학술논문

Metallochaperones Regulate Intracellular Copper Levels
Document Type
article
Source
PLOS Computational Biology. 9(1)
Subject
Biochemistry and Cell Biology
Biological Sciences
Aetiology
2.1 Biological and endogenous factors
Copper
Flow Cytometry
Green Fluorescent Proteins
Halobacterium salinarum
Homeostasis
Ion Transport
Mass Spectrometry
Metallochaperones
Models
Theoretical
Oligonucleotide Array Sequence Analysis
RNA
Messenger
Transcription
Genetic
Mathematical Sciences
Information and Computing Sciences
Bioinformatics
Language
Abstract
Copper (Cu) is an important enzyme co-factor that is also extremely toxic at high intracellular concentrations, making active efflux mechanisms essential for preventing Cu accumulation. Here, we have investigated the mechanistic role of metallochaperones in regulating Cu efflux. We have constructed a computational model of Cu trafficking and efflux based on systems analysis of the Cu stress response of Halobacterium salinarum. We have validated several model predictions via assays of transcriptional dynamics and intracellular Cu levels, discovering a completely novel function for metallochaperones. We demonstrate that in addition to trafficking Cu ions, metallochaperones also function as buffers to modulate the transcriptional responsiveness and efficacy of Cu efflux. This buffering function of metallochaperones ultimately sets the upper limit for intracellular Cu levels and provides a mechanistic explanation for previously observed Cu metallochaperone mutation phenotypes.