血的晶体结构:一个马形状,对同型粘附有意义
X D Su1, L N Gastinel, D E Vaughn
1Division of Biology 156-29 and Howard Hughes Medical Institute, California Institute of Technology, Pasadena, CA 91125, USA.
概括
昆虫免疫蛋白血,一种脂多糖结合剂,显示出一种独特的马结构. 这一发现提供了有关人类神经细胞粘附分子和神经疾病的见解.
科学领域:
- 结构生物学是结构生物学.
- 免疫学 免疫学 免疫学
- 神经科学是一个神经科学.
背景情况:
- 血是一种昆虫免疫蛋白,属于免疫球蛋白超级家族.
- 它与脂聚糖结合,在细菌感染期间上调.
研究的目的:
- 为了确定血的晶体结构.
- 了解脂聚糖结合的结构基础.
- 探索血红素的结构和功能之间的关系及其与人类神经细胞粘附分子的相关性.
主要方法:
- 射线晶体学 (3.1安格斯特罗姆分辨率)
- 序列分析是指进行序列分析.
- 分析超离心法 分析超离心法
主要成果:
- 晶体结构揭示了四个免疫球蛋白类域的新型马布局.
- 鉴定出一种结合酸盐和正电荷的斑块,可能形成脂多糖结位.
- 序列分析和超离心方法表明,这种域排列是神经细胞粘附分子L1家族的特征.
结论:
- 血的独特的域排列为其功能提供了结构基础.
- 这些发现与解释神经系统疾病中人类L1突变有关.
- 提出了一个域互换模型,用于由L1家族蛋白质介导的同型粘附.
相关概念视频
Protein Folding
Overview
Protein and Protein Structure
Proteins are one of the most abundant organic molecules in living systems and have the most diverse range of functions of all macromolecules. Proteins may be structural, regulatory, contractile, or protective. They may serve in transport, storage, or membranes; or they may be toxins or enzymes. Their structures, like their functions, vary greatly. They are all, however, amino acid polymers arranged in a linear sequence.
A protein's shape is critical to its function. For example, an enzyme can...
A protein's shape is critical to its function. For example, an enzyme can...
Protein Complex Assembly
Proteins can form homomeric complexes with another unit of the same protein or heteromeric complexes with different types. Most protein complexes self-assemble spontaneously via ordered pathways, while some proteins need assembly factors that guide their proper assembly. Despite the crowded intracellular environment, proteins usually interact with their correct partners and form functional complexes.
Many viruses self-assemble into a fully functional unit using the infected host cell to...
Many viruses self-assemble into a fully functional unit using the infected host cell to...
Protein-protein Interfaces
Many proteins form complexes to carry out their functions, making protein-protein interactions (PPIs) essential for an organism's survival. Most PPIs are stabilized by numerous weak noncovalent chemical forces. The physical shape of the interfaces determines the way two proteins interact. Many globular proteins have closely-matching shapes on their surfaces, which form a large number of weak bonds. Additionally, many PPIs occur between two helices or between a surface cleft and a polypeptide...
Anchoring Junctions
Anchoring junctions are multiprotein complexes that help cells connect to other cells and the extracellular matrix. Anchoring junctions are present on the lateral and basal surfaces of cells, providing strong and flexible connections. Focal adhesions are often formed due to cell interactions with the ECM substrata, which initiate signal transduction via kinase cascades and other mechanisms. Together, they provide stability and tissue integrity. There are three types of anchoring junctions:...
Structure of Cadherins
The cadherins were one of the first cell adhesion molecules discovered; the term “cadherins” is based on their calcium-dependent adhering properties. The first cadherins discovered on the epithelial, neuronal, and placental cells were named E-cadherin, P-cadherin, and N-cadherin, respectively. These classical cadherins share sequence and structural similarities. Other cadherins, including those involved in cell signaling, are grouped into non-classical cadherins. This diversity of cadherins...


