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A novel mutation in KVLQT1 is the molecular basis of inherited long QT syndrome in a near-drowning patient's family.

After identifying a 10-year-old boy with inherited long QT syndrome (LQTS) after a near-drowning that required defibrillation from torsades de pointes, evaluation of first degree relatives revealed a four-generation kindred comprising 26 individuals with four additional symptomatic and eight asymptomatic members harboring an abnormally prolonged QTc (defined as > or =0.46 s1/2). We set out to determine the molecular basis of their LQTS. The inherited LQTS represents a collection of genetically distinct ion channelopathies with over 40 mutations in four fundamental cardiac ion channels identified. Molecular studies, including linkage analysis and identification of the disease-associated mutation, were performed on genomic DNA isolated from peripheral blood samples from 29 available family members. Genetic linkage analysis excluded the regions for LQT2, LQT3, and LQT5. However, the chromosome 11p15.5 region (LQT1) showed evidence of linkage with a maximum lod score of 3.36. Examination of the KVLQT1 gene revealed a novel 3-bp deletion resulting in an in-frame deltaF339 (phenylalanine) deletion in the proband. This deltaF339 mutation was confirmed in nine additional family members who shared both an assigned affected phenotype and the disease-associated linked haplotype. Importantly, three asymptomatic family members, with a tentative clinical diagnosis based on their QTc, did not have this mutation and could be reclassified as unaffected. It is noteworthy that the proband's ECG suggested the sodium channel-based LQT3 genotype. These findings show the potential importance of establishing a molecular diagnosis rather than initiating genotype-specific interventions based upon inspection of a patient's ECG.

Chromosomes, Human, Pair 11↗

Genetic bases of estrogen-induced pituitary growth in an intercross between the ACI and Copenhagen rat strains: dominant mendelian inheritance of the ACI phenotype.

Estrogens stimulate cell proliferation in a variety of tissues and are widely believed to be contributing factors in the etiology of certain cancer types in humans. The molecular mechanisms through which estrogens regulate cell proliferation are currently unknown. Estrogens stimulate proliferation of the PRL-producing lactotroph of the rat anterior pituitary gland and induce development of PRL-producing pituitary tumors in several inbred rat strains. Therefore, the lactotroph provides a well defined model for identifying the mechanisms through which estrogens regulate cell proliferation and/or survival. Data from our laboratory and others indicate that the relative sensitivity to the pituitary growth-promoting actions of estrogens is highly strain specific. This allows genetics-based approaches to be used to address the molecular mechanisms through which estrogens stimulate lactotroph proliferation and induce pituitary tumor development. In the present study we have examined the ability of diethylstilbestrol (DES) to induce pituitary growth in the genetically related AxC-Irish (ACI) and Copenhagen (COP) strains and their derived F1, F2, and backcross progeny. The data presented herein indicate that the anterior pituitary gland of the ACI strain displays approximately a 2-fold greater growth response to administered DES than does the pituitary gland of the COP strain. The average pituitary weight in male ACI rats was increased from 9.2 +/- 0.2 mg (mean +/- SD in untreated rats to 63.7 +/- 12.6 mg in rats treated with DES for 12 weeks, whereas in male COP rats, DES increased pituitary weight from 12.7 +/- 0.9 to 38.1 +/- 8.2 mg. The ACI phenotype was inherited in the F1, F2, and backcross progeny of an ACI x COP intercross as a dominant genetic trait, and the approximately 30 mg of additional pituitary growth displayed by the DES-treated ACI rat, relative to that of the treated COP rat, appeared to result from the actions of a single locus. Moreover, in F1 progeny from an ACI x Brown Norway intercross, the ACI phenotype was inherited as a dominant or incompletely dominant genetic trait. These data, when compared with findings of previous studies using the Fischer 344 rat strain, provide the first indication that distinct genetic pathways contribute to regulation of estrogen-induced pituitary growth and induction of PRL-producing pituitary tumors in the ACI and F344 rat strains.

Alleles↗

Familial central precocious puberty suggests autosomal dominant inheritance.

The prevalence of precocious puberty is higher in certain ethnic groups, and some cases may be familial. The aim of this study was to investigate the mode of inheritance of familial precocious puberty and to identify characteristics that distinguish familial from isolated precocious puberty. Of the 453 children referred to our center for suspected precocious puberty between January 1, 1997, and December 31, 2000, 156 (147 girls and 9 boys) were found to have idiopathic central precocious puberty, which was familial in 43 (42 girls and 1 boy) (27.5%). Data of the familial and sporadic cases were compared. The familial group was characterized by a significantly lower maternal age at menarche than the sporadic group (mean, 11.47 +/- 1.96 vs. 12.66 +/- 1.18 yr; P = 0.0001) and more advanced puberty at admission (Tanner stage 2, 56.5% vs. 78.1%; P = 0.006). Segregation analysis was used to study the mode of inheritance. The segregation ratio for precocious puberty was 0.38 (0.45 after exclusion of young siblings) assuming incomplete penetrance and 0.58 (0.65 after exclusion of young siblings) assuming complete ascertainment. These results suggest autosomal dominant transmission with incomplete, sex-dependent penetrance.

Adult↗

A new inherited variant of the 3 beta-hydroxysteroid dehydrogenase-isomerase deficiency syndrome: evidence for the existence of two isoenzymes.

The clinical and endocrine features of a unique form of adrenal insufficiency secondary to an inherited deficiency of 3 beta-hydroxysteroid dehydrogenase-isomerase (3-HSD) were studied. The propositus was a 19-yr-old man with a history of repeated episodes of acute adrenal crisis. Family study disclosed that a 6-yr-old female sibling also was affected, and a third sibling had died during the course of an adrenal crisis. The diagnosis of adrenal insufficiency was established on the basis of extremely low serum cortisol levels and urinary 17-hydroxycorticosteroid excretion with concomitantly elevated serum ACTH levels and lack of cortisol response to ACTH administration. Impairment of C-21 steroid 3-HSD activity was strongly suggested by persistency elevated serum 17-hydroxypregnenolone to 17-hydroxyprogesterone and pregnenolone to progesterone ratios, their significant increase after ACTH administration, and their return to normal during cortisol therapy in both patients. Nevertheless, the serum dehydroepiandrosterone to androstenedione ratio, both basally and after ACTH and/or hCG stimulation, was normal. These findings coupled with the normal phenotypic development and onset of puberty in the two patients indicated intact C-19 steroid 3-HSD activity. The overall results indicate an inherited impairment of 3-HSD activity confined only to C-21 steroid substrates and, thus, suggest the existence of at least two 3-HSD isoenzymes under independent genetic regulation.

3-Hydroxysteroid Dehydrogenases↗

Inherited heat-stable variant thyroxine-binding globulin (TBG-Chicago).

The five known types of inherited variant T4-binding globulin (TBG) have in common increased sensitivity to heat denaturation compared to the common type TBG (TBG-C). In the course of studies to screen for and characterize variant TBGs in population groups, we detected a unique TBG with marked resistance to heat denaturation. The propositus was a 22-year-old black man without personal or family history of thyroid disease. His native TBG (nTBG) in serum had a t1/2 of denaturation at 56 C of 90 min compared to a mean value of 6.8 +/- 1.1 (+/- SD) min for TBG-C. This variant TBG, termed TBG-Chicago, was also resistant to acid denaturation, but was indistinguishable from TBG-C in terms of immunoreactivity, microheterogeneity on isoelectric focusing, and affinity for T4. It had a single T4-binding site and a normal concentration in serum associated with iodothyronine levels within the normal range. The mode of inheritance of TBG-Chicago appears to be X-chromosome linked. The mother of the propositus was heterozygous; her serum contained approximately 40% TBG-Chicago and 60% of another variant TBG common in blacks, TBG-S. The father had TBG-C, a trait that was not transmitted to his son. The exact nature of this variant TBG is not known. It most likely represents a mutation in the polypeptide chain of the molecule with formation of stronger intramolecular bonds.

Adult↗

Pseudohypoaldosteronism in eight families: different forms of inheritance are evidence for various genetic defects.

Pseudohypoaldosteronism is a rare hereditary disorder presenting in early infancy with renal salt loss leading to hyponatremia and hyperkalemia despite high levels of plasma aldosterone. The patients are insensitive to mineralocorticoids; however, sodium supplementation is able to correct electrolyte abnormalities. Absent or greatly diminished type I aldosterone receptors in peripheral mononuclear leucocytes have been recently demonstrated and explain the lack of response to mineralocorticoids. We have studied the mode of inheritance in eight families with a total of nine patients. There was evidence for an autosomal recessive form of inheritance in four families, while the other four families appeared to have an autosomal dominant mode of transmission. In three families the autosomal recessive form was characterized by normal receptor as well as hormone data in both parents, while in one family receptor levels in both parents were greatly reduced, but hormone levels were normal. In the four families with an autosomal dominant mode of transmission there was always one parent with reduced receptor binding in peripheral mononuclear leucocytes and elevated serum hormone levels. These parents were entirely asymptomatic. In an extended family we were able to study an aunt and her newborn daughter, who were both also biochemically affected but clinically asymptomatic. It, therefore, appears that this dual pattern of genetic transmission may indicate differing genetic defects which cause the same clinical picture of pseudohypoaldosteronism.

Adolescent↗

C19 and C21 5 beta/5 alpha metabolite ratios in subjects treated with the 5 alpha-reductase inhibitor finasteride: comparison of male pseudohermaphrodites with inherited 5 alpha-reductase deficiency.

Male subjects administered the 5 alpha-reductase inhibitor finasteride were studied to determine its effect on C19 and C21 5 alpha-metabolism. Plasma testosterone (T) and 5 alpha-dihydrotestosterone (DHT) were measured and T/DHT ratios determined at doses of 0.2-80 mg. Urinary etiocholanolone (5 beta)/androsterone (5 alpha) ratios and 5 beta/5 alpha metabolite ratios of cortisol, 11 beta-hydroxyandrostenedione, and corticosterone were also measured. The steroid profile was compared to male pseudohermaphrodites with inherited 5 alpha-reductase deficiency who have a global defect in C19 and C21 5 alpha-metabolism. The mean plasma DHT levels were decreased at all doses, resulting in elevated T/DHT ratios. The mean urinary etiocholanolone/androsterone, 11 beta-hydroxyetiocholanolone/11 beta-hydroxyandrosterone, tetrahydrocortisol/allotetrahydrocortisol, and tetrahydrocorticosterone/allotetrahydrocorticosterone ratios were elevated compared to pretreatment levels and placebo control values. The mean ratios appeared to be dose dependent for plasma T/DHT, urinary etiocholanolone/androsterone tetrahydrocorticosterone/allotetrahydrocorticosterone ratios. The mean 11 beta-hydroxyetiocholanolone-hydroxyandrosterone ratio was maximally elevated at the lowest doses. The results indicate that finasteride has a broad steroid spectrum inhibiting C19 and C21 5 alpha-steroid metabolism and affecting hepatic and peripheral 5 alpha-metabolism. These results suggest that a single gene codes for a single 5 alpha-reductase enzyme with affinity for multiple steroid substrates. The steroid profile is strikingly similar to that of male pseudohermaphrodites with inherited 5 alpha-reductase deficiency.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

Recessive inheritance of thyroid hormone resistance caused by complete deletion of the protein-coding region of the thyroid hormone receptor-beta gene.

Generalized resistance to thyroid hormone is a syndrome of reduced responsiveness of target tissues to thyroid hormone. The determination of amino acid sequences of the human thyroid receptor-beta (hTR beta), deduced from cDNA sequencing, has enabled evaluation of the genetic basis for this syndrome. Distinct point mutations in the ligand-binding domain of hTR beta have been identified in affected members of unrelated families, producing single amino acid substitutions that result in products with decreased or no hormone-binding activity. Inheritance in these families was autosomal dominant. We now report the molecular basis of generalized resistance to thyroid hormone in a consanguineous family unique for its autosomal recessive mode of inheritance. Deletion of the entire coding region of both hTR beta alleles in homozygous affected members of the family was demonstrated by the failure to amplify the coding exons 3-8 by the polymerase chain reaction using primers specific for flanking intronic sequences and by the demonstration of the presence of only two noncoding exons in Southern blots hybridized with exon-specific probes. As expected, obligate heterozygotes were phenotypically normal, since, in contrast to alleles with point mutations, the deleted allele could not act in a dominant negative fashion. Survival and maintenance of a euthyroid state are presumably mediated through expression of the hTR alpha gene, present in affected subjects, and the maintenance of high thyroid hormone levels. Furthermore, the clinical manifestations were relatively more mild that those observed in a homozygous patient with a single amino acid deletion in the hTR beta gene.

Amino Acid Sequence↗

Dominant inheritance of resistance to thyroid hormone not linked to defects in the thyroid hormone receptor alpha or beta genes may be due to a defective cofactor.

Resistance to thyroid hormone (RTH) is an inherited syndrome of reduced tissue responsiveness to thyroid hormone. To date, all individuals expressing the RTH phenotype have been found to harbor mutations in the thyroid hormone receptor beta (TR beta) gene that impair T3-mediated function. We describe a unique family in which the dominantly inherited RTH is not associated with abnormalities in the TR beta or TR alpha genes, as determined by gene sequencing and linkage analysis. However, affected family members manifest a severe form of RTH, with reduced responses of thyrotrophs and peripheral tissues requiring 8- to 10-fold the normal replacement doses of L-T4 and L-T3. No other endocrine abnormalities were detected. The defect developed de novo in the proposita and was transmitted to her two children of unrelated fathers. As cultured fibroblasts from the proposita responded poorly to T3 despite a normal concentration of TR, other abnormalities in the mediation of T3 action were sought. Nucleotide sequences of the TSH beta promoter, containing thyroid hormone response elements, and TR-interacting protein 1 were normal. Nuclear extracts (NE) of cultured skin fibroblasts from affected individuals of this family were tested for their interaction with normal TR beta and thyroid hormone response elements by the electrophoretic mobility shift assay. NE from the proposita showed a strong additional band compared to NEs from normal individuals and patients with RTH caused by TR beta mutations or deletion. Far Western analysis of NE from the affected daughter hybridized with labeled TR beta demonstrated an additional band that was not seen in NEs from a normal control or patients with TR beta gene defects. It is concluded that the etiology of RTH is not confined to abnormalities in the TR beta gene. An abnormal cofactor with a specific function in the regulation of thyroid hormone action is probably involved in the expression of the RTH phenotype in this family.

Child, Preschool↗

Several mutations in the melanocortin-4 receptor gene including a nonsense and a frameshift mutation associated with dominantly inherited obesity in humans.

The melanocortin-4 receptor gene (MC4-R) has been implicated in weight regulation. Recently, two independent groups reported frameshift mutations associated with a dominant form of obesity (1, 2). We screened the coding region of the MC4-R in 306 extremely obese children and adolescents (mean body mass index: BMI 34.4 +/- 6.6 kg/m2), 25 healthy underweight students (mean BMI 17.1 +/- 0.8 kg/m2), 52 normal weight individuals (mean BMI 22.0 +/- 1.0 kg/m2), 51 inpatients with anorexia nervosa (AN, DSM IV criteria, mean BMI 14.3 +/- 1.5 kg/m2) and 27 patients with bulimia nervosa (BN, DSM IV criteria, mean BMI 21.7 +/- 5.8 kg/m2) by single strand conformation polymorphism analysis (SSCP). Several mutations were identified, including the frameshift mutation described (1). The mutations were as follows: a) The deletion of 4 bp (delta of CTCT at codon 211) results in a frameshift, thus rendering a truncated protein. This mutation has been assumed to be associated with dominantly-inherited morbid obesity in humans (1). Both the index patient (BMI 42.06 kg/m2, height 171 cm, age 19.6 years) and her mother (BMI 37.55 kg/m2, height 164 cm, age 42.5 years) were heterozygous for the deletion. b) A nonsense mutation at position 35 of the MC4-R was detected in two obese probands (BMI 31.29 kg/m2 and BMI 45.91 kg/m2). This mutation leads to a truncated protein that encompasses the N-terminal extracellular domain. Both carriers additionally showed (c) a missense mutation (Asp-37-Val). In both of these cases Tyr-35-Stop and Asp-37-Val were maternally transmitted, thus these variations form a haplotype. d) e) A male obese proband harbored two missense mutations (Ser-30-Phe, Gly-252-Ser). f)-i) Four different missense mutations (Pro-78-Leu, Thr-112-Met, Arg-165-Trp, Ile-317-Thr) were detected in four different male probands, respectively. All of these mutations (a to i) were found solely in extremely obese individuals whose BMIs were all above the 99th percentile. j) A silent mutation (C-579-T, Val-193-Val) was detected in a male underweight individual. k) A previously described polymorphism (Val-103-Ile; 3) was detected with similar frequencies in all different study groups. 1) We identified a novel polymorphism (Ile-251-Leu) with similar allele frequencies in all groups under study. In conclusion, our data indicate that mutations in the MC4-R are not uncommon. Whereas our data support the evidence for dominantly inherited obesity as revealed by the three obese probands with haplo-insufficiency, the functional significance of the missense mutations remains to be determined.

Adolescent↗

Prevalence, phenotypic spectrum, and modes of inheritance of gonadotropin-releasing hormone receptor mutations in idiopathic hypogonadotropic hypogonadism.

Mutations in the GnRH receptor (GNRHR) have been described as a cause of reproductive failure in a subset of patients with idiopathic hypogonadotropic hypogonadism (IHH). Given the apparent rarity of these mutations, we set out to determine the frequency and distribution of GNRHR mutations in a heterogeneous population of patients with IHH who were well characterized with respect to diagnosis, phenotype, and mode of inheritance and to define their distribution within the receptor protein. One hundred and eight probands with IHH were screened for mutations in the coding sequence of GNRHR. Forty-eight of the 108 patients had a normal sense of smell, whereas the remaining 60 had anosmia or hyposmia (Kallmann syndrome). Exon segments in the GNRHR were screened for mutations using temperature gradient gel electrophoresis, and all mutations were confirmed by direct sequencing. Five unrelated probands (3 men and 2 women), all normosmic, were documented to have changes in the coding sequence of the GNRHR. Two of these probands were from a subgroup of 5 kindreds consistent with a recessive mode of inheritance, establishing a GNRHR mutation frequency of 2 of 5 (40%) in patients with normosmic, autosomal recessive IHH. The remaining 3 probands with GNRHR mutations were from a subgroup of 18 patients without evidence of familial involvement, indicating a prevalence of 3 of 18 (16.7%) in patients with sporadic IHH and a normal sense of smell. Among the five individuals bearing GNRHR mutations, a broad spectrum of phenotypes was noted, including testicular sizes in the male that varied from prepubertal to the normal adult male range. Three probands had compound heterozygous mutations, and two had homozygous mutations. Of the eight DNA sequence changes identified, four were novel: Thr(32)Ile, Cys(200)Tyr, Leu(266)Arg, and Cys(279)TYR: COS-7 cells transiently transfected with complementary DNAs encoding the human GNRHR containing each of these four novel mutations failed to respond to GnRH agonist stimulation. We conclude that 1) the spectrum of phenotypes in patients with GNRHR mutations is much broader than originally anticipated; 2) the frequency of GNRHR mutations may be more common than previously appreciated in familial cases of normosmic IHH and infrequent in sporadic cases; and 3) functional mutations of the GNRHR are distributed widely throughout the protein.

Amino Acid Sequence↗

Temporal bone histopathology in dominantly inherited audiovestibular syndrome.

OBJECTIVE: To describe the clinical and pathologic features of a new dominantly inherited audiovestibular syndrome. METHODS: History, examination, and audiometric testing in the proband, brother, and son; quantitative rotational testing in the proband and son; histopathology of the cochlea and vestibular labyrinth in the proband; sequencing candidate genes COCH and MYO7A in the brother and son. RESULTS: Affected family members developed slowly progressive hearing loss beginning in their late 30s and progressive imbalance in their early 70s. Three of four affected had brief (minutes) episodes of vertigo typically occurring a few times per year. Auditory and vestibular function testing documented a slowly progressive loss of auditory and vestibular function. Postmortem examination showed a loss of hair cells in the cochlea and vestibular receptor organs. There were no cellular infiltrates or acidophilic deposits. No mutations were found in the COCH or MYO7A genes. CONCLUSIONS: This dominantly inherited audiovestibular syndrome results in a selective loss of hair cells in the auditory and vestibular end organs. Finding the causative gene could have important implications for understanding the pathophysiology of presbycusis and dysequilibrium of aging.

Adult↗

Neurogenic arthropathy and recurring fractures with subclinical inherited neuropathy.

Some patients with radiologic findings of neurogenic arthropathy or multiple fractures do not exhibit overt neurologic signs. Results of nerve conduction velocity, computer-assisted sensory examination, periosteal nociception, and morphometric and graded teased-fiber evaluation of cutaneous nerves allowed us to recognize a mild neuropathic abnormality. Neurogenic arthropathy and subclinical neuropathy were also found in relatives. In three kinships, the underlying disorder was probably hereditary sensory neuropathy type 1 and in several others, it was recessively inherited sensory neuropathy. These arthropathies were often painful, and overt loss of superficial and deep pain sensation was not a prominent or necessary condition. An interplay of multiple factors including insensitivity, trauma, obesity, activity, abuse, personality, mental subnormality, and metabolic joint and bone disease are probably involved in the development of the bony lesions and thus provide further evidence that environmental factors affect expression of human mutant genes for inherited neuropathy.

Adolescent↗

Hereditary motor-sensory neuropathy (HMSN): possible X-linked dominant inheritance.

The inheritance of the hereditary motor and sensory neuropathies (HMSN) is usually autosomal dominant. We studied a kinship with a pattern of X-linked dominant inheritance. The phenotype was similar to HMSN of the "intermediate" type. Men were more severely affected than women, and hypertrophic nerves were not found. Nerve conduction was very slow in men, but it was mildly slow or normal in women. No male-to-male transmission was found in six generations.

Adolescent↗

Complex segregation analysis of dystonia pedigrees suggests autosomal dominant inheritance.

We reanalyzed data collected in a large family study of idiopathic torsion dystonia (ITD) using complex segregation analysis. Previous investigators concluded that the mode of inheritance of ITD differed between Jews and non-Jews. The results from our segregation analyses suggest that ITD is inherited as an autosomal dominant trait, with low penetrance (0.255 to 0.333), regardless of ethnic origin. The low penetrance implies that, although a major gene is important for the expression of the illness, other factors also contribute to the manifestations of ITD.

Dystonia↗

Increased risk of dementia in mothers of Alzheimer's disease cases: evidence for maternal inheritance.

This study tests the hypothesis of maternal inheritance of AD in families of 118 subjects with this disorder enrolled in The Consortium to Establish a Registry for Alzheimer's Disease (CERAD). The parental generation included 24 subjects with dementia. Using the Cox proportional hazards model, we found the age-adjusted mother-to-father relative risk to be 2.8 (95% CI, 1.1 to 7.7). Among a subset of 10 families with one affected parent and at least two affected siblings, the ratio of affected mothers-to-fathers was 9:1. These findings support recent studies that found a high mother-to-father ratio among affected parents of subjects with AD. Together, these results suggest maternal inheritance of AD and are consistent with several hypotheses regarding the genetic nature of AD.

Aged↗

Familial idiopathic brain calcification with autosomal dominant inheritance.

We report a family with brain calcification, predominantly in the basal ganglia, and no evident cause such as abnormal calcium or phosphorus metabolism. The proband, a 48-year-old man, had intellectual decline, parkinsonism, and mild cerebellar ataxia. He had bilateral and symmetric calcification of the basal ganglia, thalamus, dentate nucleus, cerebral cortex, subcortical white matter, and hippocampus on CT. Calcified areas showed low- or high-intensity signals on MRI T1-weighted images, and low-intensity signals on MRI T2-weighted images. Two sons and both parents, all asymptomatic, also showed calcification of the basal ganglia, suggesting an autosomal dominant inheritance. Familial idiopathic brain calcification is a rare disorder with less than 20 previously reported families. Twelve families with autosomal dominant inheritance showed a relatively homogeneous clinical picture, which may represent a distinct clinical entity. Mental deterioration, parkinsonism, and cerebellar ataxia appear in adult life and progress gradually. CT imaging, rather than MRI, is a simple and useful means to screen family members for this condition.

Brain Diseases↗

Pseudo-dominant inheritance and exon 2 triplication in a family with parkin gene mutations.

The authors report an Italian family with pseudo-dominant inheritance of parkinsonism attributable to parkin gene mutations. The father (disease onset at age 57 years) was homozygous for a triplication of exon 2 that is so far unique. The unaffected mother was heterozygous for deletions of exons 3 and 4, and the son (onset at age 31 years) was a compound heterozygote carrying both mutations. Thus, pseudo-dominant inheritance of parkin gene mutations has to be considered in early-onset parkinsonism, and sensitive screening techniques, such as semiquantitative multiplex PCR, should be applied.

Adult↗