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相关概念视频

Nucleosome Remodeling02:54

Nucleosome Remodeling

10.7K
Nucleosomes are the basic units of chromatin compaction. Each nucleosome consists of the DNA bound tightly around a histone core, which makes the DNA inaccessible to DNA binding proteins such as DNA polymerase and RNA polymerase. Hence, the fundamental problem is to ensure access to DNA when appropriate, despite the compact and protective chromatin structure.
Nucleosome remodeling complex
Eukaryotic cells have specialized enzymes called ATP-dependent nucleosome remodeling enzymes. These enzymes...
10.7K
DNA Helicases00:55

DNA Helicases

23.7K
DNA unwinding helicase enzymes are a type of motor protein. Motor proteins can translocate along filaments or polymers using energy generated from ATP hydrolysis. Helicases are involved in all the important cellular processes where DNA unwinding is required, such as DNA replication, repair, recombination, and transcription. They are present in all living organisms, but vary in their structure, function, and mechanism of action. For example, in prokaryotes, DnaB helicase binds and translocates...
23.7K
Translesion DNA Polymerases02:10

Translesion DNA Polymerases

10.9K
Translesion (TLS) polymerases rescue stalled DNA polymerases at sites of damaged bases by replacing the replicative polymerase and installing a nucleotide across the damaged site. Doing so, TLS allows additional time for the cell to repair the damage before resuming regular DNA replication.
TLS polymerases are found in all three domains of life - archaea, bacteria, and eukaryotes. Of the different classes of TLS polymerases, members of the Y family are fitted with specialized structures that...
10.9K
Single-Strand DNA Binding Proteins01:03

Single-Strand DNA Binding Proteins

16.4K
For successful DNA replication, the unwinding of double-stranded DNA must be accompanied by stabilization and protection of the separated single strands of the DNA. This crucial task is performed by single-strand DNA-binding (SSB) proteins. They bind to the DNA in a sequence-independent manner, which means that the nitrogenous bases of the DNA need not be present in a specific order for binding of SSB proteins to it. The binding of SSB proteins straightens single-stranded DNA (ssDNA) and makes...
16.4K
Protein Diffusion in the Membrane01:24

Protein Diffusion in the Membrane

5.4K
Proteins show rotational as well as lateral diffusion across the membrane. The lateral diffusion of proteins was confirmed through the cell fusion experiment where mouse and human cells were fused, resulting in hybrid cells. When the human and mouse cells fused, the specific membrane proteins on human and mouse cells were marked with the red and green-fluorescent markers, respectively. Initially, the red and green fluorescence was located on the respective hemisphere of the cell. As time...
5.4K
DNA as a Genetic Template02:05

DNA as a Genetic Template

27.2K
Two structural features of the DNA molecule provide a basis for the mechanisms of heredity: the four nucleotide bases and its double-stranded nature. The Watson-Crick model of double-helical DNA structure, proposed in 1952, drew heavily upon the X-ray crystallography work of researchers Rosalind Franklin and Maurice Wilkins. Watson, Crick, and Wilkins jointly received the Nobel Prize in Physiology or Medicine for their work in 1962. Franklin was, controversially, excluded from the prize for...
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相关实验视频

Updated: Jan 6, 2026

Structure-Based Simulation and Sampling of Transcription Factor Protein Movements along DNA from Atomic-Scale Stepping to Coarse-Grained Diffusion
09:17

Structure-Based Simulation and Sampling of Transcription Factor Protein Movements along DNA from Atomic-Scale Stepping to Coarse-Grained Diffusion

Published on: March 1, 2022

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DNA结合蛋白的形状感知扩散性在DNA沿线经历旋转合的滑动动态.

Shrawan Kumar Choudhary1, Kavana Priyadarshini Keshava1, Arnab Bhattacherjee1

  • 1School of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi 110067, India.

The journal of physical chemistry. B
|November 29, 2025
PubMed
概括

我们开发了BBXB,这是一个新的模型,可以预测DNA结合蛋白如何沿着DNA移动. 它准确地将蛋白质形状与滑动动力学联系起来,改进了旧模型.

科学领域:

  • 生物物理学的生物物理.
  • 计算生物学 计算生物学
  • 分子动力学分子动力学

背景情况:

  • DNA结合蛋白通过旋转合的滑动定位目标.
  • 经典的Bagchi-Blainey-Xie (BBX) 模型使用了蛋白质的球形近似.
  • 现有的模型缺乏详细的结构整合,无法准确地进行水力动力学预测.

研究的目的:

  • 介绍BBXB,一种形状感知的DNA-蛋白滑动的水力动力学模型.
  • 通过结合3D蛋白质结构和异构性来提高预测准确性.
  • 建立一个无参数的框架,将分子形状与滑动动力学联系起来.

主要方法:

  • 从使用Happel-Brenner积分的3D蛋白质结构中获得翻译和旋转摩擦.
  • 纳入了蛋白质-DNA相互作用能量景观的粗度参数.
  • 对各种DNA结合蛋白的实验扩散系数和水力动力学基准进行了验证BBXB.

主要成果:

  • BBXB准确地复制了Lac抑制剂和hOgg1糖酶的实验扩散系数.
  • 在27种蛋白质中,BBXB预测与SoMo/GRPY基准有很强的相关性 (R2 ≈ 0.99).
  • 旋转阻力被确定为主要的消散因子,随着形状异型和DNA偏移而增加.

更多相关视频

A Simple, Robust, and High Throughput Single Molecule Flow Stretching Assay Implementation for Studying Transport of Molecules Along DNA
12:05

A Simple, Robust, and High Throughput Single Molecule Flow Stretching Assay Implementation for Studying Transport of Molecules Along DNA

Published on: October 1, 2017

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Studying DNA Looping by Single-Molecule FRET
11:27

Studying DNA Looping by Single-Molecule FRET

Published on: June 28, 2014

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相关实验视频

Last Updated: Jan 6, 2026

Structure-Based Simulation and Sampling of Transcription Factor Protein Movements along DNA from Atomic-Scale Stepping to Coarse-Grained Diffusion
09:17

Structure-Based Simulation and Sampling of Transcription Factor Protein Movements along DNA from Atomic-Scale Stepping to Coarse-Grained Diffusion

Published on: March 1, 2022

3.5K
A Simple, Robust, and High Throughput Single Molecule Flow Stretching Assay Implementation for Studying Transport of Molecules Along DNA
12:05

A Simple, Robust, and High Throughput Single Molecule Flow Stretching Assay Implementation for Studying Transport of Molecules Along DNA

Published on: October 1, 2017

8.5K
Studying DNA Looping by Single-Molecule FRET
11:27

Studying DNA Looping by Single-Molecule FRET

Published on: June 28, 2014

15.8K

结论:

  • BBXB为DNA-蛋白滑动提供了一个可预测的,无参数的水力动力学模型.
  • 分子形状和异质性是1D滑动动态的关键决定因素.
  • 该模型量化地将蛋白质结构与生物物理滑动机制联系起来.