相关实验视频
Updated: May 3, 2026

17:14
In vivo and in vitro Studies of Adaptor-clathrin Interaction
Published on: January 26, 2011
13.8K
在植物中,TPLATE适配器复合体驱动着克拉介导的内细胞分裂
Astrid Gadeyne1, Clara Sánchez-Rodríguez2, Steffen Vanneste1
1Department of Plant Systems Biology, VIB, Technologiepark 927, 9052 Gent, Belgium; Department of Plant Biotechnology and Bioinformatics, Ghent University, 9052 Gent, Belgium.
Cell
|February 18, 2014
概括
TPLATE复合体对植物生长至关重要,在克拉林介导的内细胞分裂中起到关键的适应作用. 这项研究揭示了它在植物细胞生理学中的独特进化作用.
科学领域:
- 植物生物学 植物生物学
- 细胞生物学 细胞生物学
- 细胞内核的分子机制 细胞内核的分子机制
背景情况:
- 克拉特林介导的内细胞分裂 (CME) 对于真核细胞蛋白质组在等离子体膜上的转换至关重要.
- 工厂中CME的具体机制和组织在很大程度上仍然没有特征.
- CME对于植物生理学和发育至关重要.
研究的目的:
- 为了识别和描述负责植物中CME的蛋白质复合物.
- 阐明这个复合体在植物生长和内细胞载荷内化中的作用.
主要方法:
- 蛋白质复合体的识别和表征.
- 在血膜中分析蛋白质招募动态.
- 功能测试涉及复杂组件的功能减少.
主要成果:
- 鉴定植物生长必不可少的八核组件TPLATE复合体.
- TPLATE复合体作为植物中CME的主要适配器模块.
- TPLATE复合体的招募先于其他核心内细胞蛋白 (AP2,克拉特林,胺相关蛋白) 的招募.
- TPLATE复杂组件的功能受损严重扰乱了内细胞载荷内部化.
结论:
- TPLATE复合体是植物中一个关键的早期内细胞模块.
- 它代表了公认的真核生物CME途径的独特进化适应.
- 通过其在CME中的作用,这种复合物对植物生理学和发育至关重要.
相关概念视频
Clathrin Coated Vesicles
8.1K
Clathrin-coated vesicles use endocytosis to transport receptors and lysosomal hydrolases from the Golgi to the lysosome in the late secretory pathway. Clathrin-mediated endocytosis was the first described endocytic process, and Clathrin-coated vesicles remain one of the most well-studied transport vesicles. The molecular machinery that generates clathrin-coated vesicles comprises over 50 proteins that precisely coordinate vesicle formation. Cell surface receptors concentrated in indented sites...
8.1K
Protein Transport to the Outer Chloroplast Membrane
1.6K
Chloroplast outer membrane proteins encoded by the nucleus are synthesized in the cytosol. Soon after synthesis, they bind cytosolic factors such as 14-3-3 protein and the Hsp70 chaperones that keep these precursors in an unfolded state until their translocation.
Two models describe the mechanism of precursor recognition and entry across the outer membrane through the TOC complex. Model 1 suggests the newly synthesized precursor binds to the TOC receptor 159 and forms a complex.
Two models describe the mechanism of precursor recognition and entry across the outer membrane through the TOC complex. Model 1 suggests the newly synthesized precursor binds to the TOC receptor 159 and forms a complex.
1.6K
Protein Transport to the Inner Chloroplast Membrane
1.7K
Proteins targeted to the inner chloroplast membrane, or plastid proteins, are transported by two general pathways: the stop-transfer and the re-insertion or post-import pathways. Most plastid proteins carry N-terminal transit sequences and internal import sequences targeting it to the specific chloroplast subcompartment. Proteins targeted by the stop-transfer pathway have internal hydrophobic sequences that inhibit their translocation into the stroma. As a result, these precursors are arrested...
1.7K
Cell Adhesion in Plants
2.4K
Plants have rigid cell walls that are made up of cell wall polysaccharides that mediate cell-cell adhesion. The primary cell walls of plants consist of two independent and interacting polysaccharide networks: a pectin matrix that embeds the second network comprising cellulose and hemicelluloses.
Pectins are complex heteropolymers mainly composed of negatively-charged α-D-glucopyranosyl uronic acid and some neutral glycosyl residues such as α-L-rhamnopyranose, α-L-arabinofuranose,...
Pectins are complex heteropolymers mainly composed of negatively-charged α-D-glucopyranosyl uronic acid and some neutral glycosyl residues such as α-L-rhamnopyranose, α-L-arabinofuranose,...
2.4K
Protein Transport to the Stroma
1.5K
Chloroplasts are triple membrane structures with an outer membrane, an inner membrane, and a thylakoid membrane, each containing distinct metabolite transporters, membrane translocons, and enzymes. Appropriate sorting and translocating these proteins to their correct membrane systems is essential for chloroplast function.
Protein complexes called the translocon of the outer chloroplast membrane or TOC complex, and the translocon of the inner chloroplast membrane or TIC complex mediate the...
Protein complexes called the translocon of the outer chloroplast membrane or TOC complex, and the translocon of the inner chloroplast membrane or TIC complex mediate the...
1.5K
Coat Assembly and GTPases
3.5K
Vesicles incorporate different coat protein subunits in different cell locations, which changes the properties of the coat, such as the shape and geometry of the transport vesicles. Thus, vesicle coat proteins also play a significant role in cargo selection.
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
3.5K

