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系统消融抑制 TRAMP 小鼠的转移定植并改善胰岛素敏感性:CAMKK2 在前列腺癌中具有肿瘤细胞外功能的证据。

Systemic Ablation of Impairs Metastatic Colonization and Improves Insulin Sensitivity in TRAMP Mice: Evidence for Cancer Cell-Extrinsic CAMKK2 Functions in Prostate Cancer.

机构信息

Department of Cancer Systems Imaging, The University of Texas MD Anderson Cancer Center, Houston, TX 77054, USA.

The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences, Houston, TX 77030, USA.

出版信息

Cells. 2022 Jun 10;11(12):1890. doi: 10.3390/cells11121890.

Abstract

Despite early studies linking calcium-calmodulin protein kinase kinase 2 (CAMKK2) to prostate cancer cell migration and invasion, the role of CAMKK2 in metastasis in vivo remains unclear. Moreover, while CAMKK2 is known to regulate systemic metabolism, whether CAMKK2's effects on whole-body metabolism would impact prostate cancer progression and/or related comorbidities is not known. Here, we demonstrate that germline ablation of slows, but does not stop, primary prostate tumorigenesis in the TRansgenic Adenocarcinoma Mouse Prostate (TRAMP) genetic mouse model. Consistent with prior epidemiological reports supporting a link between obesity and prostate cancer aggressiveness, TRAMP mice fed a high-fat diet exhibited a pronounced increase in the colonization of lung metastases. We demonstrated that this effect on the metastatic spread was dependent on CAMKK2. Notably, diet-induced lung metastases exhibited a highly aggressive neuroendocrine phenotype. Concurrently, deletion improved insulin sensitivity in the same mice. Histological analyses revealed that cancer cells were smaller in the TRAMP; mice compared to TRAMP; controls. Given the differences in circulating insulin levels, a known regulator of cell growth, we hypothesized that systemic CAMKK2 could promote prostate cancer cell growth and disease progression in part through cancer cell-extrinsic mechanisms. Accordingly, host deletion of impaired the growth of syngeneic murine prostate tumors in vivo, confirming nonautonomous roles for CAMKK2 in prostate cancer. Cancer cell size and mTOR signaling was diminished in tumors propagated in -null mice. Together, these data indicate that, in addition to cancer cell-intrinsic roles, CAMKK2 mediates prostate cancer progression via tumor-extrinsic mechanisms. Further, we propose that CAMKK2 inhibition may also help combat common metabolic comorbidities in men with advanced prostate cancer.

摘要

尽管早期的研究将钙调蛋白激酶激酶 2(CAMKK2)与前列腺癌细胞迁移和侵袭联系起来,但 CAMKK2 在体内转移中的作用尚不清楚。此外,尽管已知 CAMKK2 调节全身代谢,但 CAMKK2 对全身代谢的影响是否会影响前列腺癌的进展和/或相关合并症尚不清楚。在这里,我们证明了种系缺失会减缓,但不能阻止 TRAP 遗传小鼠模型中的原发性前列腺肿瘤发生。与先前支持肥胖与前列腺癌侵袭性之间存在联系的流行病学报告一致,高脂肪饮食喂养的 TRAMP 小鼠肺部转移灶的定植明显增加。我们证明,这种对转移扩散的影响依赖于 CAMKK2。值得注意的是,饮食诱导的肺转移表现出高度侵袭性的神经内分泌表型。同时,缺失改善了相同小鼠的胰岛素敏感性。组织学分析显示,与 TRAMP;相比,对照小鼠的癌细胞更小。鉴于循环胰岛素水平的差异,这是已知的细胞生长调节剂,我们假设系统 CAMKK2 可以通过癌细胞外在机制促进前列腺癌细胞生长和疾病进展。因此,宿主缺失会损害体内同基因小鼠前列腺肿瘤的生长,证实了 CAMKK2 在前列腺癌中的非自主作用。在 -null 小鼠中繁殖的肿瘤中,宿主缺失会削弱癌细胞大小和 mTOR 信号。总之,这些数据表明,除了癌细胞内在作用外,CAMKK2 通过肿瘤外在机制介导前列腺癌进展。此外,我们提出抑制 CAMKK2 可能还有助于治疗晚期前列腺癌男性的常见代谢合并症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85a1/9221545/1cedf8463635/cells-11-01890-g001.jpg

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