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Biomedical subjects

E C Jenkins

Publications and source records attributed to E C Jenkins.

At least 19 recordsLinked to original sources

Proposed guidelines for diagnosis of chromosome mosaicism in amniocytes based on data derived from chromosome mosaicism and pseudomosaicism studies.

Currently, accepted protocol which has been developed at the Prenatal Diagnosis Laboratory of New York City (PDL) requires that when a chromosome abnormality is found in one or more cells in one flask, another 20-40 cells must be examined from one or two additional flasks. Chromosome mosaicism is diagnosed only when an identical abnormality is detected in cells from two or more flasks. In a recent PDL series of 12,000 cases studied according to this protocol, we diagnosed 801 cases (6.68 per cent) of single-cell pseudomosaicism (SCPM), 126 cases (1.05 per cent) of multiple-cell pseudomosaicism (MCPM), and 24 cases (0.2 per cent) of true mosaicism. Pseudomosaicism (PM) involving a structural abnormality was a frequent finding (2/3 of SCPM and 3/5 of MCPM), with an unbalanced structural abnormality in 55 per cent of SCPM and 24 per cent of MCPM. We also reviewed all true mosaic cases (a total of 50) diagnosed in the first 22,000 PDL cases. Of these 50 cases, 23 were sex chromosome mosaics and 27 had autosomal mosaicism; 48 cases had numerical abnormalities and two had structural abnormalities. Twenty-five cases of mosaicism were diagnosed in the first 20 cells from two flasks, i.e., without additional work-up, whereas the other 25 cases required extensive work-up to establish a diagnosis (12 needed additional cell counts from the initial two culture flasks; 13 required harvesting a third flask for cell analysis). Our data plus review of other available data led us to conclude that rigorous efforts to diagnose true mosaicism have little impact in many instances, and therefore are not cost-effective. On the basis of all available data, a work-up for potential mosaicism involving a sex chromosome aneuploidy or structural abnormality should have less priority than a work-up for a common viable autosomal trisomy. We recommend revised guidelines for dealing with (1) a numerical versus a structural abnormality and (2) an autosomal versus a sex chromosome numerical aneuploidy. Emphasis should be placed on autosomes known to be associated with phenotypic abnormalities. These new guidelines, which cover both flask and in situ methods, should result in more effective prenatal cytogenetic diagnosis and reduced patient anxiety.

Amniocentesis

Reassessment of a chromosome 12q+ marker by fluorescent in situ hybridization (FISH).

We present a case previously described by Jenkins et al. (1983) as atypical Down syndrome (DS). The initial diagnosis was first made on the basis of phenotypic and cytogenetic data. This analysis was supported by studies of superoxide dismutase (SOD1) activity that maps to band 21q22.1. Results from phenotypic, chromosome banding and SOD1 studies suggested a karyotype of 46,XX,-12,+t(12pter to 12qter::21q21 to 21q22.?2). Using fluorescent in situ hybridization (FISH) for chromosome painting with DNA libraries derived from sorted human chromosomes to stain selectively the chromosomes No. 21 and No. 12, we demonstrate that the marker chromosome 12q+ has no chromosome 21 content but it is derived from chromosome 12.

Abnormalities, Multiple

Why are autism and the fragile-X syndrome associated? Conceptual and methodological issues.

Investigations of the association between autism and the fragile-X syndrome have yielded conflicting results with some studies indicating a strong correlation and others indicating no relation between the disorders. In this paper, we review the relevant research on this controversy and discuss the conceptual and methodological problems involved in such an inquiry. We conclude that autism and fragile X are associated and that this relation will prove fruitful in understanding the role of the X chromosome in a variety of behavior disorders and in unraveling various theoretical accounts on the etiology of autism.

Autistic Disorder

Study of spindle microtubule reassembly in cells from Alzheimer and Down syndrome patients following exposure to colcemid.

Numerous intraneuronal neurofibrillary tangles and senile (neuritic) plaques are the two characteristic lesions in Alzheimer disease (AD) and adult Down syndrome (DS). Evidence indicates that microtubule assembly is impaired in AD. We studied spindle microtubule repolymerization rates in EBV-transformed lymphoblasts from AD, DS, and control individuals after colcemid exposure. The distinctive arrangement of microtubules in spindle and its size make this structure an obvious choice for study. Recovery trends in the three patient groups differed significantly; in particular, the controls showed an earlier appearance of intact spindle microtubules than AD. Other researchers found similar results using AD fibroblasts. The results from the DS cells were inconsistent and difficult to interpret. It is unclear how the AD microtubules differ from controls, or whether a relationship exists between the altered microtubule repolymerization kinetics observed in this study and the presence of neurofibrillary tangles in AD patients. A difference in repolymerization rates can be the basis for a diagnostic test for AD if it can be verified.

Alzheimer Disease

Progress toward an internal control system for fragile-X induction by 5-fluorodeoxyuridine in whole-blood cultures.

We have been attempting to develop a consistently reliable internal control to assure the effectiveness of the 5-fluorodeoxyuridine (FUdR) fragile-X [fra(X)] induction system. We carried out a systematic study of whole-blood specimens cultured from 56 individuals from two different laboratories. An analysis of nearly 9,000 cells demonstrated: (1) the importance of establishing baseline levels of fragile sites in each laboratory, and (2) that a combination of common fragile sites (different for each laboratory) could serve as a consistently reliable indicator of the effectiveness of the FUdR fra(X) induction system. It was suggested that a non-FUdR culture(s) should be incorporated into a laboratory's fra(X)-screening protocol, so that if there are any doubts about the effectiveness of the FUdR system a comparison to background or spontaneously occurring fragile sites can be made within the laboratory. Repeat cultures are recommended where no increase in common fragile-site frequency is observed in the FUdR induction system, and where fra(X) was strongly suspected but not found. In addition, the necessity of using more than one fra(X) induction system in whole-blood cultures was demonstrated, including the effectiveness of an FUdR/excess thymidine double-induction system. Finally, 2 cases of apparent mosaicism for Klinefelter syndrome in fra(X) individuals were observed.

Blood Cells

Chromosomal abnormalities in amniotic fluid cell cultures: a comparison of apparent pseudomosaicism in Chang and RPMI-1640 media.

The finding of chromosome mosaicism is one of the most difficult problems in fetal chromosome analysis. Whether the finding indicates true mosaicism or pseudomosaicism must be investigated. Studies detailing the incidence of true mosaicism and pseudomosaicism have been reported (Hsu & Perlis 1984, Bui et al. 1984, Worton & Stern 1984) but do not correlate pseudomosaicism with any particular type of culture media. Benn & Hsu (1985) compared cell growth and chromosome abnormalities in amniotic fluid cell cultures grown in Chang medium and RPMI-1640 medium and found no statistically significant difference in the rate of abnormalities in the two media. We have previously shown that Chang medium exhibited more abnormalities which were not verified in second and third cultures (Masia et al. 1986). In the current study we examined 212 cases grown in both Chang and RPMI-1640 media, and compared apparent single and multiple cell pseudomosaic abnormalities to medium type. The number of observed abnormalities was 22, occurring in 19 of the cases studied. Apparent pseudomosaic chromosome anomalies were observed in 18 Chang cultures and in 4 RPMI-1640 cultures. Statistical analysis found significant correlation between medium type and the degree of observed pseudomosaic cells. We conclude that the rate at which pseudomosaic cells are observed is partly a function of medium type, and in our laboratory Chang medium caused apparent pseudomosaicism at a greater level than RPMI-1640 medium.

Amniotic Fluid

Parent-child dyadic gaze patterns in fragile X males and in non-fragile X males with autistic disorder.

Parent-child dyadic gaze patterns were examined in fragile X [fra(X)] males and in non-fra(X) autistic males across three age groups--early childhood, middle childhood and adolescence. Absolute probabilities of social gaze did not significantly differ across diagnostic groups. Event lag sequential analyses indicated that fra(X) males were sensitive to social gaze initiation by their parents but found eye contact aversive. Non-fra(X) autistic males, by contrast, were insensitive to parent-initiated social gaze, and did not find eye contact aversive. Implications for research on the social characteristics of fra(X) and autistic children are discussed.

Adolescent

Beta-amyloid protein probe hybridized to chromosome 9 in 3 Alzheimer disease individuals.

We have reported recently the sublocalization of an Alzheimer Disease-associated gene that encodes for cerebrovascular beta-amyloid protein (BAP). Its locus appears to be at or proximal to band 21q2105 through band 21q11.1. We have also observed hybridization to chromosome 20 in normal and Down syndrome individuals using the single-stranded form of the probe. Further, we have found that BAP hybridizes to chromosome 9 in lymphoblastoid cells from three individuals from two families with familial Alzheimer Disease (AD). We have now obtained additional data which shows significant hybridization to chromosomes 9,20 and 21 for two normal control individuals, a Down syndrome (DS) individual and three AD individuals. When the normal and Down Syndrome individuals were compared to the group of individuals with AD, significant hybridization to chromosome 9 occurred in the Alzheimer group only (p less than .05). Almost half of the silver grains on chromosome 9 in the three AD individuals were localized to the distal area of the long arm. Whether these observations demonstrate an apparent genetic marker in these three individuals with familial AD, or whether our observations have identified a marker for both familial and sporadic AD will be determined by further studies.

Alzheimer Disease

Clinical features of a neuropathologically verified familial Alzheimer's cohort with onset in the fourth decade: comparison with senile onset Alzheimer's disease and etiopathogenic implications.

Clinical and pathologic features of a family with early onset, autosomal dominant, familial Alzheimer's disease (AD) are compared and contrasted with senile onset dementia of the Alzheimer type. Late onset AD has previously been observed to have a characteristic progression and clinical course. A previously unreported pedigree, with two siblings and their father affected, of early clinical onset is presented. Molecular genetic study of this family using in situ chromosome hybridization showed an apparent marker on chromosome 9. This early onset form of AD is observed to be clinically consistent with the common late onset form of AD, but follows a more rapid course. An etiopathogenic model explaining the early onset, and other forms of AD is presented.

Adult

Fine mapping of an Alzheimer disease-associated gene encoding beta-amyloid protein.

We have sublocalized an Alzheimer Disease-associated gene, which encodes for cerebrovascular beta-amyloid protein, to the region from the centromere through the proximal half of band 21q21 using both somatic cell and in situ mapping techniques. In addition we found repeatedly significant but weaker hybridization of the beta-amyloid protein probe to the short arm of chromosome 20. 794 cells were analyzed from whole blood, lymphoblastoid and skin cultures. The latter two types of cultures had parts of the 21st chromosome translocated to other chromosomes facilitating sublocalization.

Alzheimer Disease

Multilocus analysis of the fragile X syndrome.

A multilocus analysis of the fragile X (fra(X] syndrome was conducted with 147 families. Two proximal loci, DXS51 and F9, and two distal loci, DXS52 and DXS15, were studied. Overall, the best multipoint distances were found to be DXS51-F9, 6.9%, F9-fra(X), 22.4%; fra(X)-DXS52, 12.7%; DXS52-DXS15, 2.2%. These distances can be used for multipoint mapping of new probes, carrier testing and counseling of fra(X) families. Consistent with several previous studies, the families as a whole showed genetic heterogeneity for linkage between F9 and fra(X).

Chromosome Mapping

Social gaze, social avoidance, and repetitive behavior in fragile X males: a controlled study.

Preference for social gaze as well as the percentage occurrence of social gaze, nonverbal social avoidance, and nonverbal repetitive behaviors were examined in autistic and nonautistic prepubertal males with the fragile X syndrome (fra[X]) during social interaction with a parent or stranger. Comparison groups were nonhandicapped, Down syndrome, atypical pervasive developmental disorder, and autistic males. The subjects with fra(X) and the nonhandicapped and Down syndrome control subjects discriminated parent from stranger as evidenced by their avoidance behavior. The overall percentage of avoidance was higher, however, for both parent and stranger, among the males with fra(X). Autistic and atypical groups without fra(X) failed to discriminate parent from stranger in their avoidance behavior. Possible explanations for these group differences in terms of language level or degree of language demand were ruled out. Implications for research concerning the relations among fra(X), autism, and mental retardation were discussed.

Autistic Disorder