Bradykinin's carbamylation as a mechanistic link to impaired wound healing in patients with kidney dysfunction.

IF 4.5 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2025-03-12 DOI:10.1186/s12915-025-02187-x
Marta Kaminska, Urszula Kałucka, Janka Babickova, Małgorzata Benedyk-Machaczka, Eleni Skandalou, Melissa M Grant, Hans-Peter Marti, Piotr Mydel
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Abstract

Background: Uremic impairment of wound healing is a well-established phenomenon, however the etiology of this condition continues to be a medical enigma. Carbamylation, posttranslational modification (PTM) occurring with high frequency in uremic milieu, is known to have impact on structural and functional properties of proteins and peptides. Herein we show that carbamylation of the members of kinin-kallikrein system, that play an essential role in wound healing process, results in its aberrant functionality and impedes the complex process of tissue regeneration in uremic patients.

Results: Through enzymatic assays we demonstrate that carbamylation of kininogen results in aberrant bradykinin generation. We confirmed that bradykinin is efficiently carbamylated in uremic conditions and, alternatively, by activated neutrophiles. Moreover, this modification affects proteolytic cleavage of the peptide, potentially leading to the accumulation of the carbamylated form. Modified peptide demonstrated lower affinity toward its receptors. Carbamylation diminished bradykinin's ability to stimulate expression of the B1 receptor and cytokines essential in wound healing process. Carbamylated bradykinin was significantly less potent in promoting angiogenesis and keratinocyte motility as compared to the native form. In the in vivo murine model of wound healing, we observed impaired collagen fiber production and delayed re-epithelialisation in the presence of carbamylated form.

Conclusions: Carbamylation-driven impairment of wound healing is a mechanistic link to wound persistence in uremia. Importantly, production of carbamylated bradykinin in localized inflammatory milieus could be a significant contributor to delayed wound healing and formation of chronic wounds in diabetes or psoriasis.

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缓激肽氨甲酰化与肾功能障碍患者伤口愈合受损的机制联系。
背景:尿毒症对伤口愈合的损害是一个公认的现象,然而这种情况的病因仍然是一个医学谜。氨基甲酰化,翻译后修饰(PTM)在尿毒症环境中频繁发生,已知对蛋白质和肽的结构和功能特性有影响。本研究表明,在伤口愈合过程中发挥重要作用的激肽-钾激肽系统成员的氨甲酰化导致其功能异常,阻碍了尿毒症患者组织再生的复杂过程。结果:通过酶促实验,我们证实了激肽原氨甲酰化导致了异常的缓激肽生成。我们证实,缓激肽在尿毒症条件下有效地氨甲酰化,或者被活化的中性粒细胞。此外,这种修饰影响肽的蛋白水解裂解,可能导致氨基甲酰化形式的积累。修饰肽对其受体的亲和力较低。氨甲酰化降低了缓激肽刺激B1受体和伤口愈合过程中必需的细胞因子表达的能力。与天然形式相比,氨甲酰化缓激肽在促进血管生成和角化细胞运动方面的作用明显减弱。在体内小鼠伤口愈合模型中,我们观察到氨基甲酰化形式存在时胶原纤维生成受损和再上皮化延迟。结论:氨甲酰驱动的伤口愈合损伤是尿毒症伤口持续存在的机制联系。重要的是,局部炎症环境中氨甲酰化缓动素的产生可能是糖尿病或牛皮癣患者伤口愈合延迟和慢性伤口形成的重要因素。
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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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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