Targeting the heat shock protein 90: a rational way to inhibit macrophage migration inhibitory factor function in cancer

被引:19
作者
Schulz, Ramona [1 ]
Moll, Ute M. [1 ,2 ]
机构
[1] Univ Gottingen, Gottingen Ctr Mol Biosci, Inst Mol Oncol, D-37077 Gottingen, Germany
[2] SUNY Stony Brook, Dept Pathol, Stony Brook, NY 11794 USA
关键词
cancer; heat shock protein 90; macrophage migration inhibitory factor; macrophage migration inhibitory factor inhibition; nononcogene addiction; FACTOR INDUCES ANGIOGENESIS; FACTOR MIF; BREAST-CANCER; TUMOR-GROWTH; MOUSE MODEL; FACTOR GENE; EXPRESSION; CELLS; HSP90; ACTIVATION;
D O I
10.1097/CCO.0000000000000036
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Purpose of reviewMacrophage migration inhibitory factor (MIF), originally identified as a proinflammatory cytokine, is highly elevated in many human cancer types, independent of their histological origin. MIF's tumour promoting activities correlate with tumour aggressiveness and poor clinical prognosis. Genetic depletion of MIF in mouse cancer models results in significant inhibition of cell proliferation and induction of apoptosis, making it an attractive target for anticancer therapies. Here, we summarize the current possibilities to inhibit MIF function in cancer.Recent findingsAll known small molecule MIF inhibitors antagonize MIF's enzymatic function. However, a recent knockin mouse model suggested that protein interactions play a bigger biological role in tumour cell growth regulation than MIF's enzymatic activity. Thus, alternative strategies are important for targeting MIF. Recently, we identified that MIF in cancer cells is highly stabilized through the heat shock protein 90 machinery (HSP90). Thus, MIF is an HSP90 client. Pharmacological inhibition of the Hsp90 ATPase activity results in MIF degradation in several types of cancer cells. This provides a new way to inhibit MIF function independent of its enzymatic activity.SummaryTargeting the HSP90 machinery is a promising way to inhibit MIF function in cancer. Along with MIF and dependent on the molecular make-up of the tumour, a large number of other critical tumourigenic proteins are also destabilized by HSP90 inhibition, overall resulting in a profound block of tumour growth.
引用
收藏
页码:108 / 113
页数:6
相关论文
共 69 条
  • [11] Expression of Macrophage Migration Inhibitory Factor and CD74 in Cervical Squamous Cell Carcinoma
    Cheng, Rong-jie
    Deng, Wei-guo
    Niu, Chun-bo
    Li, Yi-yang
    Fu, Yan
    [J]. INTERNATIONAL JOURNAL OF GYNECOLOGICAL CANCER, 2011, 21 (06) : 1004 - 1012
  • [12] Metabolism-Related Proteins Are Differentially Expressed according to the Molecular Subtype of Invasive Breast Cancer Defined by Surrogate Immunohistochemistry
    Choi, Junjeong
    Jung, Woo-Hee
    Koo, Ja Seung
    [J]. PATHOBIOLOGY, 2013, 80 (01) : 41 - 52
  • [13] Choudhary S, 2013, CARCINOGENESIS
  • [14] Cludts S, 2010, ANTICANCER RES, V30, P3313
  • [15] Inflammation and cancer: macrophage migration inhibitory factor (MIF)-the potential missing link
    Conroy, H.
    Mawhinney, L.
    Donnelly, S. C.
    [J]. QJM-AN INTERNATIONAL JOURNAL OF MEDICINE, 2010, 103 (11) : 831 - 836
  • [16] Heat shock factor 1 is a powerful multifaceted modifier of carcinogenesis
    Dai, Chengkai
    Whitesell, Luke
    Rogers, Arlin B.
    Lindquist, Susan
    [J]. CELL, 2007, 130 (06) : 1005 - 1018
  • [17] Loss of tumor suppressor NF1 activates HSF1 to promote carcinogenesis
    Dai, Chengkai
    Santagata, Sandro
    Tang, Zijian
    Shi, Jiayuan
    Cao, Junxia
    Kwon, Hyoungtae
    Bronson, Roderick T.
    Whitesell, Luke
    Lindquist, Susan
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2012, 122 (10) : 3742 - 3754
  • [18] The p53-dependent effects of macrophage migration inhibitory factor revealed by gene targeting
    Fingerle-Rowson, G
    Petrenko, O
    Metz, CN
    Forsthuber, TG
    Mitchell, R
    Huss, R
    Moll, U
    Müller, W
    Bucala, R
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (16) : 9354 - 9359
  • [19] A Tautomerase-Null Macrophage Migration-Inhibitory Factor (MIF) Gene Knock-In Mouse Model Reveals That Protein Interactions and Not Enzymatic Activity Mediate MIF-Dependent Growth Regulation
    Fingerle-Rowson, Guenter
    Kaleswarapu, Dayananda Rao
    Schlander, Corinna
    Kabgani, Nazanin
    Brocks, Tania
    Reinart, Nina
    Busch, Raymonde
    Schuetz, Anke
    Lue, Hongqi
    Du, Xin
    Liu, Aihua
    Xiong, Huabao
    Chen, Yibang
    Nemajerova, Alice
    Hallek, Michael
    Bernhagen, Juergen
    Leng, Lin
    Bucala, Richard
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2009, 29 (07) : 1922 - 1932
  • [20] Fu H., 2010, BMC Cell Biol, V11, P1