John Manfredi
Myriad Genetics
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Publication
Featured researches published by John Manfredi.
PLOS ONE | 2015
John A. Gaynes; Hideo Otsuna; Douglas S. Campbell; John Manfredi; Edward M. Levine; Chi Bin Chien
Attractive growth cone turning requires Igf2bp1-dependent local translation of β-actin mRNA in response to external cues in vitro. While in vivo studies have shown that Igf2bp1 is required for cell migration and axon terminal branching, a requirement for Igf2bp1 function during axon outgrowth has not been demonstrated. Using a timelapse assay in the zebrafish retinotectal system, we demonstrate that the β-actin 3’UTR is sufficient to target local translation of the photoconvertible fluorescent protein Kaede in growth cones of pathfinding retinal ganglion cells (RGCs) in vivo. Igf2bp1 knockdown reduced RGC axonal outgrowth and tectal coverage and retinal cell survival. RGC-specific expression of a phosphomimetic Igf2bp1 reduced the density of axonal projections in the optic tract while sparing RGCs, demonstrating for the first time that Igf2bp1 is required during axon outgrowth in vivo. Therefore, regulation of local translation mediated by Igf2bp proteins may be required at all stages of axon development.
PLOS ONE | 2013
Andrew Gassman; Le Thi Hao; Leena Bhoite; Chad Bradford; Chi-Bin Chien; Christine E. Beattie; John Manfredi
Proximal spinal muscular atrophy (SMA) is the most common inherited motor neuropathy and the leading hereditary cause of infant mortality. Currently there is no effective treatment for the disease, reflecting a need for pharmacologic interventions that restore performance of dysfunctional motor neurons or suppress the consequences of their dysfunction. In a series of assays relevant to motor neuron biology, we explored the activities of a collection of tetrahydroindoles that were reported to alter the metabolism of amyloid precursor protein (APP). In Drosophila larvae the compounds suppressed aberrant larval locomotion due to mutations in the Khc and Klc genes, which respectively encode the heavy and light chains of kinesin-1. A representative compound of this class also suppressed the appearance of axonal swellings (alternatively termed axonal spheroids or neuritic beads) in the segmental nerves of the kinesin-deficient Drosophila larvae. Given the importance of kinesin-dependent transport for extension and maintenance of axons and their growth cones, three members of the class were tested for neurotrophic effects on isolated rat spinal motor neurons. Each compound stimulated neurite outgrowth. In addition, consistent with SMA being an axonopathy of motor neurons, the three axonotrophic compounds rescued motor axon development in a zebrafish model of SMA. The results introduce a collection of small molecules as pharmacologic suppressors of SMA-associated phenotypes and nominate specific members of the collection for development as candidate SMA therapeutics. More generally, the results reinforce the perception of SMA as an axonopathy and suggest novel approaches to treating the disease.
Archive | 2002
John Manfredi
Archive | 2004
Sui Xiong Cai; Nilantha Sudath Sirisoma; Azra Pervin; John Drewe; Shailaja Kasibhatla; Songchun Jiang; Hong Zhang; Chris Pleiman; Vijay Baichwal; John Manfredi; Leena Bhoite
Archive | 2007
Christine Klein; Andrew D. Gassman; Leena Bhoite; John Manfredi
Archive | 2002
John Manfredi
Archive | 2002
John Manfredi
Archive | 2002
John Manfredi
Archive | 2007
Christine Klein; Andrew D. Gassman; Leena Bhoite; John Manfredi
Archive | 2004
Sui Xiong Cai; Nilantha Sudath Sirisoma; Azra Pervin; John Drewe; Shailaja Kasibhatla; Songchun Jaing; Hong Zhang; Chris Pleiman; Vijay Baichwal; John Manfredi; Leena Bhoite