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Biomedical subjects

E M Petty

Publications and source records attributed to E M Petty.

At least 19 recordsLinked to original sources

An integrated physical and gene map of human distal chromosome 17q24-proximal 17q25 encompassing multiple disease loci.

Genetic mapping studies suggest that a small interval on human chromosome distal 17q24-proximal 17q25 harbors genes involved in sporadic breast and ovarian tumorigenesis and in the autosomal dominant disorders hereditary neuralgic amyotrophy and tylosis with esophageal cancer. Prior to this study, isolated genomic clones and markers were assigned to this interval but integrated physical maps were not available. We improved resolution by isolating 52 additional clones and developing 24 additional markers. Genomic clones spanning distal 17q24-proximal 17q25 were organized into a contig with two gaps that encompassed 14 existing genetic markers, 8 known genes (GALR2, AANAT, ENVL, SFRS2, SEC14L, DNAH17, API4, and TK1), and 11 previously identified expressed sequence tags. This integrated map provides a foundation for identifying additional candidate genes for the disorders mapped to this interval.

Chromosomes, Human, Pair 17

Support for the availability of prenatal testing for neurological and psychiatric conditions in the psychiatric community.

Faculty and residents of the University of Michigan Department of Psychiatry, members of the Alliance for the Mentally Ill (AMI), and university students were surveyed to elicit attitudes toward the availability of prenatal testing and genetic therapy or enhancement for early- and late-onset psychiatric diseases compared to neurological disorders and human traits. They were asked to complete a written questionnaire designed to assess their opinions as to whether prenatal testing and genetic therapy or enhancement should be applied to 16 selected "disease" phenotypes or human traits: eight early- and late-onset psychiatric conditions, four neurological disorders, and four human traits. Twenty-two percent returned the written survey. The majority of all respondents supported the availability of prenatal testing for well-defined, serious psychiatric or neurological phenotypes and found testing for human traits less desirable. The percentages of respondents supporting availability of testing increased if in utero curative gene therapy was available. Response to the survey differed on the basis of gender and age, as well as personal versus professional familiarity with the condition. The results of this pilot study suggest that a majority of the population, including psychiatrists, will support the public availability of prenatal diagnosis for serious psychiatric or neurological phenotypes, even if no in utero curative therapy is available. Support for testing for human traits was not strongly endorsed.

Adult

Absence of PTEN germ-line mutations in men with a potential inherited predisposition to prostate cancer.

Epidemiological studies have demonstrated that men with a family history of prostate cancer are at an increased risk for this disease. This important observation has led a number of research teams, including our own, to collect DNA samples and clinical data from prostate cancer families, with the goal of localizing and characterizing prostate cancer susceptibility genes. The candidate tumor suppressor gene PTEN (also called MMAC1) has recently been shown to be somatically altered in several common malignancies, including cancers of the brain, kidney, skin, thyroid, endometrium, breast, and prostate. Germ-line mutations in this gene, which maps to chromosome 10q23, have been associated with Cowden disease, an autosomal dominant cancer predisposition syndrome that is characterized by multiple hamartomas. Although prostate cancer is not typically associated with Cowden disease, previous studies of sporadic prostate cancers demonstrate loss of heterozygosity at 10q23 loci in approximately 25% of cases. We, therefore, hypothesized that germ-line mutations in the PTEN gene may predispose to prostate cancer in a subset of families, particularly those in which cancers of the breast, kidney, and/or thyroid also segregate. To test this hypothesis, DNA was isolated from whole blood of 11 prostate cancer patients from 10 unrelated families. Four of the 10 families met the previously established clinical criteria for hereditary prostate cancer. Eight of the II men had at least one second primary malignancy, including cases of neuroendocrine cancer, glioblastoma multiforme, melanoma, kidney, and thyroid cancer. Although we identified some common as well as some unique polymorphisms, no nonsense or missense mutations were identified in any of the 11 samples. To further examine the possibility that PTEN mutations contribute to prostate cancer predisposition, we also studied the probands from each of 10 families with early-onset and/or multiple individuals with prostate cancer. Sequence analysis of the PTEN gene in these 10 men also revealed no mutations or novel polymorphisms. We conclude that germ-line mutations in the PTEN are unlikely to contribute in a significant way to the inherited predisposition to prostate cancer.

Adult

Reduced penetrance and variable expressivity of familial thoracic aortic aneurysms/dissections.

Autosomal dominant inheritance of thoracic aortic aneurysms and dissections occurs in subjects with Marfan syndrome, which results from mutations in the FBN1 gene on chromosome 15. A second chromosomal locus on 3p24-25 has been identified for a Marfan-like condition with thoracic aortic aneurysms. We describe here 6 families with multiple members with thoracic aortic aneurysms and dissections in the absence of the ocular and skeletal complications of Marfan syndrome. Medical records and autopsy reports on affected subjects in families with multiple members with thoracic aortic aneurysms and dissections were reviewed. Subjects in these families at risk for developing aortic disease underwent echocardiography to evaluate the aorta. The pattern of inheritance of thoracic aortic aneurysms and dissections was autosomal dominant in these families. Most affected subjects presented with aortic root dilatation or acute type I dissection, but the age of onset of disease was variable and there was decreased penetrance of the disorder. In 2 of the families, the syndrome was not linked to FBN1 or 3p24-25. Familial thoracic aortic aneurysm and dissection is an autosomal dominant condition with marked variability in the age of onset of aortic disease and decreased penetrance, making identification of affected subjects difficult. This condition is not due to mutations in the FBN1 gene or the unidentified gene on 3p24-25.

Aortic Dissection

Attitudes of young adults to prenatal screening and genetic correction for human attributes and psychiatric conditions.

With recent advances in DNA technology, questions have arisen as to how this technology should be appropriately used. In this article, results obtained from a survey designed to elicit attitudes of college students to prenatal testing and gene therapy for human attributes and psychiatric conditions are reported. The eleven hypothetical disease phenotypes included schizophrenia, alcoholism, tendency toward violent behavior, attention deficit/hyperactivity disorder, depression requiring medical treatment, obesity, involvement in "dangerous" sports activities, homosexuality, borderline normal IQ (80-100), proportional short stature, and inability to detect perfect pitch. Most students supported prenatal genetic testing for psychiatric disorders and behavior that might result in harm to others (i.e., tendency towards violent behavior) and found prenatal genetic testing for human attributes less desirable. However, the lack of unilateral agreement or disagreement toward any one condition or attribute suggests the potential difficulties ahead in the quest for guidelines for the application of new technologies available to manipulate the human genome.

Adolescent

Distal chromosome 17q loss in Barrett's esophageal and gastric cardia adenocarcinomas: implications for tumorigenesis.

The molecular genetic mechanisms underlying esophageal cancer are poorly understood. However, a novel gene that may be involved in esophageal carcinogenesis was recently localized by others to distal 17q by linkage analysis of kindreds with palmoplantar keratoderma and squamous cell carcinoma of the esophagus. To help determine whether a distal 17q gene may also be involved in the pathogenesis of primary Barrett's esophageal and gastric cardia adenocarcinomas, we performed loss of heterozygosity (LOH) analysis of 21 Barrett's and 18 gastric cardia adenocarcinomas at loci spanning 17q: cen-BRCA1-SSTR2-D17S2058-D17S929-D17S722-+ ++D17S937-D17S802-tel. Over 50% of the Barrett's and cardia adenocarcinomas demonstrated loss of an allele at one or more informative distal 17q markers. One common overlapping region of loss involved loci mapped to distal 17q24-proximal 17q25, which tentatively defines a potential chromosomal region distal to BRCA1 involved in the pathogenesis or progression of both types of adenocarcinomas. LOH analysis of DNA from matched microdissected sections of Barrett's metaplasia suggested that loss of D17S2058 in this region may be an early event in the malignant transformation of Barrett's metaplasia. No statistically significant correlations between 17q LOH and tumor stage or patient survival were noted. In summary, LOH mapping of 17q in Barrett's and cardia adenocarcinomas suggests the existence of at least one putative distal 17q tumor suppressor gene involved in the pathogenesis of these tumors.

Adenocarcinoma

A region of interstitial 17q25 allelic loss in ovarian tumors coincides with a defined region of loss in breast tumors.

Chromosomal regions of allelic imbalance in tumors are predicted to define the general location of tumor suppressor genes. We previously localized a putative breast tumor suppressor gene to a 3 cM region on 17q25 by deletion mapping of microsatellite markers in breast tumors. To determine if the same 17q25 region of loss is important in the genesis of other tumor types, 32 ovarian tumors and 24 prostate tumors, as well as 33 additional breast tumors, were analysed with 17q25 polymorphic microsatellite markers. While no significant loss was observed in prostate tumors, greater than half of ovarian tumors exhibited loss coincident with the candidate region previously defined in breast tumors. These results suggest that one or more novel tumor suppressor genes exist on 17q25 within a concordant region of interstitial loss defined in both breast and ovarian neoplasms.

Breast Neoplasms

Detailed deletion analysis of sporadic breast tumors defines an interstitial region of allelic loss on 17q25.

Whole genome analyses of breast tumors with polymorphic markers have detected nonrandom loss of heterozygosity on multiple chromosomes, providing clues to the locations of suspected tumor suppressor genes. Tumors are thought to initiate, progress, and metastasize as mutations accumulate in multiple growth-regulatory genes; thus, identification and characterization of these genes are critical to understanding and controlling breast tumorigenesis. To map more precisely a novel breast tumor suppressor gene that has been localized previously to distal 17q, we constructed a detailed deletion map of 17q25 by analyzing eight microsatellite markers on 39 sporadic primary breast tumors. The smallest overlapping region of interstitial loss was narrowed to approximately 3 cM and included D17S937/AFM107ye3, which showed the highest percentage of allelic loss (41%). These results provide a framework from which a genomic contig will be constructed and candidate transcripts will be analyzed.

Alleles

FISH localization of the soluble thymidine kinase gene (TK1) to human 17q25, a region of chromosomal loss in sporadic breast tumors.

Soluble thymidine kinase (TK1) is an important 17q marker in somatic cell genetics. Its activity is increased in many malignancies, including breast cancer. Through somatic cell hybrid and fluorescence in situ hybridization studies, we mapped TK1 to 17q25.2-->25.3, in region demonstrating loss of heterozygosity in primary breast tumors. It lies near D17S836 and is proximal to the avian erythroblastic leukemia viral oncogene homolog 2-like gene (ERBA2L).

Animals

Risk assessment and presymptomatic molecular diagnosis in hereditary breast cancer.

Breast cancer susceptibility genes are being isolated at a rapid pace. Current molecular diagnostic techniques are being adapted to detect mutations in the germline and in tumors. The isolation of the breast and ovarian cancer gene 1 (BRCA1) has brought about the potential for screening large numbers of individuals for genetically increased susceptibility to breast cancer. The advantages and limitations of presymptomatic testing are discussed.

Amino Acid Sequence

Mapping the gene for hereditary hyperparathyroidism and prolactinoma (MEN1Burin) to chromosome 11q: evidence for a founder effect in patients from Newfoundland.

An autosomal dominant syndrome of prolactinomas, carcinoids, and hyperparathyroidism was described in four Newfoundland kindreds in 1980 and in one kindred from the Pacific Northwest in 1983. Because this syndrome shares many features with multiple endocrine neoplasia type 1, the gene for which maps to proximal chromosome 11q, we performed linkage studies with chromosome 11 markers in prolactinoma families to determine whether the two genes map to the same location. All proximal chromosome 11q markers gave positive LOD scores, and no recombinants were seen with PYGM (LOD score 15.25, recombination fraction .0). All affected individuals from Newfoundland shared the same PYGM allele, providing evidence for a founder effect. The disease in the Pacific Northwest kindred cosegregated with a different PYGM allele.

Base Sequence

Mosaic dup (9p) diagnosed by fluorescence in situ hybridization (FISH).

We describe a girl with some manifestations of the dup (9p) syndrome. High-resolution Giemsa-banded karyotype of her lymphocytes documented that she was mosaic with 80% of cells being 46,XX, and 20% 46,XX,-20, + der(20;?) (p13;?). The additional material on 20p could not be defined clearly by high-resolution Giemsa banding, as the banding pattern appeared consistent with either distal 9p or distal 13q. In order to make a definitive cytogenetic diagnosis, we used fluorescence in situ hybridization (FISH) with a chromosome 9 specific DNA library to establish that the origin of the additional chromosomal material on chromosome 20 was from 9p. FISH used in this situation enabled us to counsel the family specifically regarding the prognosis and manifestations of distal 9p duplication.

Abnormalities, Multiple

Cutaneous malignant melanoma and atypical moles associated with a constitutional rearrangement of chromosomes 5 and 9.

Hereditary cutaneous malignant melanoma (HCMM) with or without atypical moles has been described in several large kindreds worldwide. Despite numerous studies of these kindreds, the gene or genes responsible for this disorder has not yet been identified. Cytogenetic and molecular studies of melanoma tumor tissue and cell lines suggest that a gene involved in the pathogenesis of malignant melanoma lies on chromosome 9p. We describe a woman with atypical moles and multiple primary melanomas, who lacks a family history of HCMM, and, has a de novo constitutional unbalanced reciprocal translocation involving the short arms of chromosomes 5 and 9 with a cytogenetically visible deletion of 5p or 9p: [46,XX,-5,-9, +der(5)t(5;9) (p13.3 or 14.2;p13.3 or 21.2), +der(9)t(5;9)]. This finding supports the hypothesis that a gene predisposing to HCMM lies on the short arm of chromosome 9.

Adult

Dermatosparaxis in children. A case report and review of the newly recognized phenotype.

BACKGROUND: Dermatosparaxis is an autosomal recessive connective tissue disorder in animals that is caused by abnormal processing of type I procollagen and results in skin laxity and fragility. Only three humans with characteristic biochemical and electronmicroscopic findings have been recognized to date. OBSERVATIONS: We describe the clinical and electronmicroscopic findings in an affected boy who presented at birth with large full-thickness groin fissures, micrognathia, large fontanelles, umbilical hernia, and dental laminal cysts. He subsequently exhibited marked skin fragility, blue sclerae, joint laxity, increased bruisability, and growth retardation. The diagnosis of dermatosparaxis was made by electron-microscopic findings consisting of characteristic small, irregular, and circular collagen fibers in the skin. His phenotype is strikingly similar to two other reported children with the disorder, which is now classified in humans as Ehlers-Danlos VII-C. CONCLUSIONS: The newly recognized phenotype of Ehlers-Danlos VII-C is a distinct connective tissue disorder characterized by marked skin fragility and laxity, blue sclerae, increased bruisability, micrognathia, umbilical hernia, and growth retardation. A suspected clinical diagnosis can be confirmed by electron-microscopic and biochemical studies of connective tissue.

Abnormalities, Multiple