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.

Elastic DNA elements--boon or blight?
Authors: Authors: Gusella JF.
N Engl J Med
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Accumulation of wild type p53 protein in human astrocytomas.
Authors: Authors: Rubio MP, von Deimling A, Yandell DW, Wiestler OD, Gusella JF, Louis DN.
Cancer Res
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Relationship between trinucleotide repeat expansion and phenotypic variation in Huntington's disease.
Authors: Authors: Snell RG, MacMillan JC, Cheadle JP, Fenton I, Lazarou LP, Davies P, MacDonald ME, Gusella JF, Harper PS, Shaw DJ.
Nat Genet
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Association of apolipoprotein E allele epsilon 4 with late-onset familial and sporadic Alzheimer's disease.
Authors: Authors: Saunders AM, Strittmatter WJ, Schmechel D, George-Hyslop PH, Pericak-Vance MA, Joo SH, Rosi BL, Gusella JF, Crapper-MacLachlan DR, Alberts MJ, et al.
Neurology
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The normal Huntington disease (HD) allele, or a closely linked gene, influences age at onset of HD.
Authors: Authors: Farrer LA, Cupples LA, Wiater P, Conneally PM, Gusella JF, Myers RH.
Am J Hum Genet
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Mouse neurofibromatosis type 1 cDNA sequence reveals high degree of conservation of both coding and non-coding mRNA segments.
Authors: Authors: Bernards A, Snijders AJ, Hannigan GE, Murthy AE, Gusella JF.
Hum Mol Genet
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A linkage study with DNA markers (D4S95, D4S115, and D4S111) in Japanese Huntington disease families.
Authors: Authors: Watanabe M, Kondo I, Nissato S, Wakisaka A, Toda T, Ikeda J, Wasmuth JJ, Gusella JF, Kanazawa I.
Jpn J Hum Genet
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The cloning and expression of a sodium channel beta 1-subunit cDNA from human brain.
Authors: Authors: McClatchey AI, Cannon SC, Slaugenhaupt SA, Gusella JF.
Hum Mol Genet
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Chromosomal localization of the gene for human B-cell antigen CD40.
Authors: Authors: Ramesh N, Ramesh V, Gusella JF, Geha R.
Somat Cell Mol Genet
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Dinucleotide repeat polymorphism in the Huntington's disease region at the D4S182 locus.
Authors: Authors: Tagle DA, Blanchard-McQuate KL, Valdes J, Castilla L, MacDonald ME, Gusella JF, Collins FS.
Hum Mol Genet
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