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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Cleavage of galectin-3 by matrix metalloproteases induces angiogenesis in breast cancer.
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Cleavage of galectin-3 by matrix metalloproteases induces angiogenesis in breast cancer.

机译:通过基质金属蛋白酶裂解Galectin-3诱导乳腺癌血管生成。

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Galectin-3 cleavage is related to progression of human breast and prostate cancer and is partly responsible for tumor growth, angiogenesis and apoptosis resistance in mouse models. A functional polymorphism in galectin-3 gene, determining its susceptibility to cleavage by matrix metalloproteinases (MMPs)-2/-9 is related to racial disparity in breast cancer incidence in Asian and Caucasian women. The purpose of our study is to evaluate (i) if cleavage of galectin-3 could be related to angiogenesis during the progression of human breast cancer, (ii) the role of cleaved galectin-3 in induction of angiogenesis and (iii) determination of the galectin-3 domain responsible for induction of angiogenic response. Galectin-3 null breast cancer cells BT-459 were transfected with either cleavable full-length galectin-3 or its fragmented peptides. Chemotaxis, chemoinvasion, heterotypic aggregation, epithelial-endothelial cell interactions and angiogenesis were compared to noncleavable galectin-3. BT-549-H(64) cells harboring cleavable galectin-3 exhibited increased chemotaxis, invasion and interactions with endothelial cells resulting in angiogenesis and 3D morphogenesis compared to BT-549-P(64) cells harboring noncleavable galectin-3. BT-549-H(64) cells induced increased migration and phosphorylation of focal adhesion kinase in migrating endothelial cells. Endothelial cells cocultured with BT-549 cells transfected with galectin-3 peptides indicate that amino acids 1-62 and 33-250 stimulate migration and morphogenesis of endothelial cells. Immunohistochemical analysis of blood vessel density and galectin-3 cleavage in a breast cancer progression tissue array support the in vitro findings. We conclude that the cleavage of the N terminus of galectin-3 followed by its release in the tumor microenvironment in part leads to breast cancer angiogenesis and progression.
机译:Galectin-3裂解与人乳腺癌和前列腺癌的进展有关,部分原因是小鼠模型中肿瘤生长,血管生成和凋亡抗性的部分。 Galectin-3基因中的功能多态性,测定其对基质金属蛋白酶(MMP)-2 / -9的裂解敏感性与亚洲和高加索妇女的乳腺癌发病率中的种族差异有关。我们研究的目的是评估(i)如果Galectin-3的裂解可能与人类乳腺癌进展过程中的血管生成有关,(ii)在血管生成和(III)的诱导中裂解的Galectin-3的作用Galectin-3结构域负责诱导血管生成反应。用可切割的全长半乳糖蛋白-3或其碎片肽转染Galectin-3零乳腺癌细胞BT-459。将趋化性,化疗,异质型聚集,上皮 - 内皮细胞相互作用和血管生成进行比较,与不可聚切蛋白-3相比。含有可切割的Galectin-3的BT-549-H(64)细胞表现出增加的趋化性,侵袭和与内皮细胞相互作用,导致血管生成和3D形态发生,而与含有不可脱离的Galectin-3的BT-549-P(64)细胞相比。 BT-549-H(64)细胞在迁移内皮细胞中诱导局灶性粘附激酶的迁移和磷酸化增加。通过用半抗凝蛋白-3肽转染的BT-549细胞与预感染的内皮细胞表示氨基酸1-62和33-250刺激内皮细胞的迁移和形态发生。免疫组化分析血管密度和半乳糖素-3在乳腺癌进展组织阵列中的裂解支撑体外发现。我们得出结论,半乳糖蛋白-3的N末端的切割,然后部分地导致肿瘤微环境中的释放导致乳腺癌血管生成和进展。

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