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首页> 外文期刊>Molecular biology of the cell >LEKTI fragments specifically inhibit KLK5, KLK7, and KLK14 and control I desquamation through a pH-dependent interaction
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LEKTI fragments specifically inhibit KLK5, KLK7, and KLK14 and control I desquamation through a pH-dependent interaction

机译:LEKTI片段特异性抑制KLK5,KLK7和KLK14并通过pH依赖性相互作用控制I脱皮

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摘要

LEKTI is a 15-domain serine proteinase inhibitor whose defective expression underlies the severe autosomal recessive ichthyosiform skin disease, Netherton syndrome. Here, we show that LEKTI is produced as a precursor rapidly cleaved by furin, generating a variety of single or multidomain LEKTI fragments secreted in cultured keratinocytes and in the epidermis. The identity of these biological fragments (D1, D5, D6, D8-D11, and D9-D15) was inferred from biochemical analysis, using a panel of LEKTI antibodies. The functional inhibitory capacity of each fragment was tested on a panel of serine proteases. All LEKTI fragments, except D1, showed specific and differential inhibition of human kallikreins 5, 7, and 14. The strongest inhibition was observed with D8-D11, toward KLK5. Kinetics analysis revealed that this interaction is rapid and irreversible, reflecting an extremely tight binding complex. We demonstrated that pH variations govern this interaction, leading to the release of active KLK5 from the complex at acidic pH. These results identify KLK5, a key actor of the desquamation process, as the major target of LEKTI. They disclose a new mechanism of skin homeostasis by which the epidermal pH gradient allows precisely regulated KLK5 activity and corneodesmosomal cleavage in the most superficial layers of the stratum corneum.
机译:LEKTI是一种15结构域的丝氨酸蛋白酶抑制剂,其缺陷表达可导致严重的常染色体隐性鱼鳞状皮肤疾病Netherton综合征。在这里,我们显示LEKTI作为弗林蛋白酶快速裂解的前体而产生,产生了培养的角质形成细胞和表皮中分泌的各种单域或多域LEKTI片段。这些生物片段(D1,D5,D6,D8-D11和D9-D15)的身份是使用一组LEKTI抗体从生化分析中推断出来的。在一组丝氨酸蛋白酶上测试了每个片段的功能抑制能力。除D1外,所有LEKTI片段均显示出对人激肽释放酶5、7和14的特异性和差异抑制作用。D8-D11对KLK5的抑制作用最强。动力学分析表明,这种相互作用是快速且不可逆的,反映出极其紧密的结合复合物。我们证明了pH的变化决定了这种相互作用,导致在酸性pH下从复合物中释放出活性KLK5。这些结果表明,脱胶过程的关键参与者KLK5是LEKTI的主要目标。他们公开了一种皮肤稳态的新机制,通过这种机制,表皮的pH梯度可在角质层最表层精确调节KLK5活性和角质层切割。

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