相关实验视频
Updated: Jul 9, 2025

09:25
Live Imaging of Mitosis in the Developing Mouse Embryonic Cortex
Published on: June 4, 2014
15.3K
一种双素机制控制着发育中的大脑中的神经发生
Paige Helmer1,2, Richard B Vallee3,4
1Department of Pathology and Cell Biology, Columbia University Medical Center, New York, NY, 10032, USA. ph2497@columbia.edu.
Communications biology
|December 1, 2023
概括
两种kinesin,Kif1A和Kif13B,通过控制辐射质原生细胞 (RGP) 细胞分裂的平衡来调节大脑发育,影响神经发生和干细胞维护.
科学领域:
- 神经科学是一个神经科学.
- 发展生物学 发展生物学
- 细胞生物学 细胞生物学
背景情况:
- 放射性质原生细胞 (RGP) 在大脑发育过程中产生神经元至关重要.
- 对称 (RGP重复) 和非对称 (神经元产生) RGP分裂之间的平衡对于皮质形成和干细胞池维护至关重要.
- 控制这种分支平衡的精确机制仍然不完全理解.
研究的目的:
- 研究基因素Kif1A和Kif13B在调节RGP细胞分裂平衡中的作用.
- 为了阐明这些基因素如何影响神经发生和干细胞在大脑发育过程中的维护.
主要方法:
- 在划分RGP中分析素功能的分析.
- 通过Kif1A和Kif13B对线粒状调节的研究.
- 对Kif1A和Kif13B进行比较结构分析.
主要成果:
- 基因素-3亚家族成员Kif1A和Kif13B在RGP分裂中表现出对立的作用.
- Kif1A通过支持不对称的分裂来促进神经发生.
- Kif13B促进对称的分裂,从而支持RGP在神经发生过程中的扩散.
结论:
- 对称和不对称的RGP划分的平衡部分是由Kif1A和Kif13B的对立作用调节的.
- 这些基因素通过调节RGP中的线粒旋方向来影响神经发生.
- 它们的对立作用代表了神经发生的新型调节机制.
相关概念视频
The Movement of Organelles and Vesicles
4.5K
In eukaryotic cells, cytoskeletal filaments such as actin, microtubules, and intermediate filaments form a mesh-like cytoskeletal network. These filaments serve as tracks for transporting cellular cargo. Specialized motor proteins use the chemical energy stored in adenosine triphosphate (ATP) for this transport. During interphase, microtubules are polarized, with the plus-end towards the cell periphery and the minus-end towards the cell center. Two microtubule-associated motor proteins,...
4.5K
Mechanism of Ciliary Motion
3.7K
The ciliary structures were first seen in 1647 by Antonie Leeuwenhoek while observing the protozoans. In lower organisms, these appendages are responsible for cell movement, while in higher organisms, these appendages help in the movement of the extracellular fluids within the body cavities.
The cilia are made up of microtubules in a 9+2 arrangement, with nine microtubule doublet ring bundles, surrounding a pair of central singlet microtubule bundles. The doublet microtubule bundles are...
The cilia are made up of microtubules in a 9+2 arrangement, with nine microtubule doublet ring bundles, surrounding a pair of central singlet microtubule bundles. The doublet microtubule bundles are...
3.7K
Microtubule Associated Motor Proteins
8.0K
Eukaryotic cells have different motor proteins for transporting various cargo within the cell. These motor proteins differ based on the filament they associate with, the direction they move within the cell, and the type of cargo they transport. Motor proteins that associate with microtubules are known as microtubule-associated motor proteins. There are two families of microtubule-associated motor proteins —Kinesins and Dyneins. Both these proteins assist in the transport of cellular...
8.0K
Anaphase A and B
4.1K
Microtubules form through the end-to-end polymerization of tubulin heterodimers. Kinetochore microtubules originate from the spindle poles, and their plus-ends connect with the kinetochores on sister-chromatids. Ndc80 protein complexes, present on the kinetochore, form low-affinity links with the plus end of these kinetochore microtubules.
Plus-end depolymerization releases tubulin heterodimers from the terminal region of the microtubule. As tubulin subunits are lost, the Ndc80 complexes detach...
Plus-end depolymerization releases tubulin heterodimers from the terminal region of the microtubule. As tubulin subunits are lost, the Ndc80 complexes detach...
4.1K
Assembly of Complex Microtubule Structures
1.8K
Complex microtubule structures are present in resting cells and in dividing cells. In resting cells, they are responsible for maintaining the cellular architecture, tracks for intracellular transport, positioning of organelles, assembly of cilia and flagella. They mediate the bipolar spindle assembly for chromosomal segregation and positioning of the cell division plate in dividing cells. The formation of microtubule complex structures depends on the cell type, cell stage, and cell function.
1.8K

