The candidate is a pediatric hematologist and geneticist, with basic science training in biochemistry and molecular biology; and a clinical research background in pediatric blood, lipid, and vascular disorders. The primary short term goal for this award is to provide protected time for two ongoing genetic studies related to blood and vascular disease in pediatric populations. The major long-term goal is to establish the PI as a mentor for fellows interested in patient-related translational research in pediatric hematology, genetics, cardiology or nutrition. The study environment is the Hematology Division and the lipid clinic at Children's Hospital, Boston, a major center for training young investigators in pediatrics. The first project aims to elucidate genetic basis of the syndrome, Thiamine Responsive Megaloblastic Anemia (TRMA). By homozygosity mapping, the PI has mapped this recessive disorder to chromosome 1 (1q23.2-23.3). Fibroblasts from patients, but not controls, demonstrate cell death in thiamine deficient medium, due to defective high-affinity thiamine uptake. The working hypothesis for this study is that the TRMA gene encodes a mammalian thiamine transporter. Using a combination of positional and complementation cloning techniques, the gene for TRMA will be identified, and mutations sought in the DNA from patients. The function of the normal TRMA gene will be examined, and somatic defects in this gene will be sought among patients with related disorders, including marrow myelodysplasia. The second project is aimed at identifying gene(s) responsible for low levels of high-density lipoprotein (HDL) cholesterol by linkage analysis. Familial low HDL-C is a major contributor to early atherosclerosis. Patients with low HDL-C and a family history of premature heart disease have been ascertained in the setting of a pediatric lipid clinic. To date, 38 kindreds, including more than 600 individuals, have been enrolled, and a multicenter effort is underway to enroll 100 kindreds. Linkage will be sought to candidate genes related to HDL metabolism, and in genome-wide screens. Polymorphic markers for known or novel candidate genes identified in these studies will then be evaluated in broader populations. Both projects provide training opportunities for fellows in aspects of patient-focused science, ranging from cellular biochemistry approaches to metabolic disorders, to linkage analysis, to population studies of genetic polymorphisms.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Midcareer Investigator Award in Patient-Oriented Research (K24)
Project #
5K24HL004184-05
Application #
6617843
Study Section
Special Emphasis Panel (ZHL1-CSR-F (M3))
Program Officer
Mondoro, Traci
Project Start
1999-08-15
Project End
2004-07-31
Budget Start
2003-08-01
Budget End
2004-07-31
Support Year
5
Fiscal Year
2003
Total Cost
$109,805
Indirect Cost
Name
Children's Hospital Boston
Department
Type
DUNS #
076593722
City
Boston
State
MA
Country
United States
Zip Code
02115
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Trenor 3rd, Cameron C; Chung, Richard J; Michelson, Alan D et al. (2011) Hormonal contraception and thrombotic risk: a multidisciplinary approach. Pediatrics 127:347-57
Sobota, Amy; Neufeld, Ellis J; Sprinz, Philippa et al. (2011) Transition from pediatric to adult care for sickle cell disease: results of a survey of pediatric providers. Am J Hematol 86:512-5
Sobota, Amy; Graham, Dionne A; Heeney, Matthew M et al. (2010) Corticosteroids for acute chest syndrome in children with sickle cell disease: variation in use and association with length of stay and readmission. Am J Hematol 85:24-8

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