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J T Hecht

Publications and source records attributed to J T Hecht.

At least 37 records · Page 2Linked to original sources

Neuroanatomic and neuropsychological outcome in school-age children with achondroplasia.

We previously reported on cognitive and respiratory factors in a series of infants with achondroplasia (ACH). We now present the results of neuropsychological evaluation and magnetic resonance imaging in 16 school-age children with ACH, 7 of whom had been included as infants in our previous report. We examined the neuroanatomic and cognitive status of this sample, as well as the predictive stability of the prior infant assessment. Seventeen normally developing children of average stature and 21 preterm children with arrested (compensated, unshunted) hydrocephalus constituted the comparison groups. Brain volumes of children with ACH were significantly larger than those of the comparison groups. In addition, children with ACH exhibited kinking of the medulla and neuroanatomic abnormalities consistent with arrested hydrocephalus, including enlarged ventricles and hypoplasia of the corpus callosum. Cognitive abilities at school age were average, although mild deficits were seen on visual-spatial tasks, similar to those obtained by the hydrocephalic comparison group. Only gross motor coordination deficits distinguished the ACH group from the hydrocephalic controls. Infant assessment overestimated later school-age IQ scores in those infants with ACH who scored above average. These findings point to generally preserved cognitive skills in selected children with ACH at early school age, although children with ACH should be evaluated individually as they are at risk for cognitive, academic, and motor deficits.

Achondroplasia↗

Genomic characterization of human DSPG3.

DSPG3, the human homolog to chick PG-Lb, is a mejrkp6of the small leucine-rich repeat proteoglycan (SLRP) family, including decorin, biglycan, fibromodulin, and lumican. In contrast to the tissue distribution of the other SLRPs, DSPG3 is predominantly expressed in cartilage. In this study, we have determined that the human DSPG3 gene is composed of seven exons: Exon 2 of DSPG3 includes the start codon, exons 4-7 code for the leucine-rich repeats, exons 3 and 7 contain the potential glycosaminoglycan attachment sites, and exon 7 contains the potential N-glycosylation sites and the stop codon. We have identified two polymorphic variations, an insertion/deletion composed of 19 nucleotides in intron 1 and a tetranucleotide (TATT)n repeat in intron 5. Analysis of 1.6 kb of upstream promoter sequence of DSPG3 reveals three TATA boxes, one of which is 20 nucleotides before the transcription start site. The transcription start site precedes the translation start site by 98 nucleotides. There are 14 potential binding sites for SOX9, a transcription factor present in cartilage, in the promoter, and in the first intron of DSPG3. We have examined the evolution of the SLRP gene family and found that gene products clustered together in the evolutionary tree are encoded by genes with similarities in genomic structure. Hence, it appears that the majority of the introns in the SLRP genes were inserted after the differentiation of the SLRP genes from an ancestral gene that was most likely composed of 2-3 exons.

Amino Acid Sequence↗

Identification of twelve mutations in cartilage oligomeric matrix protein (COMP) in patients with pseudoachondroplasia.

Pseudoachondroplasia (PSACH) is an autosomal dominant dwarfing condition characterized by disproportionate short stature, joint laxity, and early-onset osteoarthrosis. PSACH is caused by mutations in the gene encoding cartilage oligomeric matrix protein (COMP). We are reporting on mutations in COMP in 12 patients with PSACH, including ten novel mutations. Eleven of the mutations are in exons 17A, 17B, and 18A, which encode the calcium-binding domains, and one mutation is in exon 19, which encodes part of the carboxy-terminal globular domain. Two of the mutations identified are the common delGAC(1430-1444) in exon 17B, which accounts for 36% of identified PSACH mutations. This report increases the range of mutations in COMP that cause PSACH and provides additional evidence for the importance of the calcium-binding domains and the globular domain to the function of COMP.

Achondroplasia↗

Characterization of a novel gene disrupted by a balanced chromosomal translocation t(2;19)(q11.2;q13.3) in a family with cleft lip and palate.

Cleft lip with or without cleft palate is a common birth defect that is genetically complex. The nonsyndromic forms have been studied genetically using linkage and candidate-gene association studies with only partial success in defining the loci responsible for orofacial clefting. Loci for nonsyndromic cases have been suggested on 2p13, 4q31, 6p24, 17q21-q24, and 19q13.2. Recently, we identified a family in which cleft lip and palate segregated in two of three generations with a balanced chromosomal translocation t(2;19)(q11. 2;q13.3). We used a positional-cloning strategy to identify a novel gene disrupted by the translocation on chromosome 19. Eight rare (q < 0.01) and nine common (q > 0.01) variants of this gene were detected in the DNA of 74 unrelated cases of cleft lip and/or cleft palate; no variants associated significantly with clefting, suggesting that this gene is not a major contributor to abnormal craniofacial development. This gene, CLPTM1, was ubiquitously expressed on Northern blots containing RNA from adult tissues and in whole-mount in situ hybridization of day 10 to 12 mouse embryos. CLPTM1 encodes a transmembrane protein and has strong homology to two Caenorhabditis elegans genes, suggesting that CLPTM1 may belong to a new gene family.

Alleles↗

Segregation analysis of idiopathic talipes equinovarus in a Texan population.

"Idiopathic" talipes equinovarus (ITEV) is a nonsyndromal congenital anomaly of one or both feet. Casting and surgery are often necessary to obtain correct foot alignment. In spite of treatment, residual deformities of the feet occur and calf muscles may be hypoplastic. The cause of ITEV is unknown but genetic factors have been postulated. Complex segregation analysis was performed on 173 ITEV families including 93 Caucasian and 48 Hispanic families. The recessive mixed model was the best fitting model and no differences were found based on ethnicity. These results confirm previous studies suggesting that there is a genetic component to the development of ITEV.

Clubfoot↗

Genetic epidemiology study of idiopathic talipes equinovarus.

Previous genetic studies of idiopathic talipes equinovarus (ITEV) suggest an environmental and genetic component to the etiology of ITEV. The present study was undertaken to assess the role of causal factors in the development of ITEV. A total of 285 propositi were ascertained, with detailed family history information available in 173 cases and medical records on the remaining 112 propositi. Information was collected on specific prenatal, parental, and demographic factors. No racial heterogeneity was noted among any of the factors. The overall ratio of affected males to females was 2.5:1. The incidence of twinning among all propositi was significantly increased (P=0.006) above the expected population frequency. A family history of ITEV was noted in 24.4% of all propositi studied. These findings, in addition to the detailed analysis of 53 pedigrees with ITEV history, suggest the potential role of a gene or genes operating in high-risk families to produce this foot deformity.

Clubfoot↗

Characterization of cartilage oligomeric matrix protein (COMP) in human normal and pseudoachondroplasia musculoskeletal tissues.

Cartilage oligomeric matrix protein (COMP), the fifth member of the -thrombospondin gene family, is an extracellular matrix calcium-binding protein. The importance of COMP is underscored by the finding that mutations in COMP cause the human dwarfing condition, pseudoachondroplasia (PSACH). Here, we report the results of human tissue distribution and cell secretion studies of human COMP. COMP is expressed and secreted by cultured monolayer chondrocyte, tendon and ligament cells, and COMP secretion is not restricted to a differentiated chondrocyte phenotype. Whereas COMP is retained in the endoplasmic reticulum that accumulates within PSACH chondrocytes in vivo, COMP is not retained intracellularly in the dedifferentiated PSACH chondrocytes in cultures. These results lend further support to the hypothesis that retention of COMP is related to the terminal PSACH chondrocyte phenotype, processing of proteins related to extracellular matrix formation, and maintenance in cartilage.

Achondroplasia↗

Retention of cartilage oligomeric matrix protein (COMP) and cell death in redifferentiated pseudoachondroplasia chondrocytes.

Cartilage oligomeric matrix protein (COMP) is a large extracellular glycoprotein that is found in the territorial matrix surrounding chondrocytes. Two skeletal dysplasias, pseudoachondroplasia (PSACH) and multiple epiphyseal dysplasia (EDM1) are caused by mutations in the calcium binding domains of COMP. In this study, we identified two PSACH mutations and assessed the effect of these mutations on redifferentiated chondrocyte structure and function. We confirmed, in vitro, that COMP is retained in enormous cisternae of the rough endoplasmic reticulum (rER) and relatively absent in the PSACH matrix. The rER accumulation may compromise chondrocyte function, leading to chondrocyte death. Moreover, while COMP appears to be deficient in the PSACH matrix, the matrix appeared to be normal but the over-all quantity was reduced. These results suggest that the abnormality in linear growth in PSACH may result from decreased chondrocyte numbers which would also affect the amount of matrix produced.

Achondroplasia↗

Expanding the phenotype of the 8344 transfer RNAlysine mitochondrial DNA mutation.

The A-to-G mutation at position 8344 in the transfer RNAlysine mitochondrial DNA gene is associated mostly with the myoclonic epilepsy and ragged red fibers syndrome. We describe a five-generation family with this mutation and 19 affected members with a variant neurologic syndrome of ataxia, myopathy, hearing loss, and neuropathy. Along with axial lipomas and diabetes mellitus, hypertension is a frequent somatic feature, suggesting that mitochondrial mutations may contribute to hypertension in these patients.

DNA, Mitochondrial↗

Cleft lip with or without cleft palate: effect of family history on reproductive planning, surgical timing, and parental stress.

OBJECTIVE: This study tested whether the presence of a family history of nonsyndromic cleft lip with or without cleft palate (NSCLP) lessens the negative impact on reproductive planning, decreases treatment anxiety, and relieves parental stress when there is a recurrent cleft. DESIGN: Sixty-one participating families, retrospectively ascertained through their children with NSCLP, were divided into two groups: those with a family history of clefting and those in which only the proband was affected. SETTING: Each family completed a questionnaire either at their home or during a clinic visit. PARTICIPANTS: Questionnaires were distributed to 117 families with an NSCLP child. Of these 117, 49 (42%) had another family member with NSCLP and 68 (58%) had no prior history of clefting. Sixty-one (52%) families returned the questionnaire and were categorized by family history. MAIN OUTCOME MEASURES: The Parenting Stress Index and the Hollingshead Index of Social Position were included with family and medical history questions in the 137-item questionnaire. RESULTS: The reproductive plans of the two groups were quite similar and were not dependent on the families' actual or perceived recurrence risks of NSCLP. The majority (85%) of the children with NSCLP underwent surgical closure at the recommended age. The two groups did not significantly differ on any score on the Parenting Stress Index, indicating a similar parental stress level between the groups. CONCLUSIONS: These findings suggest that family history does not significantly influence reproductive plans, timing of cleft repair, or stress of parents of a child with NSCLP. Further, these results indicate a need for additional psychosocial study of this population.

Adolescent↗

The fate of cartilage oligomeric matrix protein is determined by the cell type in the case of a novel mutation in pseudoachondroplasia.

We have identified a novel missense mutation in a pseudoachondroplasia (PSACH) patient in one of the type III repeats of cartilage oligomeric matrix protein (COMP). Enlarged lamellar rough endoplasmic reticulum vesicles were shown to contain accumulated COMP along with type IX collagen, a cartilage-specific component. COMP was secreted and assembled normally into the extracellular matrix of tendon, demonstrating that the accumulation of COMP in chondrocytes was a cell-specific phenomenon. We believe that the intracellular storage of COMP causes a nonspecific aggregation of cartilage-specific molecules and results in a cartilage matrix deficient in required structural components leading to impaired cartilage growth and maintenance. These data support a common pathogenetic mechanism behind two clinically related chondrodysplasias, PSACH and multiple epiphyseal dysplasia.

Achondroplasia↗

Mosaicism in pseudoachondroplasia.

Pseudoachondroplasia (PSACH) is a spondylo-epi-metaphyseal dysplasia characterized by disproportionate short stature, generalized ligamentous laxity, and precocious osteoarthritis. PSACH is caused by mutations in the cartilage oligomeric matrix protein (COMP) gene, which codes for a noncollagenous protein expressed in the territorial matrix of chondrocytes. Autosomal dominant inheritance has been demonstrated in many families; however, autosomal recessive inheritance has been suggested in some severe familial cases. Alternatively, germline/somatic mosaicism has been proposed and is credible, since it has been shown that dominantly inherited and sporadic cases of PSACH are caused by the same genetic defect. Here, we present evidence demonstrating somatic mosaicism in two PSACH families that were originally considered to represent autosomal recessive inheritance. The results of this study suggest that autosomal recessive inheritance is unlikely and all cases of PSACH should be studied for mutations in COMP.

Achondroplasia↗

Hereditary multiple exostoses (EXT): mutational studies of familial EXT1 cases and EXT-associated malignancies.

Hereditary multiple exostoses (EXT) is an autosomal dominant disorder characterized by the formation of cartilage-capped prominences that develop from the growth centers of the long bones. EXT is genetically heterogeneous, with three loci, currently identified on chromosomes 8q24.1, 11p13, and 19q. The EXT1 gene, located on chromosome 8q24.1, has been cloned and is encoded by a 3.4-kb cDNA. Five mutations in the EXT1 gene have been identified--four germ-line mutations, including two unrelated families with the same mutation, and one somatic mutation in a patient with chondrosarcoma. Four of the mutations identified resulted in frameshifts and premature termination codons, while the fifth mutation resulted in a substitution of leucine for arginine. Loss of heterozygosity (LOH) analysis of chondrosarcomas and chondroblastomas revealed multiple LOH events at loci on chromosomes 3q, 8q, 10q, and 19q. One sporadic chondrosarcoma demonstrated LOH for EXT1 and EXT3, while a second underwent LOH for EXT2 and chromosome 10. A third chondrosarcoma underwent LOH for EXT1 and chromosome 3q. These results agree with previous findings that mutations at EXT1 and multiple genetic events that include LOH at other loci may be required for the development of chondrosarcoma.

Bone Neoplasms↗

Recurrent severe infantile cortical hyperostosis (Caffey disease) in siblings.

Infantile cortical hyperostosis (ICH), Caffey disease, is a multifocal, inflammatory skeletal process with classic onset before the fifth month of life and resolution by the age of 3 years. A severe phenotype with early prenatal onset has also been described. Inheritance is generally accepted a autosomal dominant with variable expression and penetrance. However, occurrence in siblings with no family history has been reported, raising the possibility of heterogeneity and the existence of a severe autosomal recessive form. We describe a third family with prenatally diagnosed ICH in two siblings, providing further evidence for this form of inheritance.

Adult↗

Characterization of human DSPG3, a small dermatan sulfate proteoglycan.

PG-Lb is a small dermatan sulfate proteoglycan that has been previously characterized in chicken. In the developing limb, chick PG-Lb appears to be exclusively expressed in the zone of flattened chondrocytes. We have cloned and sequenced the human homolog to chick PG-Lb from two human chondrocyte cDNA libraries and a human chondrocyte RNA sample. The human homolog has been named DSPG3, as it is the third member of the small dermatan sulfate proteoglycan family to be identified and characterized along with biglycan (PG-I) and decorin (PG-II). DSPG3 maps to chromosome 12q21 and is composed of 1515 nucleotides of cDNA that code for a 322-amino-acid protein. The protein contains three potential glycosaminoglycan attachment sites, two N-glycosylation sites, a poly- glutamic acid stretch, and six cysteines. By Northern analysis, we have demonstrated that DSPG3 is expressed in cartilage, as well as ligament and placental tissues.

Amino Acid Sequence↗

Localization of the homolog of a mouse craniofacial mutant to human chromosome 18q11 and evaluation of linkage to human CLP and CPO.

The transgene-induced mutation 9257 and the spontaneous mutation twirler cause craniofacial and inner ear malformations and are located on mouse chromosome 18 near the ataxia locus ax. To map the human homolog of 9257, a probe from the transgene insertion site was used to screen a human genomic library. Analysis of a cross-hybridizing human clone identified a 3-kb conserved sequence block that does not appear to contain protein coding sequence. Analysis of somatic cell hybrid panels assigned the human locus to 18q11. The polymorphic microsatellite markers D18S1001 and D18S1002 were isolated from the human locus and mapped by linkage analysis using the CEPH pedigrees. The 9257 locus maps close to the centromeres of human chromosome 18q and mouse chromosome 18 at the proximal end of a conserved linkage group. To evaluate the role of this locus in human craniofacial disorders, linkage to D18S1002 was tested in 11 families with autosomal dominant nonsyndromic cleft lip and palate and 3 families with autosomal dominant cleft palate only. Obligatory recombinants were observed in 8 of the families, and negative lod scores from the other families indicated that these disorders are not linked to the chromosome 18 loci.

Alleles↗

Natural history study of pseudoachondroplasia.

Pseudoachondroplasia (PSACH) is a well-characterized autosomal dominant dwarfing condition. A great deal of information is available about orthopedic complications, but little is known about extraskeletal complications in adulthood. This study was undertaken to delineate the natural history of PSACH at all ages. Seventy-nine individuals responded to an extensive questionnaire that included information about deformities, operations, general health, chronic diseases, and reproduction. PSACH individuals were ascertained through the University of Texas Medical Genetics patient population, a genetic linkage study, and the social organization, Little People of America. The results show that PSACH individuals with a family history do not have a distinct or more severe phenotype than new mutation cases. There were not differences in the number of orthopedic complications, operations, or number of offspring between these two groups. Less than half of affected adults reported having total hip replacement surgery, which was less common than previously reported. Extraskeletal complications were generally uncommon. There were four cases of cancers in 41 individuals queried. Premature osteoarthritis was the major health problem for PSACH individuals. PSACH individuals are generally healthy but have problems associated with debilitating osteoarthritis.

Adult↗

Standard weight for height curves in achondroplasia.

Standard curves developed for the general population cannot be used to assess the growth of an individual who has a condition that results in disproportionate short stature. For this reason, efforts have been made to develop growth curves specific for several of the chondrodysplasias. However, data concerning weight for height have been largely lacking, although they may be of particular importance for conditions such as achondroplasia, where there is some consensus that an increased prevalence of obesity is a particular problem. In this paper we provide standard weight for height curves for males and females with achondroplasia, and discuss the use of several indices which have been applied to the assessment of body fat in the general population.

Achondroplasia↗