Engineered TIMP2 with narrow MMP-9 specificity is an effective inhibitor of invasion and proliferation of triple negative breast cancer cells.

IF 4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biological Chemistry Pub Date : 2024-10-09 DOI:10.1016/j.jbc.2024.107867
Naama Rotenberg, Mark Feldman, Jason Shirian, Alexandra Hockla, Evette S Radisky, Julia M Shifman
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Abstract

Matrix metalloproteinases (MMPs) are a family of endopeptidases that degrade extracellular matrix (ECM) proteins, functioning in various physiological processes such as tissue remodeling, embryogenesis, and morphogenesis. Dysregulation of these enzymes is linked to multiple diseases. Specific inhibition of particular MMPs is crucial for anti-MMP drug development as some MMPs have shown anti-disease properties. In this study, we aimed to design a highly specific inhibitor of MMP-9, that plays a crucial role in cell invasion and metastasis, using tissue inhibitor of metalloproteinases 2 (TIMP2), an endogenous broad-family MMP inhibitor, as a prototype. In our earlier work, we were able to narrow down the specificity of the N-terminal domain of TIMP2 (N-TIMP2) toward MMP-9, yet at the expense of lowering its affinity to MMP-9. In this study, a library of N-TIMP2 mutants based on previous design with randomized additional positions was sorted for binding to MMP-9 using yeast surface display. Two selected N-TIMP2 mutants were expressed, purified and their inhibitory activity against a panel of MMPs was measured. The best engineered N-TIMP2 mutant (REY) exhibited a 2-fold higher affinity to MMP-9 compared to that of the WT N-TIMP2, and 6- to 1.1x104-fold increase in binding specificity toward MMP-9 compared to five alternative MMPs. Moreover, REY demonstrated a significant increase in inhibition of cell invasion and proliferation compared to the WT N-TIMP2 in MDA-MB-231 breast cancer cells. Therefore, our engineered N-TIMP2 mutant emerges as a promising candidate for future therapeutic development, offering precise targeting of MMP-9 in MMP-9-driven diseases.

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经改造的 TIMP2 具有狭窄的 MMP-9 特异性,可有效抑制三阴性乳腺癌细胞的侵袭和增殖。
基质金属蛋白酶(MMPs)是降解细胞外基质(ECM)蛋白的内肽酶家族,在组织重塑、胚胎形成和形态发生等各种生理过程中发挥作用。这些酶的失调与多种疾病有关。由于某些 MMPs 具有抗病特性,因此特异性抑制特定 MMPs 对于抗 MMP 药物的开发至关重要。在本研究中,我们以组织金属蛋白酶抑制剂 2 (TIMP2)(一种内源性广谱 MMP 抑制剂)为原型,旨在设计一种高度特异性的 MMP-9 抑制剂,MMP-9 在细胞侵袭和转移中起着至关重要的作用。在我们早期的工作中,我们缩小了 TIMP2(N-TIMP2)N 端结构域对 MMP-9 的特异性,但代价是降低了它对 MMP-9 的亲和力。在这项研究中,我们利用酵母表面展示技术,对基于先前设计的随机附加位置的 N-TIMP2 突变体库进行了分类,以检测其与 MMP-9 的结合情况。对选出的两个 N-TIMP2 突变体进行了表达、纯化,并测定了它们对一组 MMP 的抑制活性。与 WT N-TIMP2 相比,最佳工程 N-TIMP2 突变体(REY)对 MMP-9 的亲和力高出 2 倍,与五种替代 MMP 相比,对 MMP-9 的结合特异性提高了 6 至 1.1x104 倍。此外,与 WT N-TIMP2 相比,REY 对 MDA-MB-231 乳腺癌细胞侵袭和增殖的抑制作用明显增强。因此,我们设计的 N-TIMP2 突变体有望成为未来治疗开发的候选药物,在 MMP-9 驱动的疾病中精确靶向 MMP-9。
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来源期刊
Journal of Biological Chemistry
Journal of Biological Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
自引率
4.20%
发文量
1233
期刊介绍: The Journal of Biological Chemistry welcomes high-quality science that seeks to elucidate the molecular and cellular basis of biological processes. Papers published in JBC can therefore fall under the umbrellas of not only biological chemistry, chemical biology, or biochemistry, but also allied disciplines such as biophysics, systems biology, RNA biology, immunology, microbiology, neurobiology, epigenetics, computational biology, ’omics, and many more. The outcome of our focus on papers that contribute novel and important mechanistic insights, rather than on a particular topic area, is that JBC is truly a melting pot for scientists across disciplines. In addition, JBC welcomes papers that describe methods that will help scientists push their biochemical inquiries forward and resources that will be of use to the research community.
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