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本文引用的文献

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Protein quality control by the proteasome and autophagy: A regulatory role of ubiquitin and liquid-liquid phase separation.蛋白酶体和自噬对蛋白质的质量控制:泛素和液-液相分离的调节作用。
Matrix Biol. 2021 Jun;100-101:9-22. doi: 10.1016/j.matbio.2020.11.003. Epub 2020 Nov 28.
2
4-Phenylbutyric acid enhances the mineralization of osteogenesis imperfecta iPSC-derived osteoblasts.4-苯丁酸增强成骨不全症 iPSC 来源的成骨细胞的矿化。
J Biol Chem. 2021 Jan-Jun;296:100027. doi: 10.1074/jbc.RA120.014709. Epub 2020 Nov 23.
3
Biglycan and chondroitin sulfate play pivotal roles in bone toughness via retaining bound water in bone mineral matrix.核心蛋白聚糖和硫酸软骨素通过在骨矿物质基质中保留结合水在骨骼韧性中发挥关键作用。
Matrix Biol. 2020 Dec;94:95-109. doi: 10.1016/j.matbio.2020.09.002. Epub 2020 Sep 28.
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Mechanisms of procollagen and HSP47 sorting during ER-to-Golgi trafficking.胶原前体和 HSP47 在 ER 到高尔基体运输过程中的分拣机制。
Matrix Biol. 2020 Nov;93:79-94. doi: 10.1016/j.matbio.2020.06.002. Epub 2020 Jun 17.
5
Crtap and p3h1 knock out zebrafish support defective collagen chaperoning as the cause of their osteogenesis imperfecta phenotype.Crtap 和 p3h1 基因敲除斑马鱼支持缺陷胶原伴侣作为其成骨不全表型的原因。
Matrix Biol. 2020 Aug;90:40-60. doi: 10.1016/j.matbio.2020.03.004. Epub 2020 Mar 12.
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High Fidelity of Mouse Models Mimicking Human Genetic Skeletal Disorders.模拟人类遗传性骨骼疾病的小鼠模型的高保真度。
Front Endocrinol (Lausanne). 2020 Feb 4;10:934. doi: 10.3389/fendo.2019.00934. eCollection 2019.
7
Substitution of murine type I collagen A1 3-hydroxylation site alters matrix structure but does not recapitulate osteogenesis imperfecta bone dysplasia.鼠源 I 型胶原蛋白 A1 第 3 位羟化位点的取代改变了基质结构,但不能再现成骨不全症的骨发育不良。
Matrix Biol. 2020 Aug;90:20-39. doi: 10.1016/j.matbio.2020.02.003. Epub 2020 Feb 26.
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Bone biology: insights from osteogenesis imperfecta and related rare fragility syndromes.骨生物学:成骨不全症及相关罕见脆弱综合征的启示。
FEBS J. 2019 Aug;286(15):3033-3056. doi: 10.1111/febs.14963. Epub 2019 Jul 5.
9
Cellular stress due to impairment of collagen prolyl hydroxylation complex is rescued by the chaperone 4-phenylbutyrate.胶原脯氨酰羟化酶复合物功能障碍导致的细胞应激可以通过伴侣蛋白 4-苯基丁酸来挽救。
Dis Model Mech. 2019 Jun 20;12(6):dmm038521. doi: 10.1242/dmm.038521.
10
Steady-State and Pulse-Chase Analyses of Fibrillar Collagen.纤维状胶原蛋白的稳态分析和脉冲追踪分析
Methods Mol Biol. 2019;1952:45-53. doi: 10.1007/978-1-4939-9133-4_4.

靶向细胞应激可改善两种成骨不全症小鼠模型中成骨细胞的内稳态、基质胶原含量和矿化。

Targeting cellular stress in vitro improves osteoblast homeostasis, matrix collagen content and mineralization in two murine models of osteogenesis imperfecta.

机构信息

Department of Molecular Medicine, Biochemistry Unit, University of Pavia, Pavia, Italy; Istituto Universitario di Studi Superiori - IUSS, Pavia, Italy.

Department of Molecular Medicine, Biochemistry Unit, University of Pavia, Pavia, Italy.

出版信息

Matrix Biol. 2021 Apr;98:1-20. doi: 10.1016/j.matbio.2021.03.001. Epub 2021 Mar 31.

DOI:10.1016/j.matbio.2021.03.001
PMID:33798677
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11162743/
Abstract

Most cases of dominantly inherited osteogenesis imperfecta (OI) are caused by glycine substitutions in the triple helical domain of type I collagen α chains, which delay collagen folding, and cause the synthesis of collagen triple helical molecules with abnormal structure and post-translational modification. A variable extent of mutant collagen ER retention and other secondary mutation effects perturb osteoblast homeostasis and impair bone matrix quality. Amelioration of OI osteoblast homeostasis could be beneficial both to osteoblast anabolic activity and to the content of the extracellular matrix they deposit. Therefore, the effect of the chemical chaperone 4-phenylbutyrate (4-PBA) on cell homeostasis, collagen trafficking, matrix production and mineralization was investigated in primary osteoblasts from two murine models of moderate OI, Col1a1 and Col1a2. At the cellular level, 4-PBA prevented intracellular accumulation of collagen and increased protein secretion, reducing aggregates within the mutant cells and normalizing ER morphology. At the extracellular level, increased collagen incorporation into matrix, associated with more mature collagen fibrils, was observed in osteoblasts from both models. 4-PBA also promoted OI osteoblast mineral deposition by increasing alkaline phosphatase expression and activity. Targeting osteoblast stress with 4-PBA improved both cellular and matrix abnormalities in culture, supporting further in vivo studies of its effect on bone tissue composition, strength and mineralization as a potential treatment for classical OI.

摘要

大多数显性遗传性成骨不全症(OI)是由Ⅰ型胶原α链三螺旋区的甘氨酸取代引起的,这会延迟胶原折叠,并导致胶原三螺旋分子结构异常和翻译后修饰。突变胶原内质网保留的程度不同,以及其他二级突变效应,会破坏成骨细胞的内稳态,并损害骨基质的质量。改善 OI 成骨细胞内稳态可能对成骨细胞合成代谢活性和它们沉积的细胞外基质含量都有益。因此,研究了化学伴侣 4-苯丁酸(4-PBA)对两种中度 OI 鼠模型(Col1a1 和 Col1a2)原代成骨细胞的细胞内稳态、胶原运输、基质产生和矿化的影响。在细胞水平上,4-PBA 可防止胶原在细胞内积累,并增加蛋白分泌,减少突变细胞内的聚集体并使内质网形态正常化。在细胞外水平,两种模型的成骨细胞中均观察到更多的胶原掺入基质中,伴随着更成熟的胶原纤维。4-PBA 还通过增加碱性磷酸酶的表达和活性来促进 OI 成骨细胞的矿化沉积。用 4-PBA 靶向成骨细胞应激可改善培养物中的细胞和基质异常,支持进一步研究其对骨组织组成、强度和矿化的影响,作为治疗经典 OI 的潜在方法。