登录

Allosteric regulation of enzymes occurs when the binding of an effector molecule to a site that is different from the active site causes a change in the enzymatic activity. This alternate site is called an allosteric site, and an enzyme can contain more than one of these sites. Allosteric regulation can either be positive or negative, resulting in an increase or decrease in enzyme activity. Most enzymes that display allosteric regulation are metabolic enzymes involved in the degradation or synthesis of specific cellular molecules.

Allosteric Inhibition

In allosteric inhibition, the binding of an effector molecule to the allosteric site causes a conformational change that reduces the affinity of the enzyme for the substrate. Frequently, the allosteric inhibitor is a product of the enzyme or the enzyme pathway, allowing enzymatic products to limit their own production. This type of feedback inhibition prevents overproduction of products. As a classic example, isoleucine is an allosteric inhibitor of an enzyme important in its own synthesis.

Allosteric Activation

In contrast, an allosteric activator causes a conformational change that increases the affinity of the enzyme for its substrate. Allosteric activation dramatically increases the rate of reaction, as represented by the hyperbolic curve on a reaction rate versus substrate concentration graph. As an example, extracellular ligand binding to the transmembrane EGF receptor causes a conformational change that results in an increase in the intracellular kinase activity of the receptor. If an enzyme is composed of multiple subunits, binding of an allosteric activator to a single subunit can cause an increase in affinity and shape change for all of the affiliated subunits.

Suggested Reading

Tags
Allosteric RegulationEnzyme ControlAllosteric SiteConformational ChangeShape ChangeAffinitySubstrate Concentration GraphAllosteric ActivationPositive S shaped CurveLag TimeSubstrate BindingRapid Reaction SpeedEffector MoleculeAllosteric InhibitionEnzyme FunctionChemical Reaction RateEnzymatic Activity

来自章节 7:

article

Now Playing

7.14 : Allosteric Regulation

细胞呼吸

56.7K Views

article

7.1 : 什么是代谢?

细胞呼吸

111.5K Views

article

7.2 : 热力学第一定律

细胞呼吸

60.0K Views

article

7.3 : 热力学第二定律

细胞呼吸

55.9K Views

article

7.4 : 动能

细胞呼吸

38.3K Views

article

7.5 : 势能

细胞呼吸

38.0K Views

article

7.6 : 自由能

细胞呼吸

47.3K Views

article

7.7 : 活化能

细胞呼吸

77.3K Views

article

7.8 : ATP水解

细胞呼吸

73.6K Views

article

7.9 : 磷酸化

细胞呼吸

48.8K Views

article

7.10 : 诱导拟合模型

细胞呼吸

79.1K Views

article

7.11 : 酶动力学

细胞呼吸

94.2K Views

article

7.12 : 酶抑制

细胞呼吸

76.9K Views

article

7.13 : 反馈抑制

细胞呼吸

53.0K Views

article

7.15 : 辅助因子和辅酶

细胞呼吸

80.1K Views

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。