Isolation of endoplasmic reticulum, mitochondria, and mitochondria‐associated membrane and detergent resistant membrane fractions from transfected cells and from …

CD Williamson, DS Wong, P Bozidis… - Current protocols in …, 2015 - Wiley Online Library
CD Williamson, DS Wong, P Bozidis, A Zhang, AM Colberg‐Poley
Current protocols in cell biology, 2015Wiley Online Library
Increasingly mechanistic virology studies require dependable and sensitive methods for
isolating purified organelles containing functional cellular sub‐domains. The mitochondrial
network is, in part, closely apposed to the endoplasmic reticulum (ER). The mitochondria‐
associated membrane (MAM) fraction provides direct physical contact between the ER and
mitochondria. Characterization of the dual localization and trafficking of human
cytomegalovirus (HCMV) UL37 proteins required establishing protocols in which the ER and …
Abstract
Increasingly mechanistic virology studies require dependable and sensitive methods for isolating purified organelles containing functional cellular sub‐domains. The mitochondrial network is, in part, closely apposed to the endoplasmic reticulum (ER). The mitochondria‐associated membrane (MAM) fraction provides direct physical contact between the ER and mitochondria. Characterization of the dual localization and trafficking of human cytomegalovirus (HCMV) UL37 proteins required establishing protocols in which the ER and mitochondria could be reliably separated. Because of its documented role in lipid and ceramide transfer from the ER to mitochondria, a method to purify MAM from infected cells was also developed. Two robust procedures were developed to efficiently isolate mitochondria, ER, and MAM fractions while providing substantial protein yields from HCMV‐infected primary fibroblasts and from transfected HeLa cells. Furthermore, this unit includes protocols for isolation of detergent resistant membranes from subcellular fractions as well as techniques that allow visualization of the mitochondrial network disruption that occurs in permissively infected cells by their optimal resolution in Percoll gradients. © 2015 by John Wiley & Sons, Inc.
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