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Phosphatidylserine dynamics in cellular membranes.

Jason G Kay, Mirkka Koivusalo, Xiaoxiao Ma, Thorsten Wohland, Sergio Grinstein
Other Molecular biology of the cell 2012 173 उद्धरण
PubMed DOI
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Study Design

अध्ययन प्रकार
In Vitro
जनसंख्या
Cellular membranes (in vitro/in vivo imaging)
हस्तक्षेप
Phosphatidylserine dynamics in cellular membranes. None
तुलनित्र
None
प्राथमिक परिणाम
PS topology and dynamics in endomembranes
प्रभाव की दिशा
Neutral
पूर्वाग्रह का जोखिम
Unclear

Abstract

Much has been learned about the role of exofacial phosphatidylserine (PS) in apoptosis and blood clotting using annexin V. However, because annexins are impermeant and unable to bind PS at low calcium concentration, they are unsuitable for intracellular use. Thus little is known about the topology and dynamics of PS in the endomembranes of normal cells. We used two new probes-green fluorescent protein (GFP)-LactC2, a genetically encoded fluorescent PS biosensor, and 1-palmitoyl-2-(dipyrrometheneboron difluoride)undecanoyl-sn-glycero-3-phospho-L-serine (TopFluor-PS), a synthetic fluorescent PS analogue-to examine PS distribution and dynamics inside live cells. The mobility of PS was assessed by a combination of advanced optical methods, including single-particle tracking and fluorescence correlation spectroscopy. Our results reveal the existence of a sizable fraction of PS with limited mobility, with cortical actin contributing to the confinement of PS in the plasma membrane. We were also able to measure the dynamics of PS in endomembrane organelles. By targeting GFP-LactC2 to the secretory pathway, we detected the presence of PS in the luminal leaflet of the endoplasmic reticulum. Our data provide new insights into properties of PS inside cells and suggest mechanisms to account for the subcellular distribution and function of this phospholipid.

संक्षेप में

The distribution and dynamics of phosphatidylserine are studied in the plasma membrane and in organellar membranes of live cells using two novel fluorescent probes in combination with various biophysical techniques, including fluorescence correlation spectroscopy and single-particle tracking.

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