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富含亮氨酸重复激酶1信号传导靶向破骨细胞中对内涵体/溶酶体分选和运输至关重要的蛋白质。

Leucine-Rich Repeat Kinase 1 Signaling Targets Proteins Critical for Endosome/Lysosome Sorting and Trafficking in Osteoclasts.

作者信息

Xing Weirong, Chen Yian, Udayakumar Anakha, Zhao Haibo, Mohan Subburaman

机构信息

The Musculoskeletal Disease Center, Jerry L Pettis VA Medical Center, Loma Linda, CA 92357, USA.

Department of Medicine, Loma Linda University, Loma Linda, CA 92354, USA.

出版信息

Biology (Basel). 2025 Mar 24;14(4):326. doi: 10.3390/biology14040326.

Abstract

Global knockout (KO) of the gene in mice causes severe osteopetrosis because of the failure of osteoclasts to resorb bone. The molecular mechanism of LRRK1 regulation of osteoclast function is not fully understood. Here, we performed a 2D DIGE phosphor-proteomics analysis to identify potential LRRK1 targets in osteoclasts. Splenocytes from KO and wild-type (WT) mice were differentiated into osteoclasts for protein extraction. Lysates from KO and WT cells were labeled with Cy3- and Cy5-dye, respectively. Labeled proteins were mixed and analyzed on the same 2D SDS PAGE for protein profiling. The same amounts of cellular protein were also labeled with Cy3-dye and ran on a 2D SDS PAGE. The gels were then stained using Pro-Q Diamond Phosphoprotein Gel Stain for phosphoprotein profiling. Differentially phosphorylated protein spots between the two types of cells were collected, digested with trypsin, and identified by mass spectrometry. Seventeen phosphoproteins were identified, six of which are known to be involved in endosome/lysosome sorting, vacuolar protection, and trafficking. While five of these proteins (SNX2, VPS35, VTA1, CFL1, and CTSA) were significantly hypophosphorylated, SNX3 was hyperphosphorylated in LRRK1-deficient osteoclasts. The downregulation of VSP35 and CFL1 phosphorylation in LRRK1-deficient cells was validated by Phos-tag SDS PAGE analysis. Our results indicate that LRRK1 signaling regulates osteoclast function via modulating VPS35 and CFL1 phosphorylation critical for endosome/lysosome trafficking and dynamic cytoskeleton arrangement in osteoclasts.

摘要

在小鼠中该基因的全身敲除(KO)会导致严重的骨质石化,因为破骨细胞无法吸收骨质。LRRK1对破骨细胞功能的调节分子机制尚未完全明确。在此,我们进行了二维差异凝胶电泳(2D DIGE)磷酸化蛋白质组学分析,以确定破骨细胞中潜在的LRRK1靶点。将来自KO小鼠和野生型(WT)小鼠的脾细胞分化为破骨细胞用于蛋白质提取。来自KO细胞和WT细胞的裂解物分别用Cy3染料和Cy5染料标记。将标记的蛋白质混合,并在同一二维十二烷基硫酸钠聚丙烯酰胺凝胶电泳(2D SDS PAGE)上进行分析以进行蛋白质谱分析。相同量的细胞蛋白质也用Cy3染料标记,并在二维十二烷基硫酸钠聚丙烯酰胺凝胶电泳上运行。然后使用Pro-Q Diamond磷蛋白凝胶染色剂对凝胶进行染色以进行磷蛋白谱分析。收集两种细胞之间差异磷酸化的蛋白质斑点,用胰蛋白酶消化,并通过质谱鉴定。鉴定出17种磷蛋白,其中6种已知参与内体/溶酶体分选、液泡保护和运输。虽然这些蛋白质中的5种(分选衔接蛋白2、VPS35、VTA1、丝切蛋白1和组织蛋白酶A)显著低磷酸化,但分选衔接蛋白3在LRRK1缺陷的破骨细胞中高磷酸化。通过Phos-tag SDS PAGE分析验证了LRRK1缺陷细胞中VSP35和丝切蛋白1磷酸化的下调。我们的结果表明,LRRK1信号通过调节VPS35和丝切蛋白1的磷酸化来调节破骨细胞功能,这对破骨细胞中的内体/溶酶体运输和动态细胞骨架排列至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c60c/12024951/ae4d44e867fa/biology-14-00326-g001.jpg

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