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Spatial control of membrane traffic by septin GTPases

Spatial control of membrane traffic by septin GTPases
Septin GTPases 对膜运输的空间控制
批准号:
10975733
负责人:
Elias T Spiliotis
金额:
$34.86万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-06-01 至 2025-05-31

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中文摘要
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英文摘要
Project Summary/Abstract Spatial control of membrane traffic is essential for the morphogenesis and maintenance of polarized cell types such as epithelia and neurons, and their physiological functions in tissue homeostasis and neurotransmission. Loss of cell polarity and defects in membrane traffic underlie the pathogenesis of many diseases including cancer, neurodegeneration and metabolic disorders. The RATIONALE for our studies is that a mechanistic knowledge of the spatial organization and regulation of membrane traffic is critical for the design of new treatments and regenerative therapies. Many advances have been made in understanding membrane traffic at points of origin (protein sorting, vesicle formation) and destination (vesicle docking/fusion). However, KEY CHALLENGES remain in understanding how long-range transport is spatially controlled en route to destination. Our CENTRAL HYPOTHESIS is that septins, a unique family of GTP-binding proteins that associate with distinct subsets of microtubules (MTs) and membrane domains, comprise a novel regulatory module for the spatial guidance of membrane traffic. Recent findings from our laboratory show that septins modulate motor (kinesins, dynein) interactions with MTs and membranes. Driven by these advances, we will address KEY QUESTIONS about septin functions and the spatial control of membrane traffic in epithelia and neurons. We will investigate whether there is specificity between septins and distinct routes of polarized traffic (e.g., apical vs. basolateral). We will distinguish between septin roles in the spatial orientation of MTs and the modulation of motor motility on MT tracks, which will be mechanistically studied with structure-function approaches. Based on new evidence of septin association with endolysosomes, we will investigate how lysosome trafficking and positioning is regulated by septins. We will test the hypothesis that endolysosomal septins scaffold the recruitment and activation of dynein-dynactin, and examine whether septins are involved in the coordination of kinesin and dynein motors. Lastly, we will investigate how septin association with MTs or membranes is controlled, focusing on phosphorylation of septins by signaling kinases as a switch mechanism between MT- and membrane-associated functions. We will pursue these projects using innovative tools and cutting-edge approaches including in vitro reconstitution, single-molecule and super-resolution microscopy, and 3D organoid culture. Outcomes will provide new insights into the mechanisms that direct the transport of membrane vesicles and endolysosomes in response to morphogenetic and metabolic signals. The proposed studies will also advance our understanding of septins as spatial regulators of intracellular organization, bearing significance on diseases triggered and/or exacerbated by abnormalities in septin expression.
期刊论文(12)
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会议论文
DOI: 10.1016/j.jbc.2023.105084
发表时间: 2023-09
期刊: JOURNAL OF BIOLOGICAL CHEMISTRY
影响因子: 4.8
作者: [Suber, Yani, Alam, Md Noor A., Nakos, Konstantinos, Bhakt, Priyanka, Spiliotis, Elias T., Cruz, Enrique De La]
通讯作者: Cruz, Enrique De La
DOI: 10.1016/j.conb.2022.102557
发表时间: 2022-08
期刊: Current opinion in neurobiology
影响因子: 5.7
作者: []
通讯作者:
DOI: 10.1091/mbc.e21-06-0334
发表时间: 2022-05-01
期刊: MOLECULAR BIOLOGY OF THE CELL
影响因子: 3.3
作者: [Merenich, Daniel, Nakos, Konstantinos, Pompan, Taylor, Donovan, Samantha J., Gill, Amrik, Patel, Pranav, Spiliotis, Elias T., Myers, Kenneth A.]
通讯作者: Myers, Kenneth A.
DOI: 10.1091/mbc.e19-11-0648
发表时间: 2020-10-01
期刊: Molecular biology of the cell
影响因子: 3.3
作者: [Spiliotis ET, McMurray MA]
通讯作者: McMurray MA
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