로그인

ADP/ATP carrier or AAC protein is the most abundant carrier protein in the inner mitochondrial membrane. It transports large quantities of ADP and ATP, equivalent to the average human body weight, every day. Among other transporters, ACC protein is one of the best-studied members of the mitochondrial carrier protein family. The ADP/ATP carrier protein comprises two transmembrane helices connected to a loop and a single alpha-helix on the matrix side. It switches between two conformational states: cytoplasmic-open state and matrix-open state. As a result, the transporter's substrate-binding site is alternately accessible to each of the compartments for ADP/ATP binding.

Most eukaryotic cells express different isoforms of the ADP/ATP carrier protein. For instance, humans have four isoforms, AAC1, AAC2, AAC3, and AAC4, with varying expression patterns between cells. Irrespective of the isoforms, all ADP/ATP carrier proteins have notably higher substrate specificity than other transporters within the mitochondrial membranes. AAC recognizes each part of the nucleotide structure and allows only charged nucleotides to pass through. For instance, ATP has a charge of -4, and ADP carries a -3 charge, and both are, therefore, recognized by AAC protein. In contrast, AAC rejects any uncharged nucleotide, such as AMP, due to its charge selectivity.

Most transporters form large supercomplexes with other proteins. It was long believed that ADP/ATP carrier, phosphate carrier proteins, and the ATP synthase form a large complex called ATP synthasome. However, it is now known that ATP synthase forms dimers on the cristae tip. This arrangement renders only the rotating c-ring exposed to the lipid bilayer with no plausible binding sites for the transporters. Thus, the ACC functions independently in transporting ADP and ATP across the inner mitochondrial membrane.

Tags
ADP ATP Carrier ProteinAAC ProteinMitochondrial MembraneTransporterIsoformsSubstrate SpecificityNucleotide StructureCharged NucleotidesUncharged NucleotidesSupercomplexes

장에서 19:

article

Now Playing

19.12 : The ADP/ATP Carrier Protein

Mitochondria and Energy Production

3.0K Views

article

19.1 : 미토콘드리아

Mitochondria and Energy Production

8.8K Views

article

19.2 : 미토콘드리아 막

Mitochondria and Energy Production

6.5K Views

article

19.3 : 내부 미토콘드리아 막

Mitochondria and Energy Production

3.1K Views

article

19.4 : 구연산 회로: 개요

Mitochondria and Energy Production

15.5K Views

article

19.5 : 구연산 회로: 산출

Mitochondria and Energy Production

7.1K Views

article

19.6 : 전자 수송 사슬 : 복합체 I 및 II

Mitochondria and Energy Production

9.3K Views

article

19.7 : 전자 수송계: 복합체 III 및 IV

Mitochondria and Energy Production

6.5K Views

article

19.8 : ATP Synthase: 메커니즘

Mitochondria and Energy Production

13.3K Views

article

19.9 : 전자 수송 사슬

Mitochondria and Energy Production

15.5K Views

article

19.10 : 크리스타 막(Crista Membrane)의 슈퍼콤플렉스

Mitochondria and Energy Production

2.4K Views

article

19.11 : ATP 합성효소: 구조

Mitochondria and Energy Production

11.6K Views

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유