ROLE OF MYOSIN ISOFORMS IN NERVE GROWTH CONE MOTILITY
ROLE OF MYOSIN ISOFORMS IN NERVE GROWTH CONE MOTILITY
批准号:
2910743
负责人:
Daniel G. Jay
金额:
$25.3万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-02-01 至 2004-06-30
关键词:
actins chick embryo chromophore developmental neurobiology fluorescent dye /probe growth cones immunocytochemistry immunoelectron microscopy immunologic assay /test intermolecular interaction laboratory mouse lasers myosins neuronal guidance neurotrophic factors protein isoforms protein structure function protoplasm motility spinal ganglion tissue /cell culture vesicle /vacuole
中文摘要
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英文摘要
DESCRIPTION (Investigator's Abstract): The long term objective of this
proposal is to understand the molecular mechanisms of growth cone
motility in developing neurons. Axons are guided by extracellular cues
that direct filopodial motility by locally affecting cytoskeletal
dynamics. Understanding the molecular basis of this is required to
understand how neurocircuitry is formed during embryonic development and
to establish what factors can cause neurological birth defects.
Moreover, these molecular mechanisms are likely to be used in nerve
regeneration and an understanding of them will aid in designing
treatment after nerve injury.
Considerable work in neural development, cell biology, and signal
transduction have identified candidate proteins that may be involved in
filopodial motility and guidance but establishing their in vivo function
in neuronal growth cones has been difficult. The long term objective
will be addressed by applying microscale chromophore assisted laser
inactivation (micro-CALI), a method developed in this laboratory, to
inactivate specific intracellular proteins with an unprecedented level
of spatial and temporal resolution. CALI has been rigorously tested and
used to determine the in vivo roles of membrane proteins in neural
development. It is timely to use this technique to address the
molecular mechanisms of growth cone motility.
Specificically, the in vivo roles of talin, vinculin, pp60c-src, and the
myosins in filopodial motility will be determined by focally inactivating
them in growth cones and observing the resulting behavior by video-
enhanced microscopy and quantitative morphometry. Experiments are also
proposed to ask if these proteins play a role in substrate-mediated
guidance by using micro- CALI as growth cones reach borders on patterned
substrates. These studies will be done using chick dorsal root ganglion
neurons in culture, a well characterized and manipulatable system for
which there exist antibodies against many proteins that are potentially
involved in growth cone motility. The proposed experiments are focused
on these proteins because our preliminary experiments coupled with in
vitro biochemical data suggest a model for how they function and
interact in the extension and regulation of filopodia. Micro-CALI will
be applied to test this model by inactivating these proteins in
combination to give specific phenotypes that will support or refute the
proposed interactions.
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资助金额:$29.06万
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资助金额:$27.56万
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资助金额:$27.56万
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批准号:6606243
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资助金额:$34.06万
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依托单位:
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批准号:6187262
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HIGH THROUGHPUT CALI FOR TARGET VALIDATION IN METASTASIS
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项目类别:
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资助金额:$61.93万
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依托单位:
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负责人:Daniel G. Jay
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依托单位:
海外基金