7 research outputs found

    A pilot study of antithymocyte globulin (ATG) in the treatment of patients with 'low-risk' myelodysplasia

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    We report 30 'low-risk' patients with myelodysplasia (MDS) (defined as < 10% bone marrow blasts) who were treated with antithymocyte globulin (ATG). In total, 20 patients were evaluable at the study end-point (response to treatment at 6 months). The diagnosis in these 20 patients was refractory anaemia (RA) in 13, RA with excess blasts in four, and RA with ringed sideroblasts in three. Median age was 54.5 years (range, 31-73 years). There were two cases of secondary MDS. The bone marrow was hypocellular in eight cases and cytogenetics were abnormal in four cases. All patients received lymphoglobuline (horse ATG; Sangstat, France) at a dose of 1.5 vials/10 kg/day for 5 d. The treatment was well tolerated. Three patients in the study died (disease progression, invasive aspergillosis and lung carcinoma respectively); 10 out of 20 evaluable patients (50%) responded to treatment and became transfusion independent; eight out of 13 (62%) patients with RA responded. The median duration of response was 15.5 months (2-42+ months) at the time of analysi

    ADP-Ribosylation Factor (ARF) Interaction Is Not Sufficient for Yeast GGA Protein Function or Localization

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    Golgi-localized γ-ear homology domain, ADP-ribosylation factor (ARF)-binding proteins (GGAs) facilitate distinct steps of post-Golgi traffic. Human and yeast GGA proteins are only ∼25% identical, but all GGA proteins have four similar domains based on function and sequence homology. GGA proteins are most conserved in the region that interacts with ARF proteins. To analyze the role of ARF in GGA protein localization and function, we performed mutational analyses of both human and yeast GGAs. To our surprise, yeast and human GGAs differ in their requirement for ARF interaction. We describe a point mutation in both yeast and mammalian GGA proteins that eliminates binding to ARFs. In mammalian cells, this mutation disrupts the localization of human GGA proteins. Yeast Gga function was studied using an assay for carboxypeptidase Y missorting and synthetic temperature-sensitive lethality between GGAs and VPS27. Based on these assays, we conclude that non-Arf-binding yeast Gga mutants can function normally in membrane trafficking. Using green fluorescent protein-tagged Gga1p, we show that Arf interaction is not required for Gga localization to the Golgi. Truncation analysis of Gga1p and Gga2p suggests that the N-terminal VHS domain and C-terminal hinge and ear domains play significant roles in yeast Gga protein localization and function. Together, our data suggest that yeast Gga proteins function to assemble a protein complex at the late Golgi to initiate proper sorting and transport of specific cargo. Whereas mammalian GGAs must interact with ARF to localize to and function at the Golgi, interaction between yeast Ggas and Arf plays a minor role in Gga localization and function

    Recent Investigations on Rheumatism and Arthritis in the United States

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    Bibliography

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