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SSTP1,一种宿主防御肽,利用免疫调节的 IL6 通路诱导癌细胞凋亡。

SSTP1, a Host Defense Peptide, Exploits the Immunomodulatory IL6 Pathway to Induce Apoptosis in Cancer Cells.

机构信息

Cancer Research, Rajiv Gandhi Centre for Biotechnology, Thiruvananthapuram, India.

Interdisciplinary Biology, Rajiv Gandhi Centre for Biotechnology, Thiruvananthapuram, India.

出版信息

Front Immunol. 2021 Nov 19;12:740620. doi: 10.3389/fimmu.2021.740620. eCollection 2021.

Abstract

While the immunomodulatory pathways initiated in immune cells contribute to therapeutic response, their activation in cancer cells play a role in cancer progression. Also, many of the aberrantly expressed immunomodulators on cancer cells are considered as therapeutic targets. Here, we introduce host defense peptide (HDP), a known immuomodulator, as a therapeutic agent to target them. The cationic host defense peptides (HDPs), an integral part of the innate immune system, possess membranolytic activity, which imparts antimicrobial and antitumor efficacy to it. They act as immunomodulators by activating the immune cells. Though their antimicrobial function has been recently reassigned to immunoregulation, their antitumor activity is still attributed to its membranolytic activity. This membrane pore formation ability, which is proportional to the concentration of the peptide, also leads to side effects like hemolysis, limiting their therapeutic application. So, despite the identification of a variety of anticancer HDPs, their clinical utility is limited. Though HDPs are shown to exert the immunomodulatory activity through specific membrane targets on immune cells, their targets on cancer cells are unknown. We show that SSTP1, a novel HDP identified by shotgun cloning, binds to the active IL6/IL6Rα/gp130 complex on cancer cells, rearranging the active site residues. In contrast to the IL6 blockers inhibiting JAK/STAT activity, SSTP1 shifts the proliferative IL6/JAK/STAT signaling to the apoptotic IL6/JNK/AP1 pathway. In IL6Rα-overexpressing cancer cells, SSTP1 induces apoptosis at low concentration through JNK pathway, without causing significant membrane disruption. We highlight the importance of immunomodulatory pathways in cancer apoptosis, apart from its established role in immune cell regulation and cancer cell proliferation. Our study suggests that identification of the membrane targets for the promising anticancer HDPs might lead to the identification of new drugs for targeted therapy.

摘要

虽然免疫细胞中启动的免疫调节途径有助于治疗反应,但它们在癌细胞中的激活在癌症进展中起作用。此外,许多癌细胞中异常表达的免疫调节剂被认为是治疗靶点。在这里,我们介绍宿主防御肽 (HDP),一种已知的免疫调节剂,作为靶向它们的治疗剂。阳离子宿主防御肽 (HDP) 是先天免疫系统的重要组成部分,具有膜溶解活性,使其具有抗菌和抗肿瘤功效。它们通过激活免疫细胞作为免疫调节剂发挥作用。尽管它们的抗菌功能最近被重新分配到免疫调节,但它们的抗肿瘤活性仍然归因于其膜溶解活性。这种与肽浓度成正比的膜孔形成能力也会导致溶血等副作用,限制了它们的治疗应用。因此,尽管已经鉴定出多种抗癌 HDP,但它们的临床应用受到限制。尽管 HDP 被证明通过免疫细胞上的特定膜靶标发挥免疫调节活性,但它们在癌细胞上的靶标尚不清楚。我们表明,通过鸟枪法克隆鉴定的新型 HDP SSTP1 与癌细胞上的活性 IL6/IL6Rα/gp130 复合物结合,重排活性位点残基。与抑制 JAK/STAT 活性的 IL6 阻滞剂不同,SSTP1 将增殖性 IL6/JAK/STAT 信号转导转移到凋亡性 IL6/JNK/AP1 途径。在 IL6Rα 过表达的癌细胞中,SSTP1 通过 JNK 途径在低浓度下诱导细胞凋亡,而不会引起明显的膜破坏。我们强调了免疫调节途径在癌症凋亡中的重要性,除了其在免疫细胞调节和癌细胞增殖中的既定作用外。我们的研究表明,鉴定有前途的抗癌 HDP 的膜靶标可能会导致鉴定出用于靶向治疗的新药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf2e/8639500/59d57dea1135/fimmu-12-740620-g001.jpg

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