Dual Targeting of the PDZ1 and PDZ2 Domains of MDA-9/Syntenin Inhibits Melanoma Metastasis

PDZ域 癌症研究 黑色素瘤 转移 体内 化学 细胞生物学 生物 癌症 遗传学
作者
Anjan K. Pradhan,Jinkal Modi,Santanu Maji,Amit Kumar,Praveen Bhoopathi,Padmanabhan Mannangatti,Chunqing Guo,Daniel K. Afosah,Mark C. Mochel,Nitai D. Mukhopadhyay,John M. Kirkwood,Xiang‐Yang Wang,Umesh R. Desai,Devanand Sarkar,Luni Emdad,Swadesh K. Das,Paul B. Fisher
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:22 (10): 1115-1127 被引量:9
标识
DOI:10.1158/1535-7163.mct-22-0653
摘要

Genome-wide gene expression analysis and animal modeling indicate that melanoma differentiation associated gene-9 (mda-9, Syntenin, Syndecan binding protein, referred to as MDA-9/Syntenin) positively regulates melanoma metastasis. The MDA-9/Syntenin protein contains two tandem PDZ domains serving as a nexus for interactions with multiple proteins that initiate transcription of metastasis-associated genes. Although targeting either PDZ domain abrogates signaling and prometastatic phenotypes, the integrity of both domains is critical for full biological function. Fragment-based drug discovery and NMR identified PDZ1i, an inhibitor of the PDZ1 domain that effectively blocks cancer invasion in vitro and in vivo in multiple experimental animal models. To maximize disruption of MDA-9/Syntenin signaling, an inhibitor has now been developed that simultaneously binds and blocks activity of both PDZ domains. PDZ1i was joined to the second PDZ binding peptide (TNYYFV) with a PEG linker, resulting in PDZ1i/2i (IVMT-Rx-3) that engages both PDZ domains of MDA-9/Syntenin. IVMT-Rx-3 blocks MDA-9/Syntenin interaction with Src, reduces NF-κB activation, and inhibits MMP-2/MMP-9 expression, culminating in repression of melanoma metastasis. The in vivo antimetastatic properties of IVMT-Rx-3 are enhanced when combined with an immune-checkpoint inhibitor. Collectively, our results support the feasibility of engineering MDA-9 dual-PDZ inhibitors with enhanced antimetastatic activities and applications of IVMT-Rx-3 for developing novel therapeutic strategies effectively targeting melanoma and in principle, a broad spectrum of human cancers that also overexpress MDA-9/Syntenin.
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