Fibrosis resolution in the mouse liver: Role of Mmp12 and potential role of calpain 1/2

Q1 Medicine Matrix Biology Plus Pub Date : 2023-02-01 DOI:10.1016/j.mbplus.2022.100127
Toshifumi Sato , Kimberly Z. Head , Jiang Li , Christine E. Dolin , Daniel Wilkey , Nolan Skirtich , Katelyn Smith , Dylan D. McCreary , Sylvia Liu , Juliane I. Beier , Aatur D. Singhi , Ryan M. McEnaney , Michael L. Merchant , Gavin E. Arteel
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引用次数: 6

Abstract

Although most work has focused on resolution of collagen ECM, fibrosis resolution involves changes to several ECM proteins. The purpose of the current study was twofold: 1) to examine the role of MMP12 and elastin; and 2) to investigate the changes in degraded proteins in plasma (i.e., the “degradome”) in a preclinical model of fibrosis resolution. Fibrosis was induced by 4 weeks carbon tetrachloride (CCl4) exposure, and recovery was monitored for an additional 4 weeks. Some mice were treated with daily MMP12 inhibitor (MMP408) during the resolution phase. Liver injury and fibrosis was monitored by clinical chemistry, histology and gene expression. The release of degraded ECM peptides in the plasma was analyzed using by 1D-LC-MS/MS, coupled with PEAKS Studio (v10) peptide identification. Hepatic fibrosis and liver injury rapidly resolved in this mouse model. However, some collagen fibrils were still present 28d after cessation of CCl4. Despite this persistent collagen presence, expression of canonical markers of fibrosis were also normalized. The inhibition of MMP12 dramatically delayed fibrosis resolution under these conditions. LC-MS/MS analysis identified that several proteins were being degraded even at late stages of fibrosis resolution. Calpains 1/2 were identified as potential new proteases involved in fibrosis resolution. CONCLUSION. The results of this study indicate that remodeling of the liver during recovery from fibrosis is a complex and highly coordinated process that extends well beyond the degradation of the collagenous scar. These results also indicate that analysis of the plasma degradome may yield new insight into the mechanisms of fibrosis recovery, and by extension, new “theragnostic” targets. Lastly, a novel potential role for calpain activation in the degradation and turnover of proteins was identified.

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小鼠肝脏纤维化消退:Mmp12的作用和calpain 1/2的潜在作用
尽管大多数工作都集中在胶原ECM的分解上,但纤维化的分解涉及几种ECM蛋白的变化。本研究的目的有两个:1)检测MMP12和弹性蛋白的作用;和2)研究纤维化消退的临床前模型中血浆中降解蛋白(即“降解组”)的变化。四氯化碳(CCl4)暴露4周可诱导纤维化,并在另外4周内监测恢复情况。一些小鼠在分解阶段每天用MMP12抑制剂(MMP408)治疗。通过临床化学、组织学和基因表达监测肝损伤和纤维化。使用1D-LC-MS/MS结合PEAKS Studio(v10)肽鉴定分析血浆中降解ECM肽的释放。肝纤维化和肝损伤在该小鼠模型中迅速消退。然而,在CCl4停止后28天,一些胶原原纤维仍然存在。尽管存在这种持续存在的胶原,纤维化的典型标志物的表达也正常化。MMP12的抑制在这些条件下显著延迟了纤维化的消退。LC-MS/MS分析发现,即使在纤维化消退的晚期,也有几种蛋白质被降解。钙蛋白酶1/2被鉴定为参与纤维化解决的潜在新蛋白酶。结论。这项研究的结果表明,在纤维化恢复过程中,肝脏的重塑是一个复杂而高度协调的过程,远远超出了胶原瘢痕的降解范围。这些结果还表明,对血浆降解组的分析可能会对纤维化恢复的机制产生新的见解,进而产生新的“治疗”靶点。最后,确定了钙蛋白酶激活在蛋白质降解和周转中的一种新的潜在作用。
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来源期刊
Matrix Biology Plus
Matrix Biology Plus Medicine-Histology
CiteScore
9.00
自引率
0.00%
发文量
25
审稿时长
105 days
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