1.9
脱氧核糖核酸(DNA)是一种遗传物质,负责将所有生物体和大多数病毒中的性状代代相传。DNA 是由两条核苷酸链组成,这两条核苷酸链通过相互缠绕,从而形成弹簧状结构,并将其称为双螺旋。然而,双螺旋并不是完全对称的。相反,双螺旋结构中会经常出现凹槽。主要的凹槽通常出现在与糖-磷酸骨架相距较远的地方。这个空…
脱氧核糖核酸(DNA)由两条多核苷酸链组成。
每条链均由四种核苷酸亚基组成。
每个核苷酸由一个磷酸基团和一个含氮碱基——腺嘌呤(A)、胞嘧啶(C)、鸟嘌呤(G)或胸腺嘧啶(T)——连接到脱氧核糖糖分子上组成。
这种排列形成了 DNA 结构的糖-磷酸骨架。
在每条链的骨架上,磷酸二酯键通过共价键将一个糖分子的第三个碳原子与下一个糖分子的第五个碳原子相连。
在反向平行的两条链中,每个碱基都具有独特的配对方式,即C与G配对,A与T配对,这是由于它们之间形成的氢键数目不同所致。
这种化学极性确保了高效的紧密排列,使两条链相互缠绕形成三维双螺旋结构,每整圈包含十个碱基对。
View the full transcript and gain access to JoVE Core videos
Q1: What are the four types of nitrogen-containing bases found in DNA?
DNA contains four nitrogen-containing bases: adenine (A), cytosine (C), guanine (G), and thymine (T). Each base attaches to a deoxyribose sugar as part of a nucleotide subunit. These bases pair specifically with each other—C pairs with G and A pairs with T—through different numbers of hydrogen bonds, which is fundamental to DNA's double helix structure.
Q2: How are nucleotides linked together in a DNA strand?
Nucleotides are linked by phosphodiester bonds that covalently connect the third carbon atom of one sugar to the fifth carbon atom of the next sugar molecule. This bonding pattern creates the sugar-phosphate backbone of each DNA strand. The backbone provides structural stability while bases extend inward to form base pairs between the two antiparallel strands.
Q3: Why do adenine and thymine pair together in DNA?
Adenine and thymine pair together because they form a specific number of hydrogen bonds between them. Similarly, cytosine and guanine form a different number of hydrogen bonds. These chemical differences in hydrogen bonding ensure that base pairing is specific and consistent, which is critical for accurate DNA replication and maintaining the integrity of genetic information across generations.
Q4: What is the significance of the major and minor grooves in DNA?
The major groove occurs where the sugar-phosphate backbones are relatively far apart, providing accessible space for DNA-binding proteins such as transcription factors to interact with the DNA. The minor groove, where backbones are close together, accommodates relatively few proteins. These grooves are essential for regulating gene expression and other cellular processes that depend on protein-DNA interactions.
Q5: How many base pairs are present in each complete turn of the DNA double helix?
Each complete turn of the DNA double helix contains ten base pairs. This regular spacing results from the antiparallel arrangement of the two polynucleotide chains winding around each other. The consistent geometry of the double helix, with its predictable base pair spacing, allows the structure to efficiently pack genetic information while remaining accessible to cellular machinery.
Q6: What role did Chargaff's Rule play in determining DNA structure?
Chargaff's Rule, discovered in the late 1940s, established that the amount of adenine in DNA equals thymine, and guanine equals cytosine. This pattern provided crucial evidence for understanding base pairing and was instrumental in enabling Watson and Crick to construct accurate physical models of DNA's three-dimensional structure in the early 1950s.
Q7: How does DNA function as genetic material across different organisms?
DNA is the genetic material responsible for passing traits from generation to generation in all organisms and most viruses. Its double helix structure, with specific base pairing and antiparallel strands, ensures stable storage and accurate replication of genetic information. This universal role makes DNA fundamental to understanding life across the tree of life bacteria archaea and eukaryotes.