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Tomaculous neuropathy: hereditary predisposition to pressure palsies.

A family is described in which six members in three generations have been affected by a remittent and pressure-sensitive mononeuritis or mononeuritis multiplex. In addition, nerve conduction studies have demonstrated the presence of peripheral neuropathy in clinically unaffected as well as affected family members, thus providing evidence of an autosomal dominant inheritance pattern. A sural nerve biopsy from one of of an autosomal dominant inheritance pattern. A sural nerve biopsy from one of the clinically affected members of this family showed 'sausage-shaped' swellings of myelin sheaths characteristic of tomaculous neuropathy. This rare condition, which is briefly reviewed, appears to be a distinctive clinicopathological entity and usually follows a benign course.

Adolescent

Pedigree analysis and genetic inheritance of fatal familial insomnia (FFI) in a Portuguese multigenerational family.

Fatal familial insomnia (FFI) is a rare, autosomal dominant prion disease caused by a mutation in the PRNP gene, leading to the misfolding of the cellular prion protein (PrPC) into its pathogenic form (PrPSc). This results in neurodegeneration, particularly in the thalamus, a key region regulating sleep-wake cycles, which underlies the hallmark symptoms of FFI, including insomnia, autonomic dysfunctions, motor disturbances and cognitive decline. This study focuses on a Portuguese family with FFI, providing a detailed pedigree analysis spanning five generations and comprising 134 individuals, to elucidate inheritance patterns, disease onset, and clinical progression. The findings confirm the autosomal-dominant inheritance pattern and a strong familial clustering of the disease with age of onset in the late 50s (mean 57 years). Although 67% of affected individuals succumbing to the disease within months to 1.5 years, a notably 33% exhibited prolonged survival beyond the typical disease duration, exceeding proportions reported in the literature. Family members retrospectively reported prodromal symptoms, including generalized pain, headaches, tinnitus, pruritus, and behavioral changes, occurring up to five years before diagnosis. In several cases, reportedly, disease onset was associated with major phycological stressors (e.g., emotional stress or mourning). While the significance of these observations remains uncertain, they may provide insights into potential early features in this kindred. Further research integrating genomic sequencing, biomarkers, and longitudinal clinical assessments are needed to better understand the mechanisms underlying the heterogeneity of FFI and to explore potential therapeutic interventions.

Humans

The developmental fate of fission yeast cells is determined by the pattern of inheritance of parental and grandparental DNA strands.

A key feature for development consists of producing sister cells that differ in their potential for cellular differentiation. Following two cell divisions, a haploid Schizosaccharomyces pombe cell produces one cell in four 'granddaughters' with a changed mating cell type, implying nonequivalence of sister cells in each of two consecutive cell divisions. The observed pattern of switching is analogous to the mammalian 'stem cell' lineage by which a cell produces one daughter like itself while the other daughter is advanced in its developmental program. It is tested here whether sisters differ because of unequal distribution of cytoplasmic and/or nuclear components to them or due to inheriting a specific parental DNA chain at the mating type locus. Only the DNA strand-segregation model predicts that those cells engineered to contain an inverted tandem duplication of the mating type locus should produce equivalent sisters. Consequently, two 'cousins' in four related granddaughter cells should switch. The results verified the prediction, thus establishing that all cells otherwise fully possess the potential to switch. Therefore, the program of cell type change in S.pombe cell lineages is determined by the pattern of DNA strand inheritance at the mating type locus. A specific DNA sequence present at the mating type locus is postulated to be the cause of developmental asymmetry between sister cells. A general model for cellular differentiation is proposed in which the act of DNA replication itself is hypothesized to produce developmentally nonequivalent sister genomes.

DNA, Fungal

Thyroxine binding globulin deficiency in a family with type I hyperlipoproteinaemia.

A familial type I hyperlipoproteinaemia is described in three members of a family of eleven; on the basis of LPL activity and HDL content of plasma three other members of the family have been diagnosed to be heterozygotes without other disturbances in their lipid spectrum. The distribution of this lipid disorder is in accordance with an autosomal recessive inheritance pattern. In this family a second hereditary condition, thyroxine binding globulin deficiency, was found in addition to the hyperlipoproteinaemia. The inheritance of this condition appears to be as an autosomal dominant. An interrelated inheritance pattern of both conditions could not be proved, but both traits may be located on the same chromosome at some distance from another to allow recombination.

Adult

Bilateral absence of the kidneys and ureters. Three cases reported in one family.

Three infant boys with bilateral absence of the kidneys and hypoplasia of the lungs are described. Two of the infants were brothers and the third was a first cousin. They were born to 2 sisters whose husbancs were unrelated to their wives and to each other. None of the parents had renal problems. The occurrence of this syndrome in 2 male sibs is suggestive of an autosomal recessive inheritance pattern which has been previously described. An additional male first cousin born to the mother's sister is sugesstive of sex-linked inheritance for this particular family, an inheritance pattern not previously described.

Abnormalities, Multiple

Steatocystoma multiplex with bilateral preauricular sinuses in four generations.

A rare case of steatocystoma multiplex and bilateral preauricular sinuses in four generations is presented along with a review of the literature. The cause, pathogenesis, and treatment of steatocystoma multiplex is discussed. Steatocystoma multiplex (SCM) is a rare clinical disorder characterized by numerous recurrent cutaneous cysts. Since the first case described by Bosellini in 1898, both nonfamilial and autosomal dominant inheritance patterns have been described. There have been at least 13 well-documented nonfamilial cases. However, since Noonjin and Reynolds in 1948 first described the autosomal dominant inheritance pattern, only 4 well-documented familial cases have been reported. To date, there has been one case report of SCM in four generations, and that case was not associated with any other anomaly. The present case describes the occurrence of SCM in association with bilateral preauricular sinuses in multiple generations.

Adult

Anticipation in Swedish families with bipolar affective disorder.

Anticipation describes an inheritance pattern within a pedigree with an increase in disease severity or decrease in age at onset or both in successive generations. The phenomenon of anticipation has recently been shown to be correlated with the expansion of trinucleotide repeat sequences in different disorders. We have studied differences of age at onset and disease severity between two generations in 14 families with unilinear inheritance of bipolar affective disorder (BPAD). There was a significant difference in age at onset (p < 0.008), in episodes per year with (p < 0.006) and without (p < 0.03) lithium treatment, and in total episodes per year (p < 0.002) between generations I and II. Furthermore, there was a highly significant correlation (p < 0.001) in age at onset between generations I and II. No evidence for specific paternal or maternal inheritance was found. We found evidence of anticipation and could rule out ascertainment bias or some other artefact. Anticipation is thus an inheritance pattern in BPAD which suggests that the expansion of trinucleotide repeat sequences is a possible mode of inheritance in BPAD.

Adolescent

Keratoconus and Fuchs' corneal endothelial dystrophy in a patient and her family.

A 44-year-old patient with bilateral keratoconus and bilateral Fuchs' dystrophy underwent penetrating keratoplasty. Examination of the patient's family revealed keratoconus in the patient's son and central guttata and abnormal endothelial cells in the patient's mother and daughter. Histopathologic evaluation of the corneal button demonstrated a thinned central epithelium and folds and keratocytes in Bowman's layer consistent with keratoconus. Central guttata, subepithelial bullae, and a decreased number of endothelial cells, consistent with Fuchs' endothelial dystrophy, were also seen. This case demonstrates that two distinct familial corneal diseases can occur in the same patient. Although one cannot conclude inheritance patterns based on this limited evaluation, the findings in this family support previous observations that keratoconus can be familial, and that Fuchs' corneal dystrophy has a female predilection with an autosomal-dominant inheritance pattern.

Adult

Autosomal dominant familial Mediterranean fever-like syndrome with amyloidosis.

We report a pedigree in which a syndrome that resembled familial Mediterranean fever occurred in four family members over three successive generations. All four patients had systemic amyloidosis. Typically, patients with familial Mediterranean fever show an autosomal recessive inheritance pattern. The disorder commonly afflicts Sephardic Jews, Arabs, and persons of Turkish descent. Colchicine therapy dramatically reduces the attack rate of serositis. The family described herein is unique because of their European ethnicity and the autosomal dominant inheritance pattern. Unlike typical familial Mediterranean fever, colchicine had no influence on the attacks and did not prevent amyloidosis in the three patients who received this treatment.

Adult

Mode of inheritance of hypertrophic cardiomyopathy in Iceland. Echocardiographic study.

We used an abnormally thick interventricular septum (greater than or equal to 1.3 cm) as an echocardiographic marker to find the inheritance pattern of hypertrophic cardiomyopathy among relatives of eight patients who had that disease at necropsy. Forty normal subjects served as a control group. Fifty-eight family members were examined and 18 (41%) of the 44 first degree relatives had hypertrophic cardiomyopathy. The overall inheritance pattern was consistent with an autosomal dominant genetic disorder and in one family a recessive trait could be excluded. The diagnosis of hypertrophic cardiomyopathy can be difficult clinically as only 13% of our patients had serious symptoms and only 30% had abnormal auscultatory findings. The electrocardiogram is a useful screening test among relatives as it was abnormal in 20 (87%) of those who had an abnormally thick septum. Symmetric septal hypertrophy was found in 30% of patients with cardiomyopathy in this study and only 17% had clinical evidence of obstruction.

Adolescent

Prognostic significance of nondiploid DNA determined by flow cytometry in sporadic and familial medullary thyroid carcinoma.

To clarify the role of DNA measurements in predicting outcome after surgical treatment of medullary thyroid carcinoma (MTC), we performed flow cytometric analysis in nuclear suspensions of 119 MTC tumors. Of the 119 patients, 63 (53%) patients had sporadic tumors and 56 (47%) patients had familial tumors; survivors were followed for a mean of 13 years. DNA content was normal in 92 (77%) patients and abnormal (nondiploid) in 27 (23%) patients. Ten-year cause-specific mortality rates were 12%, 42%, and 49% with diploid, tetraploid/polyploid, or aneuploid tumors (p = 0.0009) and were greater with nondiploid tumors both in the sporadic (p = 0.012) and multiple endocrine neoplasia (familial) cases (p = 0.114). None of 27 patients with TNM stage I disease died of MTC. In patients with TNM stages II, III, and IV disease, DNA nondiploid tumors were associated with increased deaths from MTC. In a Cox proportional hazards model involving all 119 patients and adjusted for disease stage and inheritance pattern, nondiploid DNA was independently associated with increased deaths from MTC (p = 0.008). In an identical Cox model restricted to the 92 DNA diploid tumors, an S-phase fraction of 15.0% or more remained a significant variable (p = 0.034) after adjustment for stage and inheritance pattern. We therefore conclude that DNA measurements do have a role to play in predicting outcome after surgical treatment of MTC.

Adolescent

An RFLP map of the Plasmodium falciparum genome, recombination rates and favored linkage groups in a genetic cross.

We report a genetic linkage map of the Plasmodium falciparum genome, using the inheritance patterns of nearly 90 RFLP markers in a genetic cross. Markers were assigned to polymorphic loci on all 14 nuclear chromosomes. Genetic recombination between parental markers was detected in each of the progeny, indicating that progeny from cross-fertilization events were favored over progeny from self-fertilization of either parent alone. Inheritance patterns among the markers suggested that certain parental linkage groups on chromosomes 2, 3, 12 and 13 were favored in the cross. Recombination frequencies on five chromosomes indicated an approximate map unit size of 15-30 kb per centiMorgan for P. falciparum.

Animals

A family study of multiple mutations of alpha and delta glycophorins (glycophorins A and B).

Glycophorins alpha and delta are the carriers of the antigens of the MNSs blood system; this report documents the presence of three glycophorin mutations in two individuals of a 16 member family. Erythrocytes were examined by serology, sodium dodecyl sulfate electrophoresis, and immunoblotting. The inheritance pattern and immunoblot profile revealed: (1) A variant Dantu glycophorin showed properties consistent with a delta-alpha glycophorin hybrid structure, previously noted in other individuals. The gene responsible for the Dantu glycophorin in this family is linked to a gene coding for an M-specific alpha glycophorin. (2) Another variant glycophorin, Mi-III glycophorin, was first revealed by immunoblotting and subsequently confirmed by erythrocyte antigen typing. This autosomal dominant trait is associated with N blood group activity and the inheritance pattern indicates that it could be a variant of delta glycophorin. (3) In the individuals with both Dantu and Mi-III glycophorins a delta glycophorin deficiency was observed suggesting that a deletion or alteration of delta gene may exist cis to the Dantu gene. Our findings that document clustering of multiple mutations in MNSs gene loci in the propositus family are very unusual as such variants are relatively rare.

Female

Linkage analysis of schizophrenia: challenges and promise.

Schizophrenia is a serious mental illness affecting nearly 1 per cent of the general population. Family, twin, and adoption studies suggest that genetics plays a major role in the etiology of schizophrenia. The inheritance pattern appears complex, similar to that of other common conditions like heart disease. To uncover a causal genetic factor, researchers have recently begun to apply a linkage analysis strategy to schizophrenia. Early results suggest that there are many challenges facing scientists who undertake schizophrenia genetics research. While one study has shown significant linkage of schizophrenia to a region on chromosome 5, several other studies have not found linkage to this area. The likelihood that there are several major genes predisposing to the illness and uncertainties about inheritance patterns and diagnostic boundaries are potential difficulties to overcome. Many more families need to be studied, and creative complementary research strategies pursued, to achieve the potential success offered by a genetic linkage approach.

Adolescent

Genetic Analysis of Genomic and Methylomic Variation and Identification of Multi-Trait Mutants in Rice Carried on Chang'e-5.

Global food security is facing challenges from population growth to diminishing arable land. Space mutation breeding holds promise for overcoming the variation limitations in conventional breeding; however, the mutagenic effects of the deep-space environment on rice and the transgenerational inheritance patterns of induced variations remain unclear. In this study, rice seeds carried by the Chang'e-5 spacecraft were used as materials. Whole-genome sequencing and whole-genome bisulfite sequencing were performed on the first (SP1) and second generations (SP2) of space-mutagenized plants after their return to Earth. The results showed that the number of genomic variants in the SP2 generation increased significantly compared with SP1, and SNPs, homozygous sites, and variants in coding regions were more heritable. The genome-wide methylation level was elevated in the SP2 generation, and among differentially methylated cytosines, those in the CG context exhibited the highest heritability. Furthermore, large-scale screening for nitrogen efficiency, tolerance to PEG-induced stress, and germination-stage cold resistant mutants was conducted in the SP2 generation, and phenotypic validation was performed in the third generation (SP3). By integrating multi-omics analyses of representative mutants to mine candidate genes, a number of heritable elite mutants were obtained, and seven candidate genes for key traits were identified. This study systematically elucidates the transgenerational inheritance patterns of deep-space-induced variation in rice. The multi-trait mutants obtained provide valuable germplasm resources for gene cloning and breeding applications in rice.

DNA methylation

Defective antigen-receptor-mediated regulation of immunoglobulin production in B cells from autoimmune strains of mice.

B cells are stimulated by antigens or by polyclonal activators such as bacterial lipopolysaccharide (LPS) to produce antibody. In nonautoimmune strains of mice, LPS-stimulated antibody responses are inhibited by crosslinking the B cell antigen-receptor (BCR), while antigen-driven responses are shut down by co-crosslinking the BCR and the receptor for the Fc portion of IgG (Fc gamma R). BCR signals are poor at shutting off LPS-induced antibody production, including anti-ssDNA antibody production, in B cells from NZB, NZB/WF1, and BXSB lupus-prone mice but not MRL/lpr or NZW mice. In the current studies, the defect in NZB B cells was shown to be independent of T cells and macrophages. The inheritance pattern of resistance to BCR ligation of LPS-induced Ig production in BXSB mice could not be assigned to either founding strain. In New Zealand mixed (NZM) recombinant inbred mice, slightly but significantly more resistance was found in a line (NZM2410) that demonstrates a greater degree of clinical autoimmunity than another line (NZM64) with fewer autoimmune problems. The autoimmune defect is specific to BCR signals because inhibition of LPS activation by ligation of MHC class II occurs normally in NZB B cells. Bypassing the BCR by direct stimulation of second messengers with phorbol esters or ionomycin did not overcome the defect, suggesting that defects in downstream signaling events, rather than in the BCR mechanism itself, are responsible for the reduced ability to inhibit the LPS response in NZB B cells. The inability of the BCR signaling pathway to control LPS-induced Ig production in NZB mice was apparent at the level of H mu-chain mRNA for secreted IgM. These results suggest that autoimmunity-associated B cell defects in BCR signaling and subsequent regulation of LPS-driven antibody responses have a number of inheritance patterns and involve downstream events in signaling pathways in B cells. The defect can result in aberrant regulation of H mu-chain mRNA levels for secreted IgM production, and may be a predisposing factor in murine systemic autoimmune disease.

Animals