James Gusella headshot

James Francis Gusella, Ph.D.

Bullard Professor of Neurogenetics in the Department of Genetics, Harvard Medical School
Research Staff, Massachusetts General Hospital

My laboratory is focused on understanding nervous system disease using molecular genetic strategies, beginning with human patients and proceeding through in vitro and modeling studies, with the ultimate goal of improving diagnosis, management and treatment.In any given disorder, the research can usually be divided into four sequential stages:

1. Determination of the chromosomal location of a gene defect, susceptibility gene or genetic modifier, usually based on linkage or association studies with polymorphic genetic markers.
2. Identification of the gene responsible for the phenotypic effect based upon its chromosomal location using a variety of genome analysis strategies.
3. Characterization of the mechanism of action based upon analysis of the allelic versions of the culprit gene in man, and in appropriate in vitro or in vivo model systems, including cultured human cells, genetically engineered mice, and lower organisms such as Drosophila and Dictyostelium.
4. Exploration of the potential for rational therapies, including genetic therapies.

We are currently searching for susceptibility and modifier genes in autism, Parkinson's disease, and Huntington's disease. As part of the Developmental Genome Anatomy Project, we also identify genes at breakpoints of balanced translocations associated with developmental abnormality. Finally we are examining the mechanism of pathogenesis of genetic defects in autism, biotin-responsive basal ganglia disease, Huntington's disease, Parkinson's disease, and neurofibromatosis, and pursuing assays to identify genetic and chemical modifiers, with the ultimate goal of contributing to effective rational therapies.

Neurofibromatosis 2: clinical and DNA linkage studies of a large kindred.
Authors: Authors: Wertelecki W, Rouleau GA, Superneau DW, Forehand LW, Williams JP, Haines JL, Gusella JF.
N Engl J Med
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Genetic linkage map of human chromosome 21.
Authors: Authors: Tanzi RE, Haines JL, Watkins PC, Stewart GD, Wallace MR, Hallewell R, Wong C, Wexler NS, Conneally PM, Gusella JF.
Genomics
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Comparative mapping of DNA markers from the familial Alzheimer disease and Down syndrome regions of human chromosome 21 to mouse chromosomes 16 and 17.
Authors: Authors: Cheng SV, Nadeau JH, Tanzi RE, Watkins PC, Jagadesh J, Taylor BA, Haines JL, Sacchi N, Gusella JF.
Proc Natl Acad Sci U S A
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The ETS genes on chromosome 21 are distal to the breakpoint of the acute myelogenous leukemia translocation (8;21).
Authors: Authors: Sacchi N, Cheng SV, Tanzi RE, Gusella JF, Drabkin HA, Patterson D, Haines JH, Papas TS.
Genomics
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Lack of evidence for association of meiotic nondisjunction with particular DNA haplotypes on chromosome 21.
Authors: Authors: Sacchi N, Gusella JF, Perroni L, Bricarelli FD, Papas TS.
Proc Natl Acad Sci U S A
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Molecular basis of ornithine aminotransferase deficiency in B-6-responsive and -nonresponsive forms of gyrate atrophy.
Authors: Authors: Ramesh V, McClatchey AI, Ramesh N, Benoit LA, Berson EL, Shih VE, Gusella JF.
Proc Natl Acad Sci U S A
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Irradiation-reduced human chromosome 21 hybrids.
Authors: Authors: Graw S, Davidson J, Gusella J, Watkins P, Tanzi R, Neve R, Patterson D.
Somat Cell Mol Genet
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Regional assignment of six polymorphic DNA sequences on chromosome 21 by in situ hybridization to normal and rearranged chromosomes.
Authors: Authors: Münke M, Foellmer B, Watkins PC, Cowan JM, Carroll AJ, Gusella JF, Francke U.
Am J Hum Genet
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Predictive testing for Huntington's disease with use of a linked DNA marker.
Authors: Authors: Meissen GJ, Myers RH, Mastromauro CA, Koroshetz WJ, Klinger KW, Farrer LA, Watkins PA, Gusella JF, Bird ED, Martin JB.
N Engl J Med
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A DNA probe, D5 [D4S90] mapping to human chromosome 4p16.3.
Authors: Authors: Youngman S, Shaw DJ, Gusella JF, MacDonald M, Stanbridge EJ, Wasmuth J, Harper PS.
Nucleic Acids Res
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