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相关概念视频

Indirect Motor Pathways01:22

Indirect Motor Pathways

3.0K
The indirect motor or extrapyramidal pathways originate in the brainstem, the lower portion of the brain that connects it to the spinal cord. They consist of several distinct tracts, each with specialized functions. The four main tracts of the indirect motor pathways are the vestibulospinal tract, the reticulospinal tract, the tectospinal tract, and the rubrospinal tract.
The vestibulospinal tract originates in the vestibular nuclei of the brainstem. The vestibular system detects changes in...
3.0K
ATP Synthase: Mechanism01:48

ATP Synthase: Mechanism

16.8K
In animals, the mitochondrial F1F0 ATP synthase is the key protein that synthesizes ATP molecules through a complex catalytic mechanism. While the nuclear genome encodes the majority of ATP synthase subunits, the mitochondrial genome encodes some of the enzyme's most critical components. The formation of this multi-subunit enzyme is a complex multi-step process regulated at the level of transcription, translation, and assembly. Defects in one or more of these steps can result in decreased...
16.8K
Direct Motor Pathways01:11

Direct Motor Pathways

4.2K
The direct motor pathways, also known as the pyramidal tracts, are a group of neural pathways that originate in the brain and descend through the spinal cord. They control the voluntary movement of the body. There are two major direct motor pathways: the corticospinal and the corticobulbar tracts.
The corticospinal tract is responsible for the voluntary movement of the limbs and trunk. It originates in the cerebral cortex of the brain and descends through the cerebrum's internal capsule and...
4.2K
Energy to Drive Translocation01:37

Energy to Drive Translocation

2.7K
Mitochondrial protein import is powered by two distinct energy sources: ATP hydrolysis and electrochemical potential across the inner membrane. Newly synthesized precursors are bound by cytosolic chaperones of the Hsp70 family, which guide them to the import receptors on the mitochondrial surface. Utilizing the energy of ATP hydrolysis, Hsp70 chaperones transfer these precursors to the TOM receptors on the mitochondrial outer membrane.
Generally, polypeptides are unfolded by two distinct...
2.7K
Intracellular Movement of Viruses and Bacteria01:10

Intracellular Movement of Viruses and Bacteria

3.4K
Intracellular bacteria and viruses often comprise a group of highly infectious pathogens that can cause several diseases. Bacterial pathogens include those belonging to the genus Rickettsia responsible for conditions such as rocky mountain spotted fever and the Mediterranean spotted fever; Chlamydia, a genus responsible for a sexually transmitted disease; Coxiella burnetii, an agent responsible for Q fever. Viral pathogens include vaccinia—a poxvirus, and herpes simplex virus—a...
3.4K
Protein Transport to the Thylakoids01:22

Protein Transport to the Thylakoids

2.9K
Thylakoids are membrane-bound sac-like structures within the chloroplast that serve as sites for photosynthesis. Thylakoid lumen contains many electron transport proteins and is enclosed by a thylakoid membrane rich in the light-harvesting complex. Proteins targeted to the thylakoids are transported as precursors and are sorted by the general TOC/TIC import pathway. Once the precursor reaches the stroma, stromal processing peptidases remove their transit signal and expose thylakoid signal...
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Dynamic composition of stress granules in Trypanosoma brucei.

PLoS pathogens·2024
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ARL3 GTPases facilitate ODA16 unloading from IFT in motile cilia.

Science advances·2024
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Flagellar targeting of an arginine kinase requires a conserved lipidated protein intraflagellar transport (LIFT) pathway in <i>Trypanosoma brucei</i>.

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Cell Cycle-Dependent Flagellar Disassembly in a Firebug Trypanosomatid <i>Leptomonas pyrrhocoris</i>.

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Cell cycle and cleavage events during in vitro cultivation of bloodstream forms of Trypanosoma lewisi, a zoonotic pathogen.

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The unusual flagellar-targeting mechanism and functions of the trypanosome ortholog of the ciliary GTPase Arl13b.

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相关实验视频

Updated: Jan 17, 2026

Detection of Trypanosoma brucei Variant Surface Glycoprotein Switching by Magnetic Activated Cell Sorting and Flow Cytometry
09:45

Detection of Trypanosoma brucei Variant Surface Glycoprotein Switching by Magnetic Activated Cell Sorting and Flow Cytometry

Published on: October 19, 2016

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试管体IFT列车是如何选择特殊轨道的?

Yameng Huang1, Cynthia Y He1

  • 1Department of Biological Sciences, National University of Singapore, Singapore, Singapore.

The Journal of cell biology
|September 16, 2025
PubMed
概括

在Trypanosoma brucei中,鞭毛体内运输列车选择性地结合到特定的微管结构. 这项研究使用先进的显微镜来揭示这种精确关联背后的机制.

科学领域:

  • 细胞生物学 细胞生物学
  • 微生物学 微生物学
  • 生物化学 生物化学

背景情况:

  • 鞭毛体内传输 (IFT) 对于鞭毛体的组装和功能至关重要.
  • 在Trypanosoma brucei中,IFT列车与轴膜双重微管子的子集结合.

研究的目的:

  • 调查控制IFT列车与Trypanosoma brucei中的特定轴膜双管微管的选择性关联的分子机制.

主要方法:

  • 使用了高分辨率显微镜技术.
  • 使用先进的成像方法可视化IFT列车-微管相互作用.

主要成果:

  • 该研究为IFT列车选择性的空间和分子基础提供了新的见解.
  • 详细的可视化揭示了IFT列车和双重微管之间的特定相互作用点.

结论:

  • 这些发现阐明了Trypanosoma brucei. flagellar运输调节的一个关键方面.
  • 了解这些机制对于理解鞭毛体动力学和寄生虫运动是至关重要的.

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Detection of Trypanosoma brucei Variant Surface Glycoprotein Switching by Magnetic Activated Cell Sorting and Flow Cytometry
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Purification of Extracellular Trypanosomes, Including African, from Blood by Anion-Exchangers Diethylaminoethyl-cellulose Columns
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Author Spotlight: AI-Driven Trypanosome Species Detection from Microscopic Images

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