JoVE Logo

登录

A single mitochondrion is a bean-shaped organelle enclosed by a double-membrane system. The outer membrane of mitochondria is smooth and contains many porins - the integral membrane transporters. Porins enable free diffusion of ions and small uncharged molecules through the outer mitochondrial membrane but limit the transport of molecules larger than 5000 Daltons. Further, the outer mitochondrial membrane forms a unique structure called membrane contact sites with other subcellular organelles, such as endoplasmic reticulum, peroxisome, endosome, lysosome, and plasma membrane.

The outer mitochondrial membrane is structurally and functionally different from the inner mitochondrial membrane that has many invaginations called cristae. The cristae accommodate many protein complexes and enzymes for oxidative phosphorylation (OXPOS) or respiratory functions. The arrangement of the inner membrane into cristae is dependent on the membrane shaping proteins such as the mitochondrial contact sites and cristae organizing system or MICOS.

The characteristic shape of the mitochondrial membranes is crucial for its functions, including ATP synthesis, autophagy (or mitophagy), stem cell differentiation, and innate immune response. However, to facilitate specific functions, the mitochondrial membranes undergo structural modifications. For example, when respiratory reactions are triggered, the cristae density increases to accommodate more enzymes and metabolites, thus improving the rate of oxidative phosphorylation.

Also, the mitochondrial membranes can undergo fusion or fission to orchestrate the cellular needs. For instance, many mitochondria can fuse to combine their enzymes, cofactors, and other resources to increase the efficiency of ATP production when needed. In contrast, individual mitochondria can undergo fission (or fragmentation) to produce more reactive oxygen species that can mediate efficient degradation of internal organelles in a dying cell. Moreover, fragmentation of the mitochondrion is a critical mechanism necessary for equal distribution of mitochondria into daughter cells during cell division.

Tags

Mitochondrial MembranesDouble membrane SystemOuter Mitochondrial MembranePorinsMembrane Contact SitesEndoplasmic ReticulumPeroxisomeEndosomeLysosomePlasma MembraneInner Mitochondrial MembraneCristaeOxidative Phosphorylation OXPOSRespiratory FunctionsMembrane Shaping ProteinsMitochondrial Contact Sites And Cristae Organizing System MICOSATP SynthesisAutophagyMitophagyStem Cell DifferentiationInnate Immune Response

来自章节 19:

article

Now Playing

19.2 : Mitochondrial Membranes

Mitochondria and Energy Production

6.6K Views

article

19.1 : 线粒体

Mitochondria and Energy Production

8.9K Views

article

19.3 : 线粒体内膜

Mitochondria and Energy Production

3.2K Views

article

19.4 : 柠檬酸循环:概述

Mitochondria and Energy Production

15.7K Views

article

19.5 : 柠檬酸循环:输出

Mitochondria and Energy Production

7.4K Views

article

19.6 : 电子传递链:复合物 I 和 II

Mitochondria and Energy Production

9.6K Views

article

19.7 : 电子传递链:复合物 III 和 IV

Mitochondria and Energy Production

6.8K Views

article

19.8 : ATP 合酶:机制

Mitochondria and Energy Production

13.7K Views

article

19.9 : 电子传递链

Mitochondria and Energy Production

15.8K Views

article

19.10 : Crista 膜中的超复合物

Mitochondria and Energy Production

2.4K Views

article

19.11 : ATP 合酶:结构

Mitochondria and Energy Production

11.8K Views

article

19.12 : ADP/ATP 载体蛋白

Mitochondria and Energy Production

3.1K 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。