Transmembrane Amino Acid Transporters in Shaping the Metabolic Profile of Breast Cancer Cell Lines: The Focus on Molecular Biological Subtype

被引:0
作者
Dyachenko, Elena I. [1 ]
Bel'skaya, Lyudmila V. [1 ]
机构
[1] Omsk State Pedag Univ, Biochem Res Lab, Omsk 644099, Russia
基金
俄罗斯科学基金会;
关键词
transmembrane amino acid transporters; amino acids; cell lines; breast cancer; molecular biological subtype; metabolism; NF-KAPPA-B; ESTROGEN-RECEPTOR-ALPHA; GLUTAMINE-METABOLISM; UP-REGULATION; C-MYC; NUCLEAR TRANSLOCATION; ENDOCRINE RESISTANCE; ORGANIC OSMOLYTE; O-GLCNACYLATION; DRUG TARGET;
D O I
10.3390/cimb47010004
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Amino acid metabolism in breast cancer cells is unique for each molecular biological subtype of breast cancer. In this review, the features of breast cancer cell metabolism are considered in terms of changes in the amino acid composition due to the activity of transmembrane amino acid transporters. In addition to the main signaling pathway PI3K/Akt/mTOR, the activity of the oncogene c-Myc, HIF, p53, GATA2, NF-kB and MAT2A have a direct effect on the amino acid metabolism of cancer cells, their growth and proliferation, as well as the maintenance of homeostatic equilibrium. A distinctive feature of luminal subtypes of breast cancer from TNBC is the ability to perform gluconeogenesis. Breast cancers with a positive expression of the HER2 receptor, in contrast to TNBC and luminal A subtype, have a distinctive active synthesis and consumption of fatty acids. It is interesting to note that amino acid transporters exhibit their activity depending on the pH level inside the cell. In the most aggressive forms of breast cancer or with the gradual progression of the disease, pH will also change, which will directly affect the metabolism of amino acids. Using the cell lines presented in this review, we can trace the characteristic features inherent in each of the molecular biological subtypes of breast cancer and develop the most optimal therapeutic targets.
引用
收藏
页数:28
相关论文
共 200 条
[71]   The neutral amino acid transporter SLC7A10 in adipose tissue, obesity and insulin resistance [J].
Jersin, Regine Asen ;
Jonassen, Laura Roxana ;
Dankel, Simon Nitter .
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2022, 10
[72]   Let-7 Suppresses B Cell Activation through Restricting the Availability of Necessary Nutrients [J].
Jiang, Shuai ;
Yan, Wei ;
Wang, Shizhen Emily ;
Baltimore, David .
CELL METABOLISM, 2018, 27 (02) :393-+
[73]   Cysteine transporter SLC3A1 promotes breast cancer tumorigenesis [J].
Jiang, Yang ;
Cao, Yuan ;
Wang, Yongbin ;
Li, Wei ;
Liu, Xinyi ;
Lv, Yixuan ;
Li, Xiaoling ;
Mi, Jun .
THERANOSTICS, 2017, 7 (04) :1036-1046
[74]   Phosphorylation-mediated activation of LDHA promotes cancer cell invasion and tumour metastasis [J].
Jin, L. ;
Chun, J. ;
Pan, C. ;
Alesi, G. N. ;
Li, D. ;
Magliocca, K. R. ;
Kang, Y. ;
Chen, Z. G. ;
Shin, D. M. ;
Khuri, F. R. ;
Fan, J. ;
Kang, S. .
ONCOGENE, 2017, 36 (27) :3797-3806
[75]   The mTOR effectors 4EBP1 and S6K2 are frequently coexpressed, and associated with a poor prognosis and endocrine resistance in breast cancer: a retrospective study including patients from the randomised Stockholm tamoxifen trials [J].
Karlsson, Elin ;
Perez-Tenorio, Gizeh ;
Amin, Risul ;
Bostner, Josefine ;
Skoog, Lambert ;
Fornander, Tommy ;
Sgroi, Dennis C. ;
Nordenskjold, Bo ;
Hallbeck, Anna-Lotta ;
Stal, Olle .
BREAST CANCER RESEARCH, 2013, 15 (05)
[76]   Interaction of tryptophan derivatives with SLC6A14 (ATB0,+) reveals the potential of the transporter as a drug target for cancer chemotherapy [J].
Karunakaran, Senthil ;
Umapathy, Nagavedi S. ;
Thangaraju, Muthusarny ;
Hatanaka, Takahiro ;
Itagaki, Shiro ;
Munn, David H. ;
Prasad, Puttur D. ;
Ganapathy, Vadivel .
BIOCHEMICAL JOURNAL, 2008, 414 (343-355) :343-355
[77]   SLC6A14 (ATB0,+) Protein, a Highly Concentrative and Broad Specific Amino Acid Transporter, Is a Novel and Effective Drug Target for Treatment of Estrogen Receptor-positive Breast Cancer [J].
Karunakaran, Senthil ;
Ramachandran, Sabarish ;
Coothankandaswamy, Veena ;
Elangovan, Selvakumar ;
Babu, Ellappan ;
Periyasamy-Thandavan, Sudharsan ;
Gurav, Ashish ;
Gnanaprakasam, Jaya P. ;
Singh, Nagendra ;
Schoenlein, Patricia V. ;
Prasad, Puttur D. ;
Thangaraju, Muthusamy ;
Ganapathy, Vadivel .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (36) :31830-31838
[78]   Targeting Apoptosis Inhibition to Activate Antitumor Immunity [J].
Kesavardhana, Sannula ;
Kanneganti, Thirumala-Devi .
TRENDS IN IMMUNOLOGY, 2019, 40 (12) :1073-1075
[79]   Targeting purine synthesis in ASS1-expressing tumors enhances the response to immune checkpoint inhibitors [J].
Keshet, Rom ;
Lee, Joo Sang ;
Adler, Lital ;
Iraqi, Muhammed ;
Ariav, Yarden ;
Lim, Lisha Qiu Jin ;
Lerner, Shaul ;
Rabinovich, Shiran ;
Oren, Roni ;
Katzir, Rotem ;
Tishler, Hila Weiss ;
Stettner, Noa ;
Goldman, Omer ;
Landesman, Hadas ;
Galai, Sivan ;
Kuperman, Yael ;
Kuznetsov, Yuri ;
Brandis, Alexander ;
Mehlman, Tevi ;
Malitsky, Sergey ;
Itkin, Maxim ;
Koehler, S. Eleonore ;
Zhao, Yongmei ;
Talsania, Keyur ;
Shen, Tsai-wei ;
Peled, Nir ;
Ulitsky, Igor ;
Porgador, Angel ;
Ruppin, Eytan ;
Erez, Ayelet .
NATURE CANCER, 2020, 1 (09) :894-+
[80]   Expression of glutamine metabolism-related proteins according to molecular subtype of breast cancer [J].
Kim, Sewha ;
Kim, Do Hee ;
Jung, Woo-Hee ;
Koo, Ja Seung .
ENDOCRINE-RELATED CANCER, 2013, 20 (03) :339-348