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相关概念视频

Protein Denaturation01:28

Protein Denaturation

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The function of proteins depends on their native three-dimensional structure, which is dictated by the amino acid sequence of the specific protein. Folding of the polypeptide chain takes place under specific conditions that energetically favor the folded conformation. In contrast, protein denaturation occurs spontaneously under unfavorable conditions that disrupt the integrity of the folded conformation. Thus, the chemical and physical environment of a protein, such as significant changes in pH...
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Effects of Temperature on Free Energy02:11

Effects of Temperature on Free Energy

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The spontaneity of a process depends upon the temperature of the system. Phase transitions, for example, will proceed spontaneously in one direction or the other depending upon the temperature of the substance in question. Likewise, some chemical reactions can also exhibit temperature-dependent spontaneities. To illustrate this concept, the equation relating free energy change to the enthalpy and entropy changes for the process is considered:
25.7K
Factors Influencing Microbial Growth: Temperature01:27

Factors Influencing Microbial Growth: Temperature

68
Microorganisms display remarkable adaptations, enabling them to thrive in diverse ecological niches across a wide range of temperatures. Temperature profoundly influences microbial growth by affecting enzymatic activity, membrane fluidity, and other cellular processes.Each microorganism operates within a specific temperature range defined by three cardinal points: minimum, optimum, and maximum. Below the minimum temperature, membranes lose fluidity, halting transport processes. Above the...
68
Protein Folding01:25

Protein Folding

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Proteins are chains of amino acids linked together by peptide bonds. Upon synthesis, a protein folds into a three-dimensional conformation, critical to its biological function. Interactions between its constituent amino acids guide protein folding, and hence the protein structure is primarily dependent on its amino acid sequence.
Protein Structure Is Critical to Its Biological Function
Proteins perform a wide range of biological functions such as catalyzing chemical reactions, providing...
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Atomic Spectroscopy: Effects of Temperature01:27

Atomic Spectroscopy: Effects of Temperature

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Atomization, converting samples into gas-phase atoms and ions, is essential for atomic spectroscopy. The flame temperature required for atomization affects the efficiency of the atomic spectroscopic methods by increasing the atomization efficiency and the relative population of the excited and ground states.
At thermal equilibrium, the relative populations of excited and ground state atoms can be estimated using the Maxwell–Boltzmann distribution. For example, an increase in temperature...
368
Noncovalent Attractions in Biomolecules02:35

Noncovalent Attractions in Biomolecules

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Noncovalent attractions are associations within and between molecules that influence the shape and structural stability of complexes. These interactions differ from covalent bonding in that they do not involve sharing of electrons.
Four types of noncovalent interactions are hydrogen bonds, van der Waals forces, ionic bonds, and hydrophobic interactions.
Hydrogen bonding results from the electrostatic attraction of a hydrogen atom covalently bonded to a strong-electronegative atom like oxygen,...
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相关实验视频

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Detecting and Characterizing Protein Self-Assembly In Vivo by Flow Cytometry
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Detecting and Characterizing Protein Self-Assembly In Vivo by Flow Cytometry

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环境温度通过干扰界面聚合行为影响蛋白质自组合.

Han-Zhang Mou1, Cong-Lin Zhao1, Juan Song1

  • 1State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, PR China.

ACS omega
|July 24, 2023
PubMed
概括

环境温度在体外蛋白质纤维化动力学和分子结构上显著影响. 了解这种环境温度 (AT) 影响对于可重现的粉样蛋白自我组装研究和评估粉样蛋白加速器或抑制剂至关重要.

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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
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Determination of Protein-ligand Interactions Using Differential Scanning Fluorimetry
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Determination of Protein-ligand Interactions Using Differential Scanning Fluorimetry

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科学领域:

  • 生物化学 生物化学
  • 生物物理学的生物物理.
  • 材料科学 材料科学 材料科学

背景情况:

  • 粉样纤维化与退行性疾病有关,并具有生物医学应用.
  • 粉样纤维化的体外研究往往受到糟糕的可重现性和争论的机制的影响.
  • 环境温度 (AT) 被确定为蛋白质自组合的关键因素,但经常被忽视.

研究的目的:

  • 为了研究环境温度 (AT) 对蛋白溶酶体内自组合的影响.
  • 阐明AT对蛋白质聚合过程中的动力学和分子构造变化的影响.
  • 了解AT对蛋白质纤维化的影响的根本原因.

主要方法:

  • 采用多模式分子光谱法来监测蛋白质聚合.
  • 该研究分析了界面面积和催化对蛋白质聚合的依赖性.
  • 蛋白溶酶被用作体外自我组装研究的模型球状蛋白.

主要成果:

  • 环境温度被证实是蛋白溶酶纤维化的重要干扰因素.
  • 证明AT会影响蛋白质聚合的动力学,并诱导形状变化.
  • 对AT的影响归因于在两相接口上的各种蛋白质聚合行为.

结论:

  • 澄清环境温度对于准确的体外蛋白纤维化机制研究至关重要.
  • 这一发现为蛋白质自我组装机制提供了新的视角.
  • 这些结果可能会影响对粉样蛋白加速剂和抑制剂的评估.