Elevated autophagy and mitochondrial dysfunction in the Smith-Lemli-Opitz Syndrome

被引:16
作者
Chang, Shaohua [1 ]
Ren, Gongyi [1 ]
Steiner, Robert D. [4 ]
Merkens, Louise [2 ,3 ]
Roullet, Jean-Baptiste [2 ,3 ]
Korade, Zeljka [5 ]
DiMuzio, Paul J. [6 ]
Tulenko, Thomas N. [1 ]
机构
[1] Rowan Univ, Cooper Univ Hosp, Cooper Med Sch, Dept Surg, Camden, NJ 08103 USA
[2] Oregon Hlth & Sci Univ, Dept Pediat, Doernbecher Childrens Hosp, Inst Dev & Disabil, Portland, OR 97201 USA
[3] Oregon Hlth & Sci Univ, Doernbecher Childrens Hosp, Inst Dev & Disabil, Dept Mol & Med Genet, Portland, OR 97201 USA
[4] Univ Wisconsin, Sch Med & Publ Hlth, Madison, WI USA
[5] Vanderbilt Univ, Vanderbilt Kennedy Ctr Res Human Dev, Dept Psychiat, Nashville, TN 37235 USA
[6] Thomas Jefferson Univ, Dept Surg, Coll Med, Philadelphia, PA 19107 USA
来源
MOLECULAR GENETICS AND METABOLISM REPORTS | 2014年 / 1卷
关键词
7-Dehydrocholesterol; beta-hydroxysterol-Delta(7)-reductase (DHCR7); Birth defects; Lysosomes; Mitophagy;
D O I
10.1016/j.ymgmr.2014.09.005
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Smith-Lemli-Opitz Syndrome (SLOS) is a congenital, autosomal recessive metabolic and developmental disorder caused by mutations in the enzyme which catalyzes the reduction of 7-dehydrocholesterol (7DHC) to cholesterol. Herein we show that dermal fibroblasts obtained from SLOS children display increased basal levels of LC3B-II, the hallmark protein signifying increased autophagy. The elevated LC3B-II is accompanied by increased beclin-1 and cellular autophagosome content. We also show that the LC3B-II concentration in SLOS cells is directly proportional to the cellular concentration of 7DHC, suggesting that the increased autophagy is caused by 7DHC accumulation secondary to defective DHCR7. Further, the increased basal LC3B-II levels were decreased significantly by pretreating the cells with antioxidants implicating a role for oxidative stress in elevating autophagy in SLOS cells. Considering the possible source of oxidative stress, we examined mitochondrial function in the SLOS cells using JC-1 assay and found significant mitochondrial dysfunction compared to mitochondria in control cells. In addition, the levels of PINK1 which targets dysfunctional mitochondria for removal by the autophagic pathway are elevated in SLOS cells, consistent with mitochondrial dysfunction as a stimulant of mitophagy in SLOS. This suggests that the increase in autophagic activity may be protective, i.e., to remove dysfunctional mitochondria. Taken together, these studies are consistent with a role for mitochondrial dysfunction leading to increased autophagy in SLOS pathophysiology. (C) 2014 The Authors. Published by Elsevier Inc. This is an open access article under the CC BY-NC-ND license
引用
收藏
页码:431 / 442
页数:12
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