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Loss of spatacsin impairs cholesterol trafficking and calcium homeostasis

机译:失去的spatacsin会损害胆固醇的运输和钙的稳态

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摘要

Mutations in SPG11, leading to loss of spatacsin function, impair the formation of membrane tubules in lysosomes and cause lysosomal lipid accumulation. However, the full nature of lipids accumulating in lysosomes and the physiological consequences of such accumulation are unknown. Here we show that loss of spatacsin inhibits the formation of tubules on lysosomes and prevents the clearance of cholesterol from this subcellular compartment. Accumulation of cholesterol in lysosomes decreases cholesterol levels in the plasma membrane, enhancing the entry of extracellular calcium by store-operated calcium entry and increasing resting cytosolic calcium levels. Higher cytosolic calcium levels promote the nuclear translocation of the master regulator of lysosomes TFEB, preventing the formation of tubules and the clearance of cholesterol from lysosomes. Our work reveals a homeostatic balance between cholesterol trafficking and cytosolic calcium levels and shows that loss of spatacsin impairs this homeostatic equilibrium.
机译:SPG11中的突变会导致spascacin功能丧失,从而削弱溶酶体中膜小管的形成并导致溶酶体脂质蓄积。然而,尚不清楚脂质在溶酶体中积累的全部性质以及这种积累的生理后果。在这里,我们表明,失去的Statacin抑制了溶酶体上小管的形成,并阻止了胆固醇从该亚细胞区室的清除。溶酶体中胆固醇的积累降低了质膜中的胆固醇水平,通过储存操作的钙进入增强了细胞外钙的进入,并增加了静息的胞浆钙水平。较高的胞质钙水平促进了溶酶体TFEB主调节剂的核易位,从而阻止了小管的形成和胆固醇从溶酶体中的清除。我们的工作揭示了胆固醇运输和胞质钙水平之间的体内平衡,并显示了SPASTASIN的缺失会破坏这种体内平衡。

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