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相关概念视频

Protein Complex Assembly02:41

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...
Protein Complexes with Interchangeable Parts01:57

Protein Complexes with Interchangeable Parts

Groups of proteins may form a complex where each protein in this complex has a different role in the overall execution of the complex’s function. Often some of the proteins in the complex can be replaced by a closely related variant to give a complex that contains many of the same components yet is functionally distinct.
The SCF ubiquitin ligase is a protein complex of five individual proteins. This complex attaches ubiquitin to other target proteins to mark them for degradation. In order to...
Synthetic Biology02:55

Synthetic Biology

Synthetic biology is an interdisciplinary science that involves using principles from disciplines such as engineering, molecular biology, cell biology, and systems biology. It involves remodeling existing organisms from nature or constructing completely new synthetic organisms for applications such as protein or enzyme production, bioremediation, value-added macromolecule production, and the addition of desirable traits to crops, to name a few.
Golden rice
Golden rice is a genetically modified...
ATP and Macromolecule Synthesis01:28

ATP and Macromolecule Synthesis

Biological macromolecules are organic compounds, predominantly composed of carbon atoms. The carbon atoms are covalently bonded with hydrogen, oxygen, nitrogen, and other minor elements. There are four major biological macromolecule classes: carbohydrates, lipids, proteins, and nucleic acids.
Most macromolecules are composed of single subunits, or building blocks, called monomers. The monomers combine with each other using covalent bonds to form larger molecules known as polymers.
Conversion of...
The Central Dogma01:20

The Central Dogma

The central dogma explains the flow of genetic information from DNA nucleotides to the amino acid sequence of proteins.
RNA is the Missing Link Between DNA and Proteins
In the early 1900s, scientists discovered that DNA stores all the information needed for cellular functions and that proteins perform most of these functions. However, the mechanisms of converting genetic information into functional proteins remained unknown for many years. Initially, it was believed that a single gene is...
Biosynthesis in Bacteria01:24

Biosynthesis in Bacteria

Biosynthesis in bacteria is a fundamental anabolic process that generates essential macromolecules, including proteins, nucleic acids, lipids, and polysaccharides. These macromolecules are critical for cellular growth, replication, and function. The process is tightly regulated and energetically linked to catabolic pathways to ensure optimal resource utilization.Biosynthetic pathways begin with precursor metabolites such as pyruvate, acetyl-CoA, and glucose-6-phosphate derived from glycolysis,...

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相关实验视频

Updated: Jul 11, 2026

Designing a Bio-responsive Robot from DNA Origami
13:32

Designing a Bio-responsive Robot from DNA Origami

Published on: July 8, 2013

由生物分子制成的可编程和自主计算机器.

Y Benenson1, T Paz-Elizur, R Adar

  • 1Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot 76100, Israel.

Nature
|November 24, 2001
PubMed
概括

研究人员使用DNA和酶开发了一种自主分子有限自动机. 这种可编程DNA计算机能够高效地解决纳米级的计算问题.

科学领域:

  • 生物技术是生物技术.
  • 分子计算分子计算
  • 生物信息学是一种生物信息学.

背景情况:

  • 自动机理论是现代计算的基础,图灵机激发了早期计算机的发展.
  • 数据带和DNA之间的类比推动了对DNA计算的研究.
  • 自主分子规模计算仍然是一个重大挑战.

研究的目的:

  • 描述一个可编程的有限自动机,在分子尺度上自主运行.
  • 展示一种基于DNA的计算设备,能够解决计算问题.
  • 以一种新的自主系统推进分子计算领域.

主要方法:

  • 使用DNA和DNA操纵酶 (限制核酶和结合酶) 设计了一个有限自动机.
  • 使用双链DNA分子编码软件和输入.
  • 利用一连串的限制,杂交和结合循环进行自主处理.

主要成果:

  • 使用可编程基于DNA的有限自动机实现了自主计算.
  • 在室温下,在一个小容量 (120微升) 中,证明了10^12自动机的并行操作.
  • 报告了每秒10^9个转换率的高转换率,具有>99.8%的保真度和超低功耗 (<10^-10W).

更多相关视频

Automated Robotic Liquid Handling Assembly of Modular DNA Devices
11:22

Automated Robotic Liquid Handling Assembly of Modular DNA Devices

Published on: December 1, 2017

DNA-Tethered RNA Polymerase for Programmable In vitro Transcription and Molecular Computation
09:26

DNA-Tethered RNA Polymerase for Programmable In vitro Transcription and Molecular Computation

Published on: December 29, 2021

相关实验视频

Last Updated: Jul 11, 2026

Designing a Bio-responsive Robot from DNA Origami
13:32

Designing a Bio-responsive Robot from DNA Origami

Published on: July 8, 2013

Automated Robotic Liquid Handling Assembly of Modular DNA Devices
11:22

Automated Robotic Liquid Handling Assembly of Modular DNA Devices

Published on: December 1, 2017

DNA-Tethered RNA Polymerase for Programmable In vitro Transcription and Molecular Computation
09:26

DNA-Tethered RNA Polymerase for Programmable In vitro Transcription and Molecular Computation

Published on: December 29, 2021

结论:

  • 开发的基于DNA的有限自动机代表了迈向自主分子计算的重要一步.
  • 该系统为纳米计算提供了一个可扩展,高效和低功耗的平台.
  • 可编程性质和高性能为复杂的分子级别问题解决打开了道路.