4.5 Article

The Structural Basis of Cholesterol Accessibility in Membranes

期刊

BIOPHYSICAL JOURNAL
卷 105, 期 8, 页码 1838-1847

出版社

CELL PRESS
DOI: 10.1016/j.bpj.2013.08.042

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资金

  1. National Institutes of Health [R01 HL067773]
  2. Institutional Cardiovascular Biology Training [T32111-007275]
  3. National Institutes of Health (NIH) [F30 HL97563]
  4. National Biorhedical Computation Resource [NM P41 RR0860516]
  5. Extreme Science and Engineering Discovery Environment (XSEDE)
  6. National Science Foundation [OCI1053575]
  7. [TG-MCB060053]
  8. [TG-MCAO8X003]

向作者/读者索取更多资源

Although the majority of free cellular cholesterol is present in the plasma membrane, cholesterol homeostasis is principally regulated through sterol-sensing proteins that reside in the cholesterol-poor endoplasnnic reticulum (ER). In response to acute cholesterol loading or depletion, there is rapid equilibration between the ER and plasma membrane cholesterol pools, suggesting a biophysical model in which the availability of plasma membrane cholesterol for trafficking to internal membranes modulates ER membrane behavior. Previous studies have predominantly examined cholesterol availability in terms of binding to extrannembrane acceptors, but have provided limited insight into the structural changes underlying cholesterol activation. In this study, we use both molecular dynamics simulations and experimental membrane systems to examine the behavior of cholesterol in membrane bilayers. We find that cholesterol depth within the bilayer provides a reasonable structural metric for cholesterol availability and that this is correlated with cholesterol-acceptor binding. Further, the distribution of cholesterol availability in our simulations is continuous rather than divided into distinct available and unavailable pools. This data provide support for a revised cholesterol activation model in which activation is driven not by saturation of membrane-cholesterol interactions but rather by bulk membrane remodeling that reduces membrane-cholesterol affinity.

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