サインイン

Many cellular signals are hydrophilic and cannot pass through the plasma membrane. However, small or hydrophobic signaling molecules can cross the hydrophobic core of the plasma membrane and bind intracellular receptors that reside within the cell cytoplasm or nucleus. Many mammalian steroid hormones and nitric oxide (NO) gas use this cell signaling mechanism.

Similar to membrane-bound receptors, the binding of a ligand to the intracellular receptor of causes a conformational change in the receptor to activate it. Like transcription factors, the active receptor can bind to receptor-specific DNA binding sites to increase or decrease the transcription of the target genes. In the case of an intracellular receptor located in the cytoplasm, the receptor-ligand complex must first cross the nuclear membrane.

Many steroid hormones, including estrogen and testosterone, use intracellular receptors to induce specific effects. For example, estrogen can diffuse across the membrane; binding of estrogen to its receptor results in dimerization of the receptors and transport of the ligand-receptor complex into the nucleus. Once in the nucleus, the complex can bind to DNA sequences called Estrogen-Response Elements (EREs). Depending on the other transcription factors and co-activators, the binding of activated estrogen receptors to EREs may cause an increase or decrease in the transcription of target genes.

Activating other intracellular receptors, such as some thyroid hormone receptors, requires ligands to cross both the plasma membrane and nuclear membrane, as the corresponding receptors usually reside in the nucleus.

タグ
Internal ReceptorsCellular SignalsHydrophilic Signaling MoleculesPlasma MembraneHydrophobic Signaling MoleculesIntracellular ReceptorsSteroid HormonesNitric Oxide NOLigand BindingConformational ChangeTranscription FactorsReceptor ligand ComplexEstrogenTestosteroneDimerizationNuclear MembraneEstrogen Response Elements EREsThyroid Hormone Receptors

章から 21:

article

Now Playing

21.4 : Types of Receptors: Internal Receptors

細胞シグナル伝達の原理

17.2K 閲覧数

article

21.1 : 細胞シグナル伝達の概要

細胞シグナル伝達の原理

19.4K 閲覧数

article

21.2 : シグナル伝達分子の種類

細胞シグナル伝達の原理

9.7K 閲覧数

article

21.3 : 受容体の種類:細胞表面受容体

細胞シグナル伝達の原理

16.1K 閲覧数

article

21.5 : シグナル伝達複合体の組み立て

細胞シグナル伝達の原理

5.6K 閲覧数

article

21.6 : シグナル伝達経路間の相互作用

細胞シグナル伝達の原理

6.1K 閲覧数

article

21.7 : セカンドメッセンジャーによる信号の増幅

細胞シグナル伝達の原理

6.5K 閲覧数

article

21.8 : 酵素カスケードによるシグナルの増幅

細胞シグナル伝達の原理

7.9K 閲覧数

article

21.9 : 細胞シグナル伝達応答の多様性

細胞シグナル伝達の原理

6.1K 閲覧数

article

21.10 : 細胞シグナル伝達フィードバックループ

細胞シグナル伝達の原理

6.1K 閲覧数

article

21.11 : 植物における細胞シグナル伝達

細胞シグナル伝達の原理

5.2K 閲覧数

article

21.12 : 植物ホルモン

細胞シグナル伝達の原理

4.7K 閲覧数

JoVE Logo

個人情報保護方針

利用規約

一般データ保護規則

研究

教育

JoVEについて

Copyright © 2023 MyJoVE Corporation. All rights reserved