates due to the activity of the RC inherited from the preceding round. Density shift experiments reveal indeed that, from two daughter plasmid copies synthesized after the onset of amino acid starvation only one is able to enter into the next round of replication. We infer that this is the plasmid copy that inherits the lambda O-enclosing RC from the previous replication round. Moreover, the same results of density shift experiments were obtained for plasmids synthesized before the onset of amino acid starvation. Therefore, we presume that in lambda plasmid-harboring bacteria growing in nutrient medium, every second plasmid circle bears an RC that originates from the preceding round of replication. This structure has to be assembled de novo only on the daughter plasmid copy that does not inherit the parental RC. In the absence of lambda O initiator synthesis in amino acid-starved relA cells this process cannot occur, leaving as the only replication pathway that driven by the parental RC. Our results are discussed in relation to the model of regulation of lambda plasmid replication.

Bacteriophage lambda↗

Glucose intolerance in first-degree relatives of patients with Friedreich's ataxia is associated with insulin resistance: evidence for a closely linked inherited trait.

Multiple and different genetic defects may be associated with the development of diabetes mellitus. Friedreich's ataxia (FA) is an autosomal recessively inherited neurologic disease associated with a high prevalence of diabetes. We previously demonstrated that patients with FA have insulin resistance prior to the development of overt diabetes mellitus. To determine if insulin resistance is an inherited characteristic in this group, we performed oral glucose tolerance tests (OGTT) on first-degree relatives, 21 parents and 17 siblings, of patients with FA. While fasting concentrations were normal, both glucose and insulin concentrations in response to oral glucose were significantly elevated compared with controls. Corrected insulin responses, CIR = I x 100/G (G-70) (I = insulin, G = glucose), were not different from controls, whereas peripheral insulin activities, A = 10(4)/Ip Gp (p = values of I and G at peak glucose concentration), were significantly decreased (FA, 0.66 +/- 0.11, P less than .001; parents, 0.63 +/- 0.06, P less than .001; siblings, 0.72 +/- 0.09, P less than .01; v controls, 1.52 +/- 0.19), indicating the presence of insulin resistance in patients and first-degree relatives. Multiple discriminant analysis was used to separate patients with FA from controls. The combination of GLUT (sum of glucose values 0 to 3 hours of the OGTT) and CIR achieved significant separation (P less than .0004). Subsequent assignment of the relatives showed that 17 of 18 parents and 11 of 16 siblings (69%) fell in the range of FA, rather than with controls. These data suggest that insulin resistance is an inherited trait in this group.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Combined inherited protein S and heparin co-factor II deficiency in a patient with upper limb thrombosis: a family study.

A 42-year-old Italian woman presenting with spontaneous deep vein thrombosis of the right arm, was found to have inherited a deficiency of both protein S (PS) and heparin co-factor II (HC II). The two defects seemed to segregate independently, since her son exhibited only a HC II deficiency while one of her sisters manifested only the PS defect. All affected patients appeared heterozygous for one or other or both deficiency states. The proposita and her sister exhibited a congenital PS deficiency consisting of normal or near normal levels of total PS antigen and C4b-binding protein (C4b-BP) but a moderate reduction both of free PS antigen and of PS functional activity. In addition, the proposita and her son had half normal levels of HC II antigen and activity. Except for the proposita, all were asymptomatic. Inherited deficiencies either of PS or of HC II have been associated with thrombotic manifestations. Since the proposita had an inherited combined defect of the two proteins, severe thrombotic events might be expected. However, this was not found to be the case. The role of HC II deficiency in the pathogenesis of thrombosis whether alone or combined remains to be fully investigated.

Adolescent↗

A mating type-linked gene cluster expressed in Chlamydomonas zygotes participates in the uniparental inheritance of the chloroplast genome.

A characteristic feature of early zygote development in Chlamydomonas is the selective degradation of chloroplast DNA from the mating type minus parent. The zygote-specific gene cluster ezy-1 is linked to the mating type locus and is transcribed almost immediately upon zygote formation. We show here that the acidic Ezy-1 polypeptide is rapidly transported to both the plus and minus chloroplasts, where it interacts with each chloroplast nucleoid. Expression of ezy-1 is selectively inhibited when plus, but not minus, gametes are briefly ultraviolet irradiated just prior to mating, a treatment known to disrupt the uniparental inheritance of chloroplast traits. We propose that the Ezy-1 polypeptide participates in the destruction of the minus chloroplast DNA in zygotes and thus the uniparental inheritance of chloroplast traits. The ezy-1 gene represents a valuable molecular probe for dissecting mechanisms underlying organelle inheritance.

Amino Acid Sequence↗

Revised clinical and laboratory criteria for subtypes of inherited epidermolysis bullosa. A consensus report by the Subcommittee on Diagnosis and Classification of the National Epidermolysis Bullosa Registry.

Inherited epidermolysis bullosa encompasses a number of diseases, with the common finding of blister formation after minor mechanical trauma to the skin. In some forms significant, if not eventually fatal, extracutaneous disease activity may occur. In recent years application of newer technologies has contributed substantially to an overall understanding of this collection of inherited diseases. Concurrently, many new phenotypes have been recognized, in part the result of ongoing prospective patient registries in the United States and abroad. Unfortunately, this has resulted in a massive literature that may appear to be confounded by seemingly excessive or arbitrary subdivision of epidermolysis bullosa variants. With these concerns in mind a subcommittee was established by the National Epidermolysis Bullosa Registry to summarize the current literature and to make recommendations as to the best clinical and laboratory criteria for the practical diagnosis and subclassification of patients with inherited epidermolysis bullosa.

Epidermolysis Bullosa↗

Inheritance of resistance to oedema disease in the pig: experiments with an Escherichia coli strain expressing fimbriae 107.

Inheritance of resistance to intestinal colonization with E. coli causing oedema disease is hypothesized to be under the control of one locus consisting of two alleles with susceptibility (S) dominating resistance (s). This mode of inheritance was investigated by mating pigs, resistant and susceptible to the disease, and examining the offspring. Weaned piglets were repeatedly inoculated orally with 5 x 10(5) CFU per pig per day of a streptomycin resistant strain of E. coli serotype O139:K12(B):H1:F(107) and susceptibility determined by daily semiquantitative cultural examination of rectal swabs. Using results obtained from offspring, 5 boars were retrospectively assigned the genotype ss, 1 was assigned Ss, and 2 were assigned SS. Nine sows were designated ss, 8 classified Ss and 4 SS. Ninety two pigs resulted from matings regarded as ss x ss; 89 (97%) of these were resistant to colonization and oedema disease. Of the 168 pigs from Ss x ss matings, 83 (49%) were resistant, while only 13 (9%) of 146 pigs from matings with at least one SS parent were classified resistant. The results are compatible with inheritance being controlled by one locus and with susceptibility dominating resistance to oedema disease.

Amoxicillin↗

Triggered activity as a mechanism for inherited ventricular arrhythmias in German shepherd Dogs.

OBJECTIVES: This study sought to determine whether early afterdepolarization-induced triggered activity is responsible for the initiation of ventricular arrhythmias in dogs with an inherited predisposition to sudden death. BACKGROUND: We have identified a colony of German shepherd dogs that display inherited ventricular ectopic activity and sudden cardiac death. The arrhythmias in these animals are pause dependent but are not associated with a prolonged QT interval, suggesting that they might be initiated by early afterdepolarization-induced triggered activity in Purkinje fibers. METHODS: Cardiac Purkinje fibers obtained from dogs that either did or did not exhibit ventricular tachyarrhythmias at the time of study were superfused in vitro with normal Tyrode solution (extracellular potassium ion concentration 4 mmol/liter) and were studied using standard microelectrode techniques. RESULTS: Early afterdepolarizations and triggered activity occurred spontaneously in Purkinje fibers obtained from affected dogs (n = 7) but not in fibers obtained from unaffected dogs (n = 13). Exit conduction block of triggered responses occurred to varying degrees within the Purkinje fiber but not at the Purkinje-muscle junction. Overdrive pacing suppressed triggered activity. The reemergence of triggered activity after cessation of pacing was both time and rate dependent. Triggered activity in fibers obtained from affected dogs was potentiated by phenylephrine and epinephrine and was suppressed by isoproterenol. Triggered activity was not induced by phenylephrine or epinephrine in fibers obtained from unaffected dogs. CONCLUSIONS: These results support the hypothesis that early afterdepolarization-induced triggered activity in Purkinje fibers is responsible for the initiation of ventricular arrhythmias in this canine model of inherited sudden death.

Adrenergic alpha-Agonists↗

Functions of dietitians providing nutrition support to patients with inherited metabolic disorders.

This article examines functions of dietitians who provide nutrition services to patients with inherited metabolic disorders. A survey questionnaire was developed and pilot-tested in a sample of dietitians, revised, and mailed to all dietitians in the United States who treat patients with inherited metabolic disorders. One hundred forty-two usable questionnaires were returned. Descriptive statistics were used to calculate response frequency. The highest academic degree attained by 37% of the dietitians was a bachelor's degree; 58% had earned a master's degree and 5% a doctorate. Dietitians provided nutrition services during diagnosis, critical illness, and long-term care. More than 90% of the dietitians performed these functions: evaluated nutrition status; prepared, implemented, and evaluated the nutritional support plan; revised the nutrition support plan as needed; monitored dietary compliance; coordinated care with other agencies; developed materials and educated parents, caregivers, and patients about the nutrition support plan; and recorded information in the medical record. Without nutrition support, patients with inherited metabolic disorders may become mentally retarded, experience neurologic or metabolic crises, or die.

Dietetics↗