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PlexinB1 中的促进转移 P1597L 突变增强 Ras 活性。

The metastasis-promoting P1597L mutation in PlexinB1 enhances Ras activity.

机构信息

School of Cancer and Pharmaceutical Sciences, Faculty of Life Sciences & Medicine, King's College London, Room 2.34B, New Hunts House, London, SE1 1UL, UK.

出版信息

BMC Cancer. 2024 Aug 13;24(1):1004. doi: 10.1186/s12885-024-12762-0.

Abstract

BACKGROUND

Metastatic prostate cancer is a leading cause of cancer-related morbidity and mortality in men, yet the underlying molecular mechanisms are poorly understood. Plexins are transmembrane receptors for semaphorins with divergent roles in many forms of cancer. We recently found that a single clinically relevant specific amino acid change (Proline1597Leucine, (P1597L)), found in metastatic deposits of prostate cancer patients, converts PlexinB1 from a metastasis suppressor to a gene that drives prostate cancer metastasis in vivo. However, the mechanism by which PlexinB1(P1597L) promotes metastasis is not known.

METHODS

Pull down assays using GST-RalGDS or -GSTRaf1-RBD were used to reveal the effect of mutant or wild-type PlexinB1 expression on Rap and Ras activity respectively. Protein-protein interactions were assessed in GST pulldown assays, Akt/ERK phosphorylation by immunoblotting and protein stability by treatment with cycloheximide. Rho/ROCK activity was monitored by measuring MLC2 phosphorylation and actin stress fiber formation. PlexinB1 function was measured using cell-collapse assays.

RESULTS

We show here that the single clinically relevant P1597L amino acid change converts PlexinB1 from a repressor of Ras to a Ras activator. The PlexinB1(P1597L) mutation inhibits the RapGAP activity of PlexinB1, promoting a significant increase in Ras activity. The P1597L mutation also blocks PlexinB1-mediated reduction in Rho/ROCK activity, restraining the decrease in MLC2 phosphorylation and actin stress fiber formation induced by overexpression of wild-type PlexinB1. PlexinB1(P1597L) has little effect on the interaction of PlexinB1 with small GTPases or receptor tyrosine kinases and does not inhibit PlexinB1-stimulated Akt or ERK phosphorylation. These results indicate that the mutation affects Rho signalling via the Rap/Ras pathway. The PlexinB1(P1597L) mutation inhibits morphological cell collapse induced by wild-type PlexinB1 expression, suggesting that the mutation induces a loss of an inhibitory tumour suppressor function.

CONCLUSION

These results suggest that the clinically relevant P1597L mutation in PlexinB1 may transform PlexinB1 from a suppressor to a driver of metastasis in mouse models of prostate cancer by reducing the RapGAP activity of PlexinB1, leading to Ras activation. These findings highlight the PlexinB1-Rap-Ras pathway for therapeutic intervention in prostate cancer.

摘要

背景

转移性前列腺癌是男性癌症相关发病率和死亡率的主要原因,但潜在的分子机制尚不清楚。丛蛋白是 semaphorin 的跨膜受体,在多种形式的癌症中具有不同的作用。我们最近发现,在前列腺癌患者的转移性沉积物中发现的单个临床相关的特定氨基酸变化(脯氨酸 1597 亮氨酸,(P1597L)),将丛蛋白 B1 从转移抑制剂转换为体内驱动前列腺癌转移的基因。然而,PlexinB1(P1597L)促进转移的机制尚不清楚。

方法

使用 GST-RalGDS 或 -GSTRaf1-RBD 进行下拉测定,分别揭示突变或野生型 PlexinB1 表达对 Rap 和 Ras 活性的影响。通过 GST 下拉测定、免疫印迹法测定 Akt/ERK 磷酸化和环已酰亚胺处理测定蛋白稳定性来评估蛋白-蛋白相互作用。通过测量 MLC2 磷酸化和肌动蛋白应力纤维形成来监测 Rho/ROCK 活性。使用细胞崩溃测定来测量 PlexinB1 的功能。

结果

我们在这里表明,单个临床相关的 P1597L 氨基酸变化将 PlexinB1 从 Ras 的抑制剂转换为 Ras 的激活剂。PlexinB1(P1597L)突变抑制了 PlexinB1 的 RapGAP 活性,显著增加了 Ras 活性。P1597L 突变还阻断了 PlexinB1 介导的 Rho/ROCK 活性降低,抑制了野生型 PlexinB1 过表达诱导的 MLC2 磷酸化和肌动蛋白应力纤维形成的减少。PlexinB1(P1597L)对 PlexinB1 与小 GTPase 或受体酪氨酸激酶的相互作用几乎没有影响,并且不抑制 PlexinB1 刺激的 Akt 或 ERK 磷酸化。这些结果表明,该突变通过 Rap/Ras 途径影响 Rho 信号。PlexinB1(P1597L)突变抑制了野生型 PlexinB1 表达诱导的形态细胞崩溃,表明该突变诱导了抑制肿瘤抑制功能的丧失。

结论

这些结果表明,PlexinB1 中的临床相关 P1597L 突变可能通过降低 PlexinB1 的 RapGAP 活性,导致 Ras 激活,将 PlexinB1 从前列腺癌小鼠模型中的抑制转移的因子转变为驱动转移的因子。这些发现突出了 PlexinB1-Rap-Ras 途径作为前列腺癌治疗干预的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a334/11321201/80575db472e0/12885_2024_12762_Fig1_HTML.jpg

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