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1.
Nat Commun ; 14(1): 6469, 2023 10 13.
Artículo en Inglés | MEDLINE | ID: mdl-37833289

RESUMEN

Niemann-Pick C1-like 1 (NPC1L1) is essential for intestinal cholesterol absorption. Together with the cholesterol-rich and Flotillin-positive membrane microdomain, NPC1L1 is internalized via clathrin-mediated endocytosis and transported to endocytic recycling compartment (ERC). When ERC cholesterol level decreases, NPC1L1 interacts with LIMA1 and moves back to plasma membrane. However, how cholesterol leaves ERC is unknown. Here, we find that, in male mice, intracellular bile acids facilitate cholesterol transport to other organelles, such as endoplasmic reticulum, in a non-micellar fashion. When cholesterol level in ERC is decreased by bile acids, the NPC1L1 carboxyl terminus that previously interacts with the cholesterol-rich membranes via the A1272LAL residues dissociates from membrane, exposing the Q1277KR motif for LIMA1 recruitment. Then NPC1L1 moves back to plasma membrane. This study demonstrates an intracellular cholesterol transport function of bile acids and explains how the substantial amount of cholesterol in NPC1L1-positive compartments is unloaded in enterocytes during cholesterol absorption.


Asunto(s)
Colesterol , Proteínas de Transporte de Membrana , Animales , Masculino , Ratones , Transporte Biológico , Membrana Celular/metabolismo , Colesterol/metabolismo , Absorción Intestinal , Proteínas de Transporte de Membrana/metabolismo
2.
Arterioscler Thromb Vasc Biol ; 43(7): 1219-1233, 2023 07.
Artículo en Inglés | MEDLINE | ID: mdl-37165876

RESUMEN

BACKGROUND: Lower plasma levels of LDL (low-density lipoprotein) cholesterol (LDL-C) can reduce the risk of atherosclerotic cardiovascular disease. The loss-of-function mutations in PCSK9 (proprotein convertase subtilisin/kexin type 9) have been known to associate with low LDL-C in many human populations. PCSK9 genetic variants in Chinese Uyghurs who are at high risk of atherosclerotic cardiovascular disease due to their dietary habits have not been reported. METHODS: The study involved the whole-exome and target sequencing of college students from Uyghur and other ethnic groups in Xinjiang, China, for the association of PCSK9 loss-of-function mutations with low plasma levels of LDL-C. The mechanisms by which the identified mutations affect the function of PCSK9 were investigated in cultured cells using biochemical and cell assays. The causal effects of the identified PCSK9 mutations on LDL-C levels were verified in mice injected with adeno-associated virus expressing different forms of PCSK9 and fed a high-cholesterol diet. RESULTS: We identified 2 PCSK9 mutations-E144K and C378W-in Chinese Uyghurs with low plasma levels of LDL-C. The E144K and C378W mutations impaired the maturation and secretion of the PCSK9 protein, respectively. Adeno-associated virus-mediated expression of E144K and C378W mutants in Pcsk9 KO (knockout) mice fed a high-cholesterol diet also hampered PCSK9 secretion into the serum, resulting in elevated levels of LDL receptor in the liver and reduced levels of LDL-C in the serum. CONCLUSIONS: Our study shows that E144K and C378W are PCSK9 loss-of-function mutations causing low LDL-C levels in mice and probably in humans as well.


Asunto(s)
Aterosclerosis , Enfermedades Cardiovasculares , Hipercolesterolemia , Humanos , Ratones , Animales , Proproteína Convertasa 9/genética , LDL-Colesterol , Serina Endopeptidasas/genética , Proproteína Convertasas/genética , Proproteína Convertasas/metabolismo , Receptores de LDL/genética , Receptores de LDL/metabolismo , Ratones Noqueados , Aterosclerosis/genética , Aterosclerosis/prevención & control , Aterosclerosis/metabolismo , Mutación
3.
Protein Cell ; 12(4): 279-296, 2021 04.
Artículo en Inglés | MEDLINE | ID: mdl-32666500

RESUMEN

Sterol-regulatory element binding proteins (SREBPs) are the key transcriptional regulators of lipid metabolism. The activation of SREBP requires translocation of the SREBP precursor from the endoplasmic reticulum to the Golgi, where it is sequentially cleaved by site-1 protease (S1P) and site-2 protease and releases a nuclear form to modulate gene expression. To search for new genes regulating cholesterol metabolism, we perform a genome-wide CRISPR/Cas9 knockout screen and find that partner of site-1 protease (POST1), encoded by C12ORF49, is critically involved in the SREBP signaling. Ablation of POST1 decreases the generation of nuclear SREBP and reduces the expression of SREBP target genes. POST1 binds S1P, which is synthesized as an inactive protease (form A) and becomes fully mature via a two-step autocatalytic process involving forms B'/B and C'/C. POST1 promotes the generation of the functional S1P-C'/C from S1P-B'/B (canonical cleavage) and, notably, from S1P-A directly (non-canonical cleavage) as well. This POST1-mediated S1P activation is also essential for the cleavages of other S1P substrates including ATF6, CREB3 family members and the α/ß-subunit precursor of N-acetylglucosamine-1-phosphotransferase. Together, we demonstrate that POST1 is a cofactor controlling S1P maturation and plays important roles in lipid homeostasis, unfolded protein response, lipoprotein metabolism and lysosome biogenesis.


Asunto(s)
Proteínas de la Membrana/metabolismo , Transducción de Señal , Proteínas de Unión a los Elementos Reguladores de Esteroles/metabolismo , Sistemas CRISPR-Cas , Células HeLa , Humanos , Lipoproteínas/biosíntesis , Lipoproteínas/genética , Lisosomas/genética , Lisosomas/metabolismo , Proteínas de la Membrana/genética , Proteínas de Unión a los Elementos Reguladores de Esteroles/genética
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