LC3 and GABARAP independent autophagy of misfolded procollagen in mouse osteoblasts.

IF 14.3
Elena Makareeva, Shakib Omari, Anna M Roberts-Pilgrim, Laura Gorrell, Bella Radant, Muthulakshmi Sellamani, Edward L Mertz, Basma Khoury, Kenneth Kozloff, Sergey Leikin
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引用次数: 0

Abstract

Bone synthesis should depend on autophagy because over 10% of type I procollagen (PC1) - a heterotrimer of COL1A1 and COL1A2 chains and the precursor of the main bone matrix molecule - is misfolded and rerouted from osteoblast endoplasmic reticulum (ER) to lysosomes. However, osteoblast-specific macroautophagy knockouts in mice have produced only mild bone effects. To reconcile these observations, we compared how hypomorphic expression and a conditional knockout (cKO) of Atg5 - encoding a protein required for autophagosome formation - affected Col1a2G610C/+ versus wild-type Col1a2+/+ osteoblasts in vivo and in vitro. The Gly610-to-Cys substitution (G610C) in the triple helical region of the COL1A2/proα2(I) chain increases PC1 misfolding, causing its accumulation in the ER, cell stress, and osteoblast malfunction. Because autophagy reroutes misfolded PC1 from the ER to lysosomes, disruption of PC1 autophagy should significantly increase osteoblast malfunction and bone pathology in Col1a2G610C/+ mice. Nonetheless, the present study revealed only minor effects of the atg5 cKO on osteoblast function and bone formation in the Col1a2G610C/+ mice, like in Col1a2+/+ controls. The cKO did not reduce the autophagy flux of misfolded G610C or wild-type PC1 in primary osteoblast cultures, even though the LC3 and GABARAP lipidation and therefore autophagosome formation were disrupted. Live-cell imaging in atg5 cKO osteoblasts demonstrated that PC1 was efficiently delivered to lysosomes without LC3 via ER exit site (ERES) microautophagy. Taken together, these observations indicate that LC3- and GABARAP-independent ERES microautophagy is the primary pathway of misfolded procollagen degradation in osteoblasts both in culture and in vivo.Abbreviations: ATG5: autophagy related 5; ATG7: autophagy related 7; Baf: bafilomycin A1; BFA: brefeldin A; BGLAP/Ocn/osteocalcin: bone gamma-carboxyglutamate protein; COL1A1/proα1(I): collagen type I alpha 1 chain; COL1A2/proα2(I): collagen type I alpha 2 chain; cKO: conditional knockout; ER: endoplasmic reticulum; ERES: ER exit site; G610C mutation: COL1A2 p.Gly706Cys replacing Gly in position 610 from the start of the triple helix with Cys; GABARAP: GABA type A receptor-associated protein; MAP1LC3/LC3: microtubule associated protein 1 light chain 3; MAR: mineral apposition rate; Ob: osteoblast; Oc: osteoclast; OI: osteogenesis imperfecta; PC1: procollagen type I, a heterotrimer of two COL1A1 and one COL1A2 chains, precursor of collagen type I; PDI: protein disulfide isomerase; RB1CC1/FIP200: RB1 inducible coiled-coil 1; SP7/osterix: Sp7 transcription factor; SQSTM1/p62: sequestosome 1; WT: wild type.

小鼠成骨细胞错误折叠前胶原的LC3和GABARAP独立自噬。
骨合成应该依赖于自噬,因为超过10%的I型前胶原(PC1) - COL1A1和COL1A2链的异源三聚体和主要骨基质分子的前体-被错误折叠并从成骨细胞内质网(ER)转移到溶酶体。然而,在小鼠中,成骨细胞特异性巨噬敲除只产生轻微的骨效应。为了验证这些观察结果,我们在体内和体外比较了编码自噬体形成所需蛋白的Atg5的半胚表达和条件敲除(cKO)如何影响Col1a2G610C/+与野生型Col1a2+/+成骨细胞。COL1A2/原α2(I)链三螺旋区域的Gly610-to-Cys取代(G610C)增加了PC1错误折叠,导致其在内质网中的积累、细胞应激和成骨细胞功能障碍。由于自噬将错误折叠的PC1从内质网转移到溶酶体,因此在Col1a2G610C/+小鼠中,PC1自噬的破坏应该会显著增加成骨细胞功能障碍和骨病理。尽管如此,本研究显示,在Col1a2G610C/+小鼠中,atg5 cKO对成骨细胞功能和骨形成的影响很小,与Col1a2+/+对照组一样。尽管LC3和GABARAP脂化并因此破坏了自噬体的形成,但cKO并没有降低原代成骨细胞培养中错误折叠的G610C或野生型PC1的自噬通量。atg5 cKO成骨细胞的活细胞成像显示,PC1通过ER出口位点(ERES)微自噬有效地递送到没有LC3的溶酶体。综上所述,这些观察结果表明,在培养和体内,LC3和gabarap不依赖的ERES微自噬是成骨细胞错误折叠前胶原降解的主要途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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