Kleer Celina G, Zhang Yanhong, Pan Quintin, Merajver Sofia D
Department of Pathology, Division of Hematology and Oncology, University of Michigan Medical Center, Ann Arbor, MI 48108, USA.
Neoplasia. 2004 Mar-Apr;6(2):179-85. doi: 10.1593/neo.03316.
Inflammatory breast cancer (IBC) is the most lethal form of locally advanced breast cancer. We have found that WISP3 is lost in 80% of human IBC tumors and that it has growth- and angiogenesis-inhibitory functions in breast cancer in vitro and in vivo. WISP3 is a cysteine-rich, putatively secreted protein that belongs to the CCN family. It contains a signal peptide at the N-terminus and four highly conserved motifs. Here, for the first time, we investigate the function of WISP3 protein in relationship to its structural features. We found that WISP3 is secreted into the conditioned media and into the lumens of normal breast ducts. Once secreted, WISP3 was able to decrease, directly or through induction of other molecule(s), the IGF-1-induced activation of the IGF-IR, and two of its main downstream signaling molecules, IRS1 and ERK-1/2, in SUM149 IBC cells. Furthermore, WISP3 containing conditioned media decreased the growth rate of SUM149 cells. This work sheds light into the mechanism of WISP3 function by demonstrating that it is secreted and that, once in the extracellular media, it induces a series of molecular events that leads to modulation of IGF-IR signaling pathways and cellular growth in IBC cells.
炎性乳腺癌(IBC)是局部晚期乳腺癌中最致命的一种形式。我们发现,在80%的人类IBC肿瘤中WISP3缺失,并且它在体外和体内的乳腺癌中均具有生长抑制和血管生成抑制功能。WISP3是一种富含半胱氨酸、推测为分泌型的蛋白质,属于CCN家族。它在N端含有一个信号肽和四个高度保守的基序。在此,我们首次研究WISP3蛋白与其结构特征相关的功能。我们发现WISP3分泌到条件培养基和正常乳腺导管腔中。一旦分泌,WISP3能够直接或通过诱导其他分子降低IGF-1诱导的IGF-IR激活,以及SUM149 IBC细胞中其两个主要下游信号分子IRS1和ERK-1/2的激活。此外,含有WISP3的条件培养基降低了SUM149细胞的生长速率。这项工作通过证明WISP3被分泌,并且一旦进入细胞外培养基,它就会诱导一系列分子事件,导致IBC细胞中IGF-IR信号通路的调节和细胞生长,从而阐明了WISP3的功能机制。