人类Kinetochore-微管合的结构基础由Ndc80和Ska复合体
bioRxiv : the preprint server for biology
|January 23, 2026
概括
斯卡和Ndc80复合体在外侧的基因上协同工作,确保细胞分裂期间稳定的染色体-微管附着. 结构洞察力揭示了这些蛋白质如何合作以保持强大的染色体分离.
科学领域:
- 细胞生物学 细胞生物学
- 分子生物学分子生物学
- 生物物理学的生物物理.
背景情况:
- 外部基因 (KT) 对于将染色体连接到动态微管 (MT) 加端至关重要.
- 斯卡复合体和Ndc80复合体在人体细胞的外部KT上进行合作,以确保稳定的KT-MT相互作用.
- 在Ska-Ndc80合作的基础上的分子机制仍然不太清楚.
研究的目的:
- 阐明人类Ska和Ndc80复杂合作的结构基础在外侧的动态.
- 了解这些复合体如何与微管和彼此相互作用,以确保强大的染色体附着.
主要方法:
- 获得了人类Ska和Ndc80复合物的结构,同时与微管结合.
- 分析了蛋白质-蛋白质相互作用和结合接口.
主要成果:
- 斯卡复合物与多个管二次体的MT相互作用.
- Ndc80和Ska复合体通过相邻的原体纤维进行交互,将α-tubulin C-终端尾部成三明治.
- 在Ndc80和SKA3之间确定了定相互作用,其中包括Ndc80的曲点和SKA3.3中的合螺旋和酸化点.
结论:
- 人类外部KT组件Ska和Ndc80协同参与动态MT端.
- 这种合作有助于强大的KT-MT附着和忠实在线粒分裂的染色体分离过程中.
更多相关视频
相关概念视频
Assembly of Complex Microtubule Structures
2.5K
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.
2.5K
Microtubules
98.3K
There are three types of cytoskeletal structures in eukaryotic cells—microfilaments, intermediate filaments, and microtubules. With a diameter of about 25 nm, microtubules are the thickest of these fibers. Microtubules carry out a variety of functions that include cell structure and support, transport of organelles, cell motility (movement), and the separation of chromosomes during cell division.
98.3K
Microtubules
10.4K
Microtubules are the thickest cytoskeletal filaments with a diameter of 25 nm. In prokaryotic organisms, microtubules are commonly found in locomotory appendages like cilia and flagella. In eukaryotic cells, microtubules form specialized extensions for moving fluid over the surface, like those found in cells lining the intestine.
Microtubules have two structurally similar globular protein subunits: α and β tubulins. In the cytosol, the α and β tubulins form a heterodimer....
Microtubules have two structurally similar globular protein subunits: α and β tubulins. In the cytosol, the α and β tubulins form a heterodimer....
10.4K
Chromosome Structure
26.0K
A functional eukaryotic chromosome must contain three elements: a centromere, telomeres, and numerous origins of replication.
The centromere is a DNA sequence that links sister chromatids. This is also where kinetochores, protein complexes to which spindle microtubules attach, are constructed after the chromosome is replicated. The kinetochores allow the spindle microtubules to move the chromosomes within the cell during cell division.
Telomeres consist of non-coding repetitive nucleotide...
The centromere is a DNA sequence that links sister chromatids. This is also where kinetochores, protein complexes to which spindle microtubules attach, are constructed after the chromosome is replicated. The kinetochores allow the spindle microtubules to move the chromosomes within the cell during cell division.
Telomeres consist of non-coding repetitive nucleotide...
26.0K
Structural Protein Function
29.8K
Structural proteins are a category of proteins responsible for functions ranging from cell shape and movement to providing support to major structures such as bones, cartilage, hair, and muscles. This group includes proteins such as collagen, actin, myosin, and keratin.
Collagen, the most abundant protein in mammals, is found throughout the body. In connective tissue, such as skin, ligaments, and tendons, it provides tensile strength and elasticity. In bones and teeth, it mineralizes to...
Collagen, the most abundant protein in mammals, is found throughout the body. In connective tissue, such as skin, ligaments, and tendons, it provides tensile strength and elasticity. In bones and teeth, it mineralizes to...
29.8K
Microtubule Instability
6.1K
Microtubules are hollow cylindrical filaments having a diameter of approximately 25 nm and a length that varies from 200 nm to 25 μm. GTP-bound tubulin subunits form αβ-heterodimers for microtubule assembly. These core building blocks interact longitudinally, polymerizing into protofilaments. The protofilaments then interact with one another through lateral bonding forces to form stable cylindrical microtubules. These cylindrical filaments are dynamic as they undergo repeated...
6.1K


