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Congenital insensitivity to pain with anhidrosis (CIPA): novel mutations of the TRKA (NTRK1) gene, a putative uniparental disomy, and a linkage of the mutant TRKA and PKLR genes in a family with CIPA and pyruvate kinase deficiency.

Congenital insensitivity to pain with anhidrosis is an autosomal recessive hereditary disorder characterized by recurrent episodic fever, anhidrosis (inability to sweat), absence of reaction to noxious stimuli, self-mutilating behavior, and mental retardation. The human TRKA gene (NTRK1), located on chromosome 1q21-q22 encodes the receptor tyrosine kinase for nerve growth factor. We reported that TRKA is the gene responsible for CIPA and we developed a comprehensive strategy to screen for TRKA mutations and polymorphisms, as based on the gene's structure and organization. Here we report eight novel mutations detected as either a homozygous or heterozygous state in nine CIPA families from five countries. Mendelian inheritance of the mutations was confirmed in seven families for which samples from either parent were available. However, non-mendelian inheritance seems likely for the family when only samples from the mother and siblings, (but not from the father) were available. A paternal uniparental disomy for chromosome 1 is likely to be the cause of reduction to homozygosity of the TRKA gene mutation in this family. Interestingly, a Hispanic patient from the USA has two autosomal genetic disorders, CIPA and pyruvate kinase deficiency, whose genetic loci are both mapped to a closely linked chromosomal region. A splice mutation and a missense mutation were detected in the TRKA and PKLR genes from the homozygous proband, respectively. Thus, concomitant occurrence of two disorders is ascribed to a combination of two separate mutant genes, not a contiguous gene syndrome. This finding suggests a mechanism responsible for two autosomal genetic disorders in one patient. All these data further support findings that TRKA defects can cause CIPA in various ethnic groups. This will aid in diagnosis and genetic counseling of this painless but severe genetic disorder.

Adolescent↗

Molecular basis of congenital insensitivity to pain with anhidrosis (CIPA): mutations and polymorphisms in TRKA (NTRK1) gene encoding the receptor tyrosine kinase for nerve growth factor.

Congenital insensitivity to pain with anhidrosis (CIPA), also referred to as hereditary sensory and autonomic neuropathy type IV (HSAN-IV), is an autosomal recessive hereditary disorder characterized by recurrent episodic fever, anhidrosis (inability to sweat), absence of reaction to noxious stimuli, self-mutilating behavior, and mental retardation. The TRKA (NTRK1) gene located on chromosome 1 (1q21-q22), consists of 17 exons and spans at least 23 kb. TRKA encodes the receptor tyrosine kinase (RTK) for nerve growth factor (NGF) and is the gene responsible for CIPA. Defects in NGF signal transduction at the TRKA receptor lead to failure to support survival of sympathetic ganglion neurons and nociceptive sensory neurons derived from the neural crest. Thirty-seven different TRKA mutations, identified in patients in various countries, including nine frameshift, seven nonsense, seven splice, and 14 missense mutations, are distributed in an extracellular domain involved in NGF binding, as well as in the intracellular signal-transduction domain. Extensive analysis of CIPA mutations and associated intragenic polymorphisms should facilitate detection of CIPA mutations and aid in the diagnosis and genetic counseling of this painless but severe genetic disorder with devastating complications. In addition, naturally occurring TRKA missense mutations with loss of function provide considerable insight into the structure-function relationship in the RTK family. Further, molecular pathology of CIPA would provide unique opportunities to explore critical roles of the autonomic sympathetic nervous system as well as peripheral sensory nervous system that transmit noxious stimuli in humans.

Hereditary Sensory and Autonomic Neuropathies↗

Regeneration of primary sensory axons into the adult rat spinal cord via a peripheral nerve graft bridging the lumbar dorsal roots to the dorsal column.

This study investigated the feasibility of using a peripheral nerve autograft (NAG) to promote and guide regeneration of sensory axons from the caudal lumbar dorsal roots to the rostral dorsal column following a lower thoracic cordotomy in adult rats. After a left hemicordotomy at the T13 vertebra level and ipsilateral L3 and L4 rhizotomies, a peripheral NAG (peroneal nerve) was connected to the distal roots stumps, then implanted into the left dorsal column 10 mm rostral to hemicordotomy site (n = 12). After surgery, all animals of the experimental group experienced complete anesthesia in their left hindlimb. Three months later, a slight response to nociceptive stimulation reappeared in L3 and/or L4 dermatomes in 6 of the 12 experimental animals. None of these animals exhibited self-mutilation. Nine months after surgery, we performed retrograde tracing studies by injecting horseradish peroxidase (HRP) into the left dorsal column 30 mm rostral to the NAG implantation site. In eight animals, we found HRP-stained neurons in the left L3 and/or L4 dorsal root ganglia (DRG). The mean number of HRP-stained neurons per DRG was 71 +/- 92 (range 2-259). In control groups, no HRP-stained neurons were found in L3 or L4 DRG. Histological analysis of the NAG showed evidence of axonal regeneration in all 8 animals with positive retrograde labeling of DRG neurons. However, we did not find a statistical correlation between the number of HRP-stained neurons and the degree of sensory recovery. This study demonstrates that an NAG joining dorsal roots to the dorsal column, thus shunting the original CNS-PNS junction, can support regeneration of central axons from DRG primary sensory neurons into the dorsal column over distances of at least 30 mm despite the inhibitory influence of the CNS white matter.

Age Factors↗

A review of the molecular basis of hypoxanthine-guanine phosphoribosyltransferase (HPRT) deficiency.

Hypoxanthine-guanine phosphoribosyltransferase (HPRT, EC 2.4.2.8) is a purine salvage enzyme that catalyses the conversion of hypoxanthine and guanine to their respective mononucleotides. Partial deficiency of this enzyme can result in the overproduction of uric acid leading to a severe form of gout, whilst a virtual absence of HPRT activity causes the Lesch-Nyhan syndrome which is characterised by hyperuricaemia, mental retardation, choreoathetosis and compulsive self-mutilation. The HPRT-encoding gene is located on the X chromosome in the region q26-q27 and consists of nine exons and eight introns totalling 57 kb. This gene is transcribed to produce an mRNA of 1.6 kb, which contains a protein encoding region of 654 nucleotides. With the advent of increasingly refined techniques of molecular biology, it has been possible to study the HPRT gene of individuals with a deficiency in HPRT activity to determine the genetic basis of the enzyme deficiency. Many different mutations throughout the coding region have been described, but in the absence of precise information on the three-dimensional structure of the HPRT protein, it remains difficult to determine any consistent correlation between the structure and function of the enzyme.

Base Sequence↗

Epilepsy as the presenting feature of neuroacanthocytosis in siblings.

A brother and sister developed epilepsy at the age of 28 and 30 years respectively, and were subsequently found to have neuroacanthocytosis. The brother developed tics, and a tendency to self-mutilate a year later, but his sister had not developed any movement disorder in the 5 years since the onset of epilepsy. In families with epilepsy, the diagnosis of neuroacanthocytosis should be considered, particularly when one family member has tics or other involuntary movements.

Adult↗

When and how does one search for inborn errors of purine and pyrimidine metabolism?

Disorders in purine and pyrimidine metabolism may be difficult to recognize because their recent description means many are little known. They cover a broad spectrum of illnesses, can present from birth to the 80s, have multiple symptoms and lead to early death. Recognition of new disorders requires skill and serendipity. Often parents of affected children provide valuable clues. These disorders should be suspected, particularly where the history involves siblings, in anaemia, susceptibility to infection, or neurological deficits including autism, delayed development, epilepsy, self-mutilation, muscle weakness and - unusual in children and adolescents - gout. Some patients present with kidney stones, renal failure, alone or with the above, or as an intolerance/sensitivity to therapy (fluorouracil or azathioprine immunosuppression). These disorders can be detected from the abnormal metabolites in body fluids and/or altered enzyme activity. Abnormal cellular nucleotides or renal clearance may sometimes provide the only clue. Diagnosis can be difficult because of genetic heterogeneity and interference by blood transfusion, diet or drugs. Tests incorporating enzyme peak shifts and online diode-array detection are essential. Collaborative research is needed to improve the diagnosis and understanding of the metabolic basis for these sometimes devastating disorders and to apply this knowledge to the more common killers of mankind.

Humans↗

Effects of acute dopamine depletion on responsiveness to D1 and D2 receptor agonists in infant and weanling rat pups.

The behavioral responses to separate and combined administration of the D1 agonist SKF-38393 and the D2 agonist quinpirole following acute dopamine (DA) depletion via alpha-methyl-p-tyrosine (AMPT) or AMPT/reserpine were examined in infant (10-day-old) and weanling (21-day-old) rat pups. At both ages, AMPT pretreatment generally had little impact on D1- or D2-agonist-induced responding, whereas the greater DA depletion observed following AMPT/reserpine pretreatment was generally associated with suppression of both D1 and D2-agonist-typical responding. Thus, whereas in adult animals some degree of D1 receptor activation by endogenous dopamine appears to be necessary for D2 responding but not vice versa (e.g. White et al. 1988), in young animals there appears to be a reciprocal co-dependence of these two receptor subtypes, with extensive DA depletion suppressing responding to both agonists when administered separately. At 10 days of age, some D1 and D2 agonist-induced behaviors that were previously blocked by AMPT/reserpine were reinstated following combined administration of both agonists. In contrast, no clear evidence for reinstatement was seen following administration of the combined agonists to AMPT/reserpine-pretreated weanlings, perhaps due to the induction of potential competing behaviors. Whereas DA depletion blocked many D1- and D2-induced behaviors, such depletion conversely promoted the expression in agonist-treated animals of a number of behaviors that were not normally induced by the agonists in non-depleted animals. These behaviors typically involved an oral component and included grooming and mouthing following SKF-38393 in depleted 10-day-old pups, mouthing following administration of either agonist to depleted weanlings, and probing and intense self-mutilation (forepaw and tongue biting) following the combined agonists in depleted weanlings. This rapid induction of potentiated agonist responsiveness following acute DA depletion early in life may have significant implications with regard to animal models for the developmental disorder of Lesch-Nyhan syndrome.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Hypoxanthine-guanine phosphoribosyltransferase variants: correlation of clinical phenotype with enzyme activity.

A deficiency of the enzyme hypoxanthine-guanine phosphoribosyltransferase(HGPRT) is associated with a varying clinical picture which may include hyperuricaemia, neurological abnormalities and bizarre self-mutilating behaviour. Due to technical problems with the usual in vitro enzyme assays, it has not been possible to establish a correlation between the degree of the enzyme deficiency and the severity of the clinical manifestations. In this study, the HGPRT activity of 12 patients with various clinical features was measured by quantitative analysis of the incorporation of radioactive precursors into purine compounds in intact fibroblasts. The results demonstrate that a correlation between the severity of the clinical symptoms and the degree of the enzyme deficiency as measured in intact fibroblasts does in fact exist.

Animals↗

Effect of cold stress on rapeseed oil fed rats.

No mortality was observed in 6 week old male Sprague-Dawley rats subjected to cold at 4 C for 3 weeks and fed either a control diet (Chow) or a semisynthetic diet containing 20% by wt rapeseed oil high in erucic acid (23.6%). All rats fed the Chow diet and 17 of 20 rats fed the rapeseed oil-containing diet survived 4 weeks in the same environment. Three rats on the latter diet died of self-mutilation. Marked myocardial lipidosis as well as a large acumulation of 20:1 and 22:1 was observed in the hearts of rats fed the rapeseed oil-containing diet. Five of 20 rats on the Chow diet and 2 of 20 rats on the rapeseed oil-containing diet had focal necrotic areas in the myocardium.

Animals↗

Congenital insensitivity of pain with anhidrosis.

Congenital insensitivity to pain with anhidrosis is an autosomal recessive disorder included in a group of rare diseases termed as hereditary sensory-motor neuropathies. The diagnosis is made usually in early childhood period as most of the children present with recurrent unexplained hyperpyrexia. This case report is of a neonate who presented with tachypnea and fever on second day of life being treated for clinical sepsis and had no response to antibiotics. On pricking for i.v. canulation there was no cry, and temperature of the baby returned to normal on removing the covering blankets. Diagnosis was established by family history, skin and sural nerve biopsy. Early diagnosis is important for prevention of injury, self mutilation and growth retardation. This case report points to the question that should assessment of pain sensation be a part of routine examination of newborn.

Biopsy↗

Congenital indifference to pain.

Congenital analgesia can vary from simple analgesia without any systemic dysfunction to more serious conditions associated with peripheral neuropathy, self-mutilation, and mental retardation. Prevention of injury is important for normal growth of the child.

Humans↗

[Disordered behavioral control in psychiatric illnesses. Neurophysiological aspects of impulsive behavior].

OBJECTIVE: Dysfunction of behavioral control represents a central component of many psychiatric disorders and may be connected with self-mutilating and antisocial behavior. However, only a few studies have investigated objective assessment and quantification of impulsive behavior, which is relevant for psychiatric practice and research. Because new techniques enable objective assessment of behavior generation and execution, the current knowledge about neurophysiological aspects of behavioral control is summarized. METHOD: The contemporary literature on neuronal mechanisms of initiation and execution of behavior and movements and new neurophysiological methods and findings are discussed in respect to their application in psychiatry. RESULTS: Behavior, defined as movements of a body in time and space, is the result of cortical and subcortical processes. These consist of two general components: (1) perception and selection of a stimulus and (2) execution of a movement, including decision and planning phases. Planning and execution, modulated by cognition and emotions, are dependent on the balance of inhibitory and excitatory aspects of behavior control. Combined detection of electrical brain activity and kinematic analysis of peripheral movements enables the analysis of control mechanisms. CONCLUSION: Impulsiveness and inhibition of behavior depend on neuronal control mechanisms which can be analyzed by neurophysiological methods. Objective assessment of impulsive behavior related to psychiatric disturbances including eating disorders, substance abuse, and personality disorders may clarify underlying neurobiological mechanisms and enable rational pharmaco- and psychotherapeutic interventions.

Brain↗

Congenital insensitivity to pain with anhidrosis (CIPA): the spectrum of radiological findings.

BACKGROUND: Congenital insensitivity to pain with anhidrosis (CIPA) is an exceedingly rare, hereditary, sensory autonomic neuropathy (HSAN). AIM: To evaluate the various skeletal manifestations and cranial CT features in children affected by CIPA. MATERIALS AND METHODS: In the semidesert area of the Negev, the Bedouin tribes constitute a closed society where consanguineous marriages are the custom. This has resulted in a group of 20 children being affected by this rare autosomal recessive HSAN. The skeletal surveys and CT scans of these 20 Bedouin patients, 12 girls and 8 boys, ages ranging between 1 month and 8 years, were retrospectively analysed. Cranial CT scans were performed in ten children because of neonatal hypotonia and psychomotor retardation. The skeletal findings were classified as follows: fractures, joint deformities, joint dislocations, osteomyelitis, avascular necrosis and acro-osteolysis. RESULTS: All 20 patients had fractures of the extremities and acro-osteolysis of the fingers. Six had joint deformities. Three children had recurrent hip joint dislocations and another three had avascular necrosis. Ten patients presented with osteomyelitis of the limbs, acetabulum and scapula. The cranial CT scans disclosed mild brain volume loss with some ventriculomegaly. CONCLUSIONS: CIPA is a severe autosomal recessive condition that leads to self-mutilation early in life and to fractures, osteomyelitis and limb amputation in older children. Mental retardation is common. Death from hyperpyrexia occurs in almost 20 % of patients in the first 3 years of life.

Arabs↗

Management of penile amputation injuries.

Penile amputation is an uncommon injury resulting from self-mutilation, felonious assault, or accidental trauma. Management requires resuscitation and stabilization of the patient with particular attention to underlying psychiatric illness. Amputated tissue can be preserved under hypothermic conditions in preparation for surgical replantation. Current replantation techniques rely on microsurgical approximation of the dorsal structures and cavernosal arteries with uniformly good results. Phallic replacement may be necessary when the amputated segment is lost. Microsurgical free forearm flap phalloplasty is the current mainstay of penile replacement surgery. Although urethral complications remain problematic, the results continue to be acceptable with regard to appearance and function. A unique subset of patients sustaining amputation injury is children. Both replantation and phallic construction have been successful in children and represent an alternative to gender reassignment.

Adult↗

Mild trigonocephaly and intracranial pressure: report of 56 patients.

INTRODUCTION: We report the surgical results in patients with mild trigonocephaly and clinical symptoms. Since high intracranial pressure (ICP) was noted during surgery in our previous patient series, we began to record intraoperative ICP. The importance of treating mild trigonocephaly with clinical symptoms is stressed. PATIENTS AND METHODS: Fifty-six children (44 boys, 12 girls) in whom ICP was measured were diagnosed with mild trigonocephaly (nonsyndromic type) with symptoms such as language delay, hyperactivity, autistic tendencies, self-mutilation, motor delay, etc. Their ages ranged from 2 to 8 (mean 5.1) years. ICP was measured after a burr hole was made under endotracheal general anesthesia and a sensor was inserted in the right frontal lobe epidurally immediately in front of the right coronal suture. The first recordings were made at around 30 mmHg of PCO(2) as for neuroanesthesia, and the second were at around 40 mmHg of PCO(2) as during natural breathing. We also investigated which factors accounted for the improvement of clinical symptoms. RESULTS: The first ICP records at 29.1 mmHg of PCO(2) indicated a mean ICP of 13.3 mmHg. The second changed to a mean 38.2 mmHg of PCO(2) for an increased mean ICP of 19.8 mmHg. The pulse pressures were a mean 7.1 mmHg in the first recordings and 8.5 mmHg in the second. The mean ICP and pulse pressure were thus high in these children. Clinically, 30 out of 56 patients improved markedly and 22 improved slightly, while 4 did not exhibit any change. Factors contributing to improvement were younger age, relatively higher development quotient, marked digital impressions on skull X-rays, abnormal findings on SPECT, and moderate degree of trigonocephaly. CONCLUSION: Although our patients had mild trigonocephaly, their ICP and pulse pressure were high. Decompressive cranioplasty in cases of mild trigonocephaly is feasible.

Blood Gas Analysis↗

Congenital analgia syndrome.

Hereditary sensory and autonomic neuropathy is a rare syndrome which is seen in early childhood. Five different types have been described. Absence of pain and self-mutilation are characteristic findings of this syndrome. This report describes one female and two male children with the syndrome. The most severe oral consequence of their disorder was damage to the oral tissues and tongue. The primary aim in management was to monitor the eruption of the permanent teeth.

Journal Article↗

Genetics of congenital insensitivity to pain with anhidrosis (CIPA) or hereditary sensory and autonomic neuropathy type IV. Clinical, biological and molecular aspects of mutations in TRKA(NTRK1) gene encoding the receptor tyrosine kinase for nerve growth factor.

Congenital insensitivity to pain with anhidrosis (CIPA) or hereditary sensory and autonomic neuropathy type IV (HSAN-IV) is an autosomal recessive disorder characterized by recurrent episodic fevers, anhidrosis (inability to sweat), absence of reaction to noxious (or painful) stimuli, self-mutilating behavior and mental retardation. The anomalous pain and temperature sensation and anhidrosis in CIPA are due to the absence of afferent neurons activated by tissue-damaging stimuli and a loss of innervation of eccrine sweat glands, respectively. Nerve growth factor (NGF) supports the survival of nociceptive sensory and autonomic sympathetic neurons as well as cholinergic neurons of the basal forebrain. The human TRKA (NTRKI) gene located on chromosome 1 (1q21-q22) encodes a receptor tyrosine kinase (RTK) which is autophosphorylated in response to NGF, thus, activating various pathways of intracellular signal transduction. We earlier identified the genetic basis of CIPA by detecting mutations in TRKA gene of patients. Defects in NGF signal transduction at its receptor lead to failure to survive as various NGF dependent neurons are not maintained, most probably due to apoptosis during development. TRKA mutations are distributed in an extracellular domain involved in NGF binding, as well as in the intracellular signal-transduction domain. Missense mutations with loss of function provide considerable insight into the structure-function relationship in the RTK family. In view of the fact that defects in TRKA cause CIPA, the molecular pathology of CIPA provides unique opportunities to explore critical roles of the NGF-TRKA receptor system. Thus, CIPA can serve as a useful model to determine mechanisms of development and maintenance of NGF-dependent neurons in autonomic, sensory and central nervous systems, as well as the physiology of these neurons in humans.

Animals↗

An OTC deficiency 'phenocopy' in association with Klinefelter syndrome.

Late-onset urea cycle disorder in a 20-month-old boy is unusually associated with Klinefelter syndrome with a 47XXY karyotype. We record the typical clinical and biochemical findings of ornithine transcarbamylase (OTC) deficiency in a young boy with a short history of recurrent vomiting, self mutilating behaviour, lethargy, ataxia and seizures. Laboratory studies showed hyperammonaemia and orotic aciduria, with normal citrulline and other urea cycle amino acids. Unfortunately, a liver biopsy for OTC activity measurement was refused by the parents. A rapid reversal of phenotype was seen on the introduction of a low-protein diet with accompanying benzoate and phenylbutyrate administration. Linkage studies suggested the inheritance of two X chromosomes, which was confirmed by karyotype analysis. Sequencing of all exons and immediate splice site regions revealed no sequence alterations in these sections of the OTC gene. A search for skewing of X-inactivation in the liver was not possible but we did show a random pattern of X-inactivation in leukocytes. The possibility of maternal X chromosome iso-disomy in our patient was discounted by microsatellite analysis, which revealed the inheritance of two independent X chromosomes. Mutation analysis in the OTC gene has shown that approximately 20% of patients with liver biopsy confirmed OTC deficiency do not have mutations in the coding or immediate splice-site sequences of this gene. Their classification as OTC phenocopies remains speculative, awaiting clarification of the underlying DNA alteration. We report on the novel association of OTC deficiency and Klinefelter syndrome with the additional interest of a probable unusual genetic defect underlying the OTC abnormality.

Chromosomes, Human, X↗