Submitted:
30 December 2024
Posted:
31 December 2024
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Materials and Methods
2.1. Materials
2.2. Cell Lines, Cell Culture and Transfection
2.3. Cell Migration Assays and Immunofluorescence Microscopy
2.4. Protein Preparations and Immunoblotting
2.5. Determination of the Intracellular Beta-Thymosin Content by Reverse-Phase High Performance Liquid Chromatography (HPLC) After Equilibrium Centrifugation
3. Results
3.1. The Distribution of Tß4 and Organization of the Actin Cytoskeleton in Tumour Cell Lines
3.2. Effect of Cofilin Overexpression on Tumour Cell Migration
3.4. Effect of Modulating the Intracellular Tß4 Concentration on Tumour Cell Migration Analysed by the Transwell Assay
3.5. Cell Migration Analysed by the Agarose Drop Assay
3.6. Influence of Extracellular Tß4 on Tumour Cell Migration
3.7. Effect of Exposure to 2.8 µM Tß4 on 3LNLN Cells
3.8. Co-Localisation of Tß4 with ILK in the Presence of Extracellular Tß4
3.9. Extracellular Tß4 Increases the Phosphorylation/Activation of AKT/PKB Proteins
3.10. Expression of Matrix-Metalloproteinases in Non-Stimulated Carcinoma Cells
3.11. Exposure to Extracellular Tß4 Increases MMP Expression by the Carcinoma Cells
4. Discussion
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| ABP | actin binding protein |
| ADF | actin depolymerizing factor |
| AKT | protein kinase B |
| ECM | extracellular matrix |
| EMT | epithelial-mesenchymal transition |
| F-actin | filamentous actin |
| FCS | foetal calf serum |
| FITC | fluorescein thioisocyanate |
| G-actin | monomeric/globular actin |
| HEPES | 4-(hydroxyethyl)-1-piperazineethanesulfonic acid |
| ILK | integrin-linked kinase |
| shRNA | small hairpin RNA |
| Tß4 | thymosin beta4 |
References
- Steeg, PS. Tumor metastasis: mechanistic insights and clinical challenges. Nat Med. 2006; 12: 895-904.
- Friedl P, Wolf K. Plasticity of cell migration: a multiscale tuning model. J Cell Biol. 2010 Jan 11;188(1):11-9. Epub 2009 Dec 1. PMCID: PMC2812848. [CrossRef] [PubMed]
- Fife CM, McCarroll JA, Kavallaris M. Movers and shakers: cell cytoskeleton in cancer metastasis. B J Pharm. 2013; 171: 5507-5523.
- Pollard TD, Cooper JA. Actin, a central player in cell shape and movement. Science. 2009; 326(5957): 1208-12. [CrossRef] [PubMed] [PubMed Central]
- Kühn S, Mannherz HG. Actin: Structure, Function, Dynamics, and Interactions with Bacterial Toxins. Curr Top Microbiol. Immunol. 2017; 399: 1-34. [CrossRef] [PubMed]
- Safer D, Elzinga M, Nachmias VT. Thymosin beta 4 and Fx, an actin-sequestering peptide, are indistinguishable. J Biol Chem. 1991 Mar 5;266(7):4029-32. [PubMed]
- Cassimeris L, Safer D, Nachmias VT, Zigmond SH. Thymosin ß4 sequesters the majority of G-actin in resting human polymorphonuclear leukocytes. J Cell Biol. 1992; 119: 1261-1270.
- Mannherz HG, Hannappel E. The ß-thymosins: Intracellular and extracellular activities of a versatile actin binding protein family. Cell Motil Cytoskeleton. 2009; 66: 839-851.
- Yeoh S, Pope B, Mannherz HG, Weeds A. Determining the differences in actin binding by human ADF and cofilin. J Mol Biol. 2002; 315(4):911-25. [CrossRef] [PubMed]
- Xue B, Robinson RC. Guardians of the actin monomer. Eur J Cell Biol. 2013; 92(10-11):316-32. Epub 2013 Nov 4. [CrossRef] [PubMed]
- Pollard TD, Borisy GG. Cellular motility driven by assembly and disassembly of actin filaments. Cell. 2003; 112: 453-465.
- Bravo-Cordero JJ, Magalhaes MA, Eddy RJ, Hodgson L, Condeelis J. Functions of cofilin in cell locomotion and invasion. Nat Rev Mol Cell Biol. 2013; 14:405-15.
- Lai FPL, Szczodrak M, Block J, Faix J, Breitsprecher D, Mannherz HG, Stradal TEB, Dunn GA, Small JV, Rottner K. Arp2/3 complex interactions and actin network turnover in lamellipodia. EMBO J. 2008; 27: 982-992.
- Linder S, Cervero P, Eddy R, Condeelis J. Mechanisms and roles of podosomes and invadopodia. Nat Rev Mol Cell Biol. 2023 Feb;24(2):86-106. Epub 2022 Sep 14. [CrossRef] [PubMed]
- Simiczyjew A, Mazur AJ, Ampe C, Malicka-Błaszkiewicz M, van Troys M, Nowak D. Active invadopodia of mesenchymally migrating cancer cells contain both β and γ cytoplasmic actin isoforms. Exp Cell Res. 2016; 339: 206-219.
- Friedl P, Bröcker EB. T cell migration in three-dimensional extracellular matrix: guidance by polarity and sensations. Dev Immunol. 2000; 7(2-4): 249-66. [CrossRef] [PubMed] [PubMed Central]
- Wegner, A. Head to tail polymerization of actin. J Mol Biol. 1976; 108: 139-150.
- Carlier MF, Pernier J, Montaville P, Shekhar S, Kühn S. Control of polarized assembly of actin filaments in cell motility. Cell Mol Life Sci. 2015; 72: 3051-3067.
- Friedl P, Bröcker EB. T cell migration in three-dimensional extracellular matrix: guidance by polarity and sensations. Dev Immunol. 2000; 7(2-4): 249-66. [CrossRef] [PubMed] [PubMed Central]
- dos Remedios CG, Chhabra D, Kekic M, Dedova IV, Tsubakihara M, Berry DA, Nosworthy NJ. Actin binding proteins: regulation of cytoskeletal microfilaments. Physiol Rev. 2003; 83(2):433-73. [CrossRef] [PubMed]
- Carlier MF, Laurent V, Santolini J, Melki R, Didry D, Xia G-X, Hong Y, Chua N-H, Pantaloni D. Actin filament depolymerizing factor (ADF/cofilin) enhances the rate of filament turnover: implication in actin-based motility. J. Cell Biol. 1997; 136: 1307-1323.
- Andrianantoandro E, Pollard TD. Mechanism of actin filament turnover by severing and nucleation at different concentrations of ADF/cofilin. Molec Cell. 2006; 24: 13-23.
- van Rheenen J, Condeelis J, Glogauer M. A common cofilin activity cycle in invasive tumor cells and inflammatory cells. J Cell Sci. 2009; 122(Pt 3):305-11. [CrossRef] [PubMed] [PubMed Central]
- Tania N, Prosk E, Condeelis J, Edelstein-Keshet L. A temporal model of cofilin regulation and the early peak of actin barbed ends in invasive tumor cells. Biophys J. 2011;100(8):1883-92. [CrossRef] [PubMed] [PubMed Central]
- Zarbock J, Oschkinat H, Hannappel E, Kalbacher H, Voelter W, Holak TA. Solution conformation of thymosin beta 4: a nuclear magnetic resonance and simulated annealing study. Biochemistry. 1990; 29(34):7814-21. [CrossRef] [PubMed]
- Ballweber E, Hannappel E, Huff T, Stephan H, Haener M, Taschner N, Stoffler D, Aebi U, Mannherz HG. Polymerisation of chemically cross-linked actin:thymosin beta(4) complex to filamentous actin: alteration in helical parameters and visualisation of thymosin beta(4) binding on F-actin. J Mol Biol. 2022; 315(4):613-25. [CrossRef] [PubMed]
- Mannherz HG, Mazur A, Jockusch BM. Repolymerization of Actin from Actin:Thymosin ß4 complex induced by Diaphanous related formins and Gelsolin. Ann NY Acad Sci. 2010; 1194: 36-43.
- Al Haj A, Mazur AJ, Buchmeier S, App C, Theiss C, Silvan U, Schoenenberger CA, Jockusch BM, Hannappel E, Weeds AG, Mannherz HG. Thymosin beta4 inhibits ADF/cofilin stimulated F-actin cycling and HeLa cell migration: reversal by active Arp2/3 complex. Cytoskeleton (Hoboken). 2014; 71(2):95-107. Epub 2013 Dec 31. [CrossRef] [PubMed]
- Cha HJ, Jeong MJ, Kleinman HK. Role of thymosin beta4 in tumor metastasis and angiogenesis. J Natl. Cancer Inst. 2003; 95: 1674-1680.
- Califano D, Monaco C, Santelli G, Giuliano A, Veronese M L, Berlingieri MT, de Franciscis V, Berger N, Trapasso F, Santoro M. 1998. Thymosin beta-10 gene overexpression correlated with the highly malignant neoplastic phenotype of transformed thyroid cells in vivo and in vitro. Cancer Res. 58: 823-828.
- Wang B, Wang Z, Zhang T, Yang G. Overexpression of thymosin β10 correlates with disease progression and poor prognosis in bladder cancer. Exp Ther Med. 2019 Nov;18(5):3759-3766. Epub 2019 Sep 13. [CrossRef] [PubMed] [PubMed Central]
- Yu FX, Lin SC, Morrison-Bogorad M, Atkinson MA, Yin HL. Thymosin beta 10 and beta 4 are both actin monomer sequestering proteins. J Biol Chem. 1993; 268(1):502-9. [PubMed]
- Yamamoto T, Gotoh M, Kitajima M, Hirohashi S. Thymosin beta-4 expression is correlated with metastatic capacity of colorectal carcinomas. Biochem Biophys Res Commun. 1993; 193(2):706-10. [CrossRef] [PubMed]
- Ricci-Vitiani L, Mollinari C, di Martino S, Biffoni M, Pilozzi E, Pagliuca A, de Stefano MC, Circo R, Merlo D, De Maria R, Garaci E. Thymosin beta4 targeting impairs activity of colon cancer stem cells. FASEB J. 2010; 24(11):4291-301. Epub 2010 Jun 21. [CrossRef] [PubMed]
- Popow-Wozniak A, Mazur AJ, Mannherz HG, Malicka-Blaszkiewicz M, Nowak D. Cofilin affects actin cytoskeleton organization and migration of human colon adenocarcinoma cells. Histochem. Cell Biol. 2012; 138: 725-736.
- Bock-Marquette I, Saxena A, White MD, Dimaio JM, Srivastava D. Thymosin beta4 activates integrin-linked kinase and promotes cardiac cell migration, survival and cardiac repair. Nature. 2004; 432: 466-472.
- Fan Y, Gong Y, Ghosh PK, Graham LM, Fox PL. Spatial coordination of actin polymerization and ILK-Akt2 activity during endothelial cell migration. Dev Cell. 2009: 661-674. [CrossRef] [PubMed] [PubMed Central]
- Niland S, Riscanevo AX, Eble JA. Matrix metalloproteinases shape the tumor microenviron-ment in cancer progression. Int J Molec Sci. 2021; 23(1):146. [CrossRef] [PubMed] [PubMed Central]
- Mannherz HG, Gonsior SM, Gremm D, Wu X, Pope BJ, Weeds AG. Activated cofilin colocalizes with Arp2/3 complex in apoptotic blebs during programmed cell death. Eur J Cell Biol. 2005; 84: 503-515.
- Wirsching H-G, Kretz O, Morosan-Puopolo G, Chernogorova P, Theiss C, Brand-Saberi B.Thymosin ß4 induces folding of the developing optic tectum in the chicken (Gallus domesticus). J Comp Neurol. 2011; 520: 1650-1662.
- Dai F, Yusuf F, Farjah GH, Brand-Saberi B. RNAi-induced targeted silencing of control genes during chicken embryogenesis. Dev Biol. 2005; 285: 80-90.
- Nowak D, Krawczenko A, Duoe D, Malicka-Blaszkiewicz M. Actin in human coloncells with different metastatic potential. Acta Polon. Biochim. 2002; 49: 823-828.
- Popow-Wozniak A, Mazur AJ, Mannherz HG, Malicka-Blaszkiewicz M, Nowak D. Cofilin overexpression affects actin cytoskeleton organization and migration of human colon cells. Histochem Cell Biol. 2012; 138: 725-736.
- Harrington JT Jr, Stastny P. Macrophage migration from an agarose droplet: development of a micromethod for assay of delayed hypersensitivity. J Immunol. 1973; 110(3):752-9. [PubMed]
- Zoubek RE, Hannappel E. Influence of the N terminus and the actin-binding motif of thymosin beta4 on its interaction with G-actin. Ann N Y Acad Sci. 2007; 1112:435-41. Epub 2007 May 10. [CrossRef] [PubMed]
- Röder, B. Biochemische und zellbiologische Untersuchungen des intrinsisch unstrukturierten Proteins Thymosin beta 4. Doctoral thesis, 2012; Ruhr-University Bochum (Germany).
- Bradford, MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem. 1976; 72:248-54. [CrossRef] [PubMed]
- Hannappel E, Davoust S, Horecker BL. Isolation of peptides from calf thymus. Biochem Biophys Res Commun. 1982; 104(1):266-71. [CrossRef] [PubMed]
- Hannappel E, van Kampen M. Determination of thymosin beta 4 in human blood cells and serum. J Chromatogr. 1987; 397:279-85. [CrossRef] [PubMed]
- Hermoso M, Olivero P, Torres R, Riveros A, Quest AF, Stutzin A. Cell volume regulation in response to hypotonicity is impaired in HeLa cells expressing a protein kinase-C alpha mutant lacking kinase activity. J Biol Chem. 2004; 279(17):17681-9. Epub 2004 Feb 11. [CrossRef] [PubMed]
- Bamburg JR, Bernstein BW. Roles of ADF/cofilin in actin polymerization and beyond. F1000 Biol Rep. 2010; 2:62. [CrossRef] [PubMed] [PubMed Central]
- Bai D, Ueno L, Vogt PK. Akt-mediated regulation of NFkappaB and the essentialness of NF-kappaB for the oncogenicity of PI3K and Akt. Int J Cancer. 2009; 125(12):2863-70. [CrossRef] [PubMed] [PubMed Central]
- Ebner M, Lučić I, Leonard TA, Yudushkin I. PI(3,4,5)P3 Engagement Restricts Akt Activity to Cellular Membranes. Mol Cell. 2017; 65(3):416-431.e6. [CrossRef] [PubMed]
- Yarmola EG, Parikh S, Bubb MR. Formation and implications of a ternary complex of profilin, thymosin beta 4, and actin. J Biol Chem. 2001; 276(49):45555-63. Epub 2001 Sep 28. [CrossRef] [PubMed]
- Piao Z, Hong CS, Jung MR, Choi C, Park YK. Thymosin β4 induces invasion and migration of human colorectal cancer cells through the ILK/AKT/β-catenin signaling pathway. Biochem Biophys Res Commun. 2014; 452(3):858-64. Epub 2014 Sep 10. [CrossRef] [PubMed]
- Hey S, Linder S. Matrix metalloproteinases at a glance. J Cell Sci. 2024; 137(2):jcs261898. Epub 2024 Jan 18. [CrossRef] [PubMed]
- Raeeszadeh-Sarmazdeh M, Do LD, Hritz BG. Metalloproteinases and Their Inhibitors: Potential for the Development of New Therapeutics. Cells. 2020; 9(5):1313. [CrossRef] [PubMed] [PubMed Central]
- Lambert AW, Zhang Y, Weinberg RA. Cell-intrinsic and microenvironmental determinants of metastatic colonization. Nat Cell Biol. 2024;26(5):687-697. Epub 2024 May 7. Erratum in: Nat Cell Biol. 2024;26(7):1225. doi: 10.1038/s41556-024-01458-z. [CrossRef] [PubMed]
- Huff T, Rosorius O, Otto AM, Müller CS, Ballweber E, Hannappel E, Mannherz HG. Nuclear localisation of the G-actin sequestering peptide thymosin beta4. J Cell Sci. 2004; 117(Pt 22):5333-41. Epub 2004 Oct 5. [CrossRef] [PubMed]
- Mannherz HG, Gonsior SM, Wu X, Polzar B, Pope BJ, Wartosch L, Weeds AG. Dualeffects of staurosporine on A431 and NRK cells: microfilament disassembly and uncoordinated lamellipodial activity followed by cell death. Eur J Cell Biol. 2006; 85(8):785-802. Epub 2006 May 11. [CrossRef] [PubMed]
- Cassimeris L, Safer D, Nachmias VT, Zigmond SH. Thymosin beta 4 sequesters the majority of G-actin in resting human polymorphonuclear leukocytes. J Cell Biol. 1992; 119(5):1261-70. [CrossRef] [PubMed] [PubMed Central]
- Mannherz HG, Budde H, Jarkas M, Hassoun R, Malek-Chudzik N, Mazur AJ, Skuljec J, Pul R, Napirei M, Hamdani N. Reorganization of the actin cytoskeleton during the formation of neutrophil extracellular traps (NETs). Eur J Cell Biol. 2024; 103(2):151407. Epub ahead of print. [CrossRef] [PubMed]
- Khan U, Chowdhury S, Billah MM, Islam KMD, Thorlacius H, Rahman M. Neutrophil Extracellular Traps in Colorectal Cancer Progression and Metastasis. Int J Mol Sci. 2021; 22(14):7260. [CrossRef] [PubMed] [PubMed Central]
- Mousset A, Bellone L, Gaggioli C, Albrengues J. NETscape or NEThance: tailoring anti-cancer therapy. Trends Cancer. 2024;10(7):655-667. Epub 2024 Apr 24. [CrossRef] [PubMed]








| Cell type | MDA-MB-231 | 3LNLN | EB3 |
|---|---|---|---|
| Intracellular Tß4 | 0.306 µM | 0.33 µM | 0.466 µM |
| Intracellular Tß10 | 0.353 µM | 0.62 µM | 0.66 µM |
| Control | 0.24 µM His-Tß4 | 2.4 µM His-Tß4 | |
|---|---|---|---|
| anti-ILK | 100% | 141% | 107% |
| anti-P-Ser474-AKT2 | 100% | 208% | 121% |
| anti-AKT1,2 | 100% | 85% | 72% |
| anti-actin | 100% | 97% | 99% |
| anti-tubulin | 100% | 98% | 98% |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).