| Literature DB >> 18710598 |
Mustafa Akkiprik1, Yumei Feng, Huamin Wang, Kexin Chen, Limei Hu, Aysegul Sahin, Savitri Krishnamurthy, Ayse Ozer, Xishan Hao, Wei Zhang.
Abstract
The insulin-like growth factor axis, which has been shown to protect cells from apoptosis, plays an essential role in normal cell physiology and in cancer development. The family of insulin-like growth factor binding proteins (IGFBPs) has been shown to have a diverse spectrum of functions in cell growth, death, motility, and tissue remodeling. Among the six IGFBP family members, IGFBP-5 has recently been shown to play an important role in the biology of breast cancer, especially in breast cancer metastasis; however, the exact mechanisms of action remain obscure and sometimes paradoxical. An in-depth understanding of IGFBP-5 would shed light on its potential role as a target for breast cancer therapeutics.Entities:
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Year: 2008 PMID: 18710598 PMCID: PMC2575530 DOI: 10.1186/bcr2116
Source DB: PubMed Journal: Breast Cancer Res ISSN: 1465-5411 Impact factor: 6.466
Figure 1Domain structure of insulin-like growth factor binding protein 5 and potential functional effects. ALS, acid-labile subunit; ECM, extracellular matrix; IGF, insulin-like growth factor.
Figure 2Overview of the insulin-like growth factor-I signaling pathway involved in breast cancer. Insulin-like growth factor I (IGF-I) activates both the Ras/mitogen-activated protein kinase (MAPK) and phosphoinositide 3-kinase (PI3K)/serine–threonine kinase (AKT) pathways, and causes cell growth and proliferation. ERK1/2, extracellular signal-regulated kinase 1/2; GSK, glycogen synthase kinase; IGF-IR, insulin-like growth factor-I receptor; IRS-1, insulin receptor substrate; MEK1/2, mitogen-activated protein/extracellular signal-regulated kinase kinase; mTOR, mammalian target of rapamycin; PTEN, phosphatase and tensin homologue; Shc, GRB2, SOS1, adaptor proteins.
Figure 3Effects of insulin-like growth factor binding protein 5 in breast cancer. Schematic presentations of insulin-like growth factor (IGF)-dependent and IGF-independent effects of insulin-like growth factor binding protein 5 (IGFBP-5) in breast cancer. (a) Main effects of IGFBP-5 dependent on IGF in breast cancer. IGFBP-5 binds IGF and blocks activation of IGF signaling. If IGFBP-5 is degraded by specific proteases, IGF releases and activates cell proliferation. IGF-IR, insulin-like growth factor-I receptor. (b) IGFBP-5 enters cells by specific receptors or other pathways and determines the cell fate with its cellular localization. Left (arrow a): nuclear import of IGFBP-5 – there are two mechanism through which IGFBP-5 enters the nucleus: importin-β(IMPβ)-mediated or diffusion. Right (arrow b): cytoplasmic accumulation of IGFBP-5 by interaction with other proteins, and stimulation of antiapoptotic effects and metastasis.
Biological roles of insulin-like growth factor binding protein 5 (IGFBP-5) in different types of cancer
| Cancer type | Source of tissue or cell line | Application of the study or study design | Observed functional effects of IGFBP-5 | Ref. |
| Breast | T47D | Intracellular trafficking | Nuclear localization of IGFBP-5 | [ |
| Hs578T | Analysis of mitogenic effect of IGFBP-5 | Protective effect against ceramide-induced apoptosis | [ | |
| Hs578T | Cell attachment applications | Cell attachment increased by exogenously added IGFBP-5 | [ | |
| MDA-MB-231 | Cellular localization and apoptotic role of IGFBP-5 | IGFBP-5 localizes in the nucleus and produces apoptosis | [ | |
| MDA-MB-231 | Role of IGFBP-5 in the apoptotic pathway | IGFBP-5 induces and activates caspase 8 and caspase 9 | [ | |
| Neuroblastoma | B104 | Characterization of IGFBP-5 proteases | A specific serine-metalloprotease for IGFBP-5 | [ |
| LAN-5, N1E-115 | Analysis of IGFBP-5 promoter sites | c-Myb and B-Myb enhance IGFBP-5 transcription | [ | |
| LAN-5, SY5Y(N) | Micro and small interfering RNAs directed to IGFBP-5 mRNA | Growth inhibition and more prone to apoptosis | [ | |
| Various types of neuroblastoma cells | Retinoic acid-induced differentiation | Increased expression of IGFBP-5 | [ | |
| LAN-5, SY5Y(N) | Silencing IGFBP-5 | Mitochondrial apoptosis | [ | |
| Prostate | CWR22, CaP xenograft | Castration and androgen stimulation | Androgen receptor upregulates IGFBP-5 | [ |
| Mouse androgen-dependent Shionogi tumor model | Castration-induction | Upregulation of IGFBP-5 | [ | |
| LNCaP PC-3 | Hormone treatment 1α,25(OH)2D3 treatment | No significant effect on IGFBP-5 mRNA level | [ | |
| IGFBP-5 is primary target gene of the 1 α,25(OH)2D3 | [ | |||
| Bone marrow stromal cells | Androgen suppression treatment | Increasing IGFBP-5 mRNA expression facilitates prostate cancer progression | [ | |
| Osteosarcoma | Osteosarcoma U2 cell line, untrans-formed normal human bone cells | Proteolytic degradation of IGFBP-4 and IGFBP-5 | Proteolytic activity of IGFBP-5 can modulate IGF action in bone | [ |
| Rat osteosarcoma cells | Relationship between growth hormone receptor and IGFBP-5 | IGFBP-5 increases growth hormone receptor mRNA and growth hormone binding and potentiates mitogenesis | [ | |
| OS/50-K8 mouse osteosarcoma cells | Biological activity of IGFBP-5 | IGFBP-5 reduces proliferation and regulates differentiation | [ | |
| U2 human osteosarcoma cells | Examination of IGFBP-5 proteases | ADAM-9 cleaved IGFBP-5 specifically and is v | [ | |
| Bone cells | Silencing of IGFBP-5 | Knockdown of IGFBP-5 induced DNA synthesis and reduced differentiation | [ | |
| U2 human osteosarcoma cells | Detection of IGFBP-5 interacting proteins | A novel IGFBP-5 interacting protein (IGFBP5-IP) | [ | |
| LSaOS human osteosarcoma cell line | IGFBP-5 regulations in bone | Four-and-a-half LIM protein 2 and ADAM-9 are major modulators of IGFBP-5 actions | [ | |
| Ovarian | Human ovarian carcinoma lines | IGFBP levels | Expression of IGFBP-5 appears as a rather rare event | [ |
| Ovarian | Various types of ovarian cancers | Examine IGFBP-2 and IGFBP-5 levels | Overexpression of IGFBP-5 in high-grade ovarian carcinoma | [ |
| Ovarian cancer patients | Evaluate predictive value of IGFBPs in aromatase inhibitor letrozole | IGFBP-5 is a predictive marker for endocrine therapy | [ | |
| Cervical | HPV(-) C33A, HPV(+) CaSki cells | Retinoic acid treatment | IGFBP-5 overexpression determines retinoic acid effects in human papilloma virus(-) cells | [ |
| Squamous cell carcinomas | Cervical carcinogenesis | Downregulation of IGFBP-5 | [ | |
| Colon | LoVo cells | NS398 treatment | IGFBP-5 might be a target of NS398 | [ |
| Colon epithelial cells | Leptin treatment | Downregulation of IGFBP-5 by leptin treatment | [ | |
| Renal | Oncocytomas, clear cell and papillary renal cell carcinoma | Changes of IGF/IGFBPs | Downregulation of IGFBP-5 in papillary renal cell carcinoma and oncocytomas | [ |
| Clear cell renal cell carcinoma | Analysis of IGF-axis components | Downregulation of IGFBP-5 | [ | |
| Lung | Lun squamous cell carcinomas, and normal bronchial epithelial tissues | Identification of differentially expressed genes | Overexpression of IGFBP-5 | [ |
| Gastric | A panel of human gastric cancer cell lines, and normal and tumor tissues | Detect IGFs and IGFBP levels | One-half of the tumor cells express IGFBP-5 | [ |
| Thyroid | Various types of thyroid tissues | IGFBP-5 levels | Overexpression of IGFBP-5 in papillary carcinoma | [ |
| Pancreas | Pancreatic ductal adenocarcinoma | Differential expression of genes | Overexpression of IGFBP-5 | [ |
1α,25(OH) 2D3 = 1α,25-dihydroxyvitamin D3; IGF = insulin-like growth factor; IGFBP = insulin-like growth factor binding protein.