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, Savage DF. “Encapsulins: molecular biology in the shell,” Critical Evaluations in
, Savage DF. “Encapsulins: molecular biology of your shell,” Crucial Testimonials in Biochemistry and molecular biology, vol. 52. Taylor and Francis Ltd; 03-Sep-2017. p. 5834. doi/ 10.1080/10409238.2017.1337709. five. [32] Giessen TW, et al. Big protein organelles form a new iron sequestration system with high storage capacity. Elife 2019;8(Jul). doi/10.7554/ eLife.46070. [33] Giessen TW, Silver PA. Widespread distribution of encapsulin nanocompartments reveals functional diversity. Nat Microbiol Jun. 2017;2(six):17029. doi/ ten.1038/Aminopeptidase Compound nmicrobiol.2017.29. [34] Jones JA, Giessen TW. “Advances in encapsulin nanocompartment biology and engineering,” Biotechnology and Bioengineering, vol. 118. John Wiley and Sons Inc; 01-Jan-2021. p. 49105. doi/10.1002/bit.27564. 1.curation, Formal analysis. Matas Deveikis: Data curation, Formal analysis, Writing assessment editing. Saverio Charalambous: Data curation, Formal evaluation, Writing assessment editing. Clare M. cIAP1 Source Robinson: Information curation, Formal analysis, Writing evaluation editing, Visualization. Rupali Dabas: Writing overview editing. Sofia Esteban Serna: Information curation, Formal evaluation, Writing evaluation editing. Diana A. Catana: Data curation, Formal analysis, Writing review editing. Konstantin Pildish: structural modelling. Vladimir Kalinovskiy: Laboratory safety, Information curation. Kenth Gustafsson: Conceptualization, Project administration, Supervision. Stefanie Frank: Conceptualization, Project administration, Supervision, Funding acquisition, Writing review editing. Declaration of competing interest The authors of this paper have no actual or potential conflict of interest such as any financial, private or other relationships with other individuals or organizations within three years of starting the submitted function that could inappropriately influence, or be perceived to influence, our work. Acknowledgements We thank Mark Turmaine for support with TEM sample preparation and imaging; Ludmila Ruban for mammalian cell culture instruction; Samir Aoudjane for technical support in the laboratory; Chris Barnes, Darren Nesbeth and Andrew Care (University of Technology Sydney) for project advise; Giovanni Maddalena, Martina Sebastian, Maria Parau, Chileab Redwood-Sawyerr and Moeez Ahmed Khan for general wet lab supervision. Appendix A. Supplementary data Supplementary data to this short article may be found on line at doi. org/10.1016/j.synbio.2021.09.001. Funding acquisition We thank the EPSRC for funding Stefanie Frank (EP/R013756/1) by way of the Future Vaccine Manufacturing Study Hub (Vax-Hub); the EPSRC DTP for funding Alexander Van De Steen (EP/R513143/1); Wellcome, BBSRC and EPSRC for monetary help for iGEM summer time bursaries along with the Faculty of Engineering and Department of Biochemical Engineering at UCL for basic iGEM project funding. We also thank iGEM sponsors: SnapGene, Twist Bioscience, Integrated DNA Technologies (IDT), New England Biolabs (NEB).
Academic Editors: Andrzej Lewinski and Renata Stawerska Received: 13 September 2021 Accepted: 12 October 2021 Published: 15 OctoberPublisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations.Copyright: 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions in the Creative Commons Attribution (CC BY) license ( creativecommons/licenses/by/ four.0/).In recent years, incidences of thyroid cancer happen to be rising worldwide [1]. Betwee.

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