Phosphatidylinositol-(4,5)-Bisphosphate Regulates Plasma Cholesterol Through LDL (Low-Density Lipoprotein) Receptor Lysosomal Degradation

Author:

Qin Yuanyuan1,Ting Flora1,Kim Mee J.2,Strelnikov Jacob2,Harmon Joseph2,Gao Feng2,Dose Andrea2,Teng Ba-Bie3,Alipour Mohsen Amir4,Yao Zemin4,Crooke Rosanne5,Krauss Ronald M.1,Medina Marisa W.1

Affiliation:

1. From the Department of Pediatrics, University of California San Francisco, Oakland (Y.Q., F.T., R.M.K., M.W.M.)

2. Children’s Hospital Oakland Research Institute, CA (M.J.K., J.S., J.H., F.G., A.D.)

3. Center for Human Genetics, University of Texas Health Science Center, Houston (B.-B.T.)

4. Department of Biochemistry, Microbiology and Immunology, Ottawa Institute of Systems Biology, University of Ottawa, Ontario, Canada (M.A.A., Z.Y.)

5. Ionis Pharmaceuticals, Carlsbad, CA (R.C.).

Abstract

Objective: TMEM55B (transmembrane protein 55B) is a phosphatidylinositol-(4,5)-bisphosphate (PI[4,5]P 2 ) phosphatase that regulates cellular cholesterol, modulates LDLR (low-density lipoprotein receptor) decay, and lysosome function. We tested the effects of Tmem55b knockdown on plasma lipids in mice and assessed the roles of LDLR lysosomal degradation and change in (PI[4,5]P 2 ) in mediating these effects. Approach and Results: Western diet–fed C57BL/6J mice were treated with antisense oligonucleotides against Tmem55b or a nontargeting control for 3 to 4 weeks. Hepatic Tmem55b transcript and protein levels were reduced by ≈70%, and plasma non-HDL (high-density lipoprotein) cholesterol was increased ≈1.8-fold ( P <0.0001). Immunoblot analysis of fast protein liquid chromatography (FPLC) fractions revealed enrichment of ApoE-containing particles in the LDL size range. In contrast, Tmem55b knockdown had no effect on plasma cholesterol in Ldlr −/− mice. In primary hepatocytes and liver tissues from Tmem55b knockdown mice, there was decreased LDLR protein. In the hepatocytes, there was increased lysosome staining and increased LDLR-lysosome colocalization. Impairment of lysosome function (incubation with NH 4 Cl or knockdown of the lysosomal proteins LAMP1 or RAB7 ) abolished the effect of TMEM55B knockdown on LDLR in HepG2 (human hepatoma) cells. Colocalization of the recycling endosome marker RAB11 (Ras-related protein 11) with LDLR in HepG2 cells was reduced by 50% upon TMEM55B knockdown. Finally, knockdown increased hepatic PI(4,5)P 2 levels in vivo and in HepG2 cells, while TMEM55B overexpression in vitro decreased PI(4,5)P 2 . TMEM55B knockdown decreased, whereas overexpression increased, LDL uptake in HepG2 cells. Notably, the TMEM55B overexpression effect was reversed by incubation with PI(4,5)P 2. Conclusions: These findings indicate a role for TMEM55B in regulating plasma cholesterol levels by affecting PI(4,5)P 2 -mediated LDLR lysosomal degradation.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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