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Human Pathology|August 22, 2009
"Primary" leptomeningeal medulloblastomaRupal I Mehta, Aaron R Cutler, Joseph L Lasky, et al.The Journal of Biological Chemistry|April 25, 1992
Isolation and cloning of a voltage-dependent anion channel-like Mr 36,000 polypeptide from mammalian brainM H Bureau, M Khrestchatisky, M A Heeren, et al.Bone Marrow Transplantation|July 1, 1990
Bone marrow transplantation for acute lymphocytic leukemia utilizing total body irradiation followed by high doses of cytosine arabinoside: lack of superiority over cyclophosphamide-containing conditioning regimensW G Woods, N K Ramsay, D J Weisdorf, et al.Proceedings of the National Academy of Sciences of the United States of America|March 15, 1992
Two human glutamate decarboxylases, 65-kDa GAD and 67-kDa GAD, are each encoded by a single geneD F Bu, M G Erlander, B C Hitz, et al.Lancet (London, England)|February 22, 1992
Response of peripheral-blood mononuclear cells to glutamate decarboxylase in insulin-dependent diabetesM A Atkinson, D L Kaufman, L Campbell, et al.Genomics|March 20, 1995
The gamma-aminobutyric acid receptor gamma 3 subunit gene (GABRG3) is tightly linked to the alpha 5 subunit gene (GABRA5) on human chromosome 15q11-q13 and is transcribed in the same orientationV Greger, J H Knoll, E Woolf, et al.Nature|November 4, 1993
Spontaneous loss of T-cell tolerance to glutamic acid decarboxylase in murine insulin-dependent diabetesD L Kaufman, M Clare-Salzler, J Tian, et al.Nature|May 9, 2008
Multi-genetic events collaboratively contribute to Pten-null leukaemia stem-cell formationWei Guo, Joseph L Lasky, Chun-Ju Chang, et al.Molecular Cancer Research : MCR|February 8, 2014
Asparagine depletion potentiates the cytotoxic effect of chemotherapy against brain tumorsEduard H Panosyan, Yuntao Wang, Peng Xia, et al.Biochemical and Biophysical Research Communications|February 16, 2000
A novel method for expression and large-scale production of human brain l-glutamate decarboxylaseK M Davis, T Foos, C S Bates, et al.Pageof 13