Ross J, McIver Z, Lambert T, Piergentili T, Bird JT, Gallagher KJ, James P, Zarazúra-Arvizu E, Horsfall LE, Waldron KJ, Wilson MD, Mackay CL, Baslé A, Clarke DJ, Marles-Wright J (2022. január 28.). „Pore dynamics and asymmetric cargo loading in an encapsulin nanocompartment”. Sci Adv8 (4), eabj4461. o. DOI:10.1126/sciadv.abj4461. PMID35080974. PMC8791618.
(2014. szeptember 1.) „A virus capsid-like nanocompartment that stores iron and protects bacteria from oxidative stress.”. The EMBO Journal33 (17), 1896–911. o. DOI:10.15252/embj.201488566. PMID25024436. PMC4195785.
Kashif-Khan N, Savva R, Frank S (2024. március 7.). „Mining metagenomics data for novel bacterial nanocompartments”. NAR Genomics & Bioinformatics6 (1), lqae025. o. DOI:10.1093/nargab/lqae025. (Hozzáférés: 2024. március 11.)
Chmelyuk NS, Oda VV, Gabashvili AN, Abakumov MA (2023. február 17.). „Encapsulins: Structure, Properties, and Biotechnological Applications”. Biochemistry88 (1), 35–49. o. DOI:10.1134/S0006297923010042. PMID37068871. PMC9937530.
Giessen TW, Orlando BJ, Verdegaal AA, Chambers MG, Gardener J, Bell DC, Birrane G, Liao M, Silver PA (2019. július 8.). „Large protein organelles form a new iron sequestration system with high storage capacity”. eLife8, e46070. o. DOI:10.7554/eLife.46070. PMID31282860. PMC6668986.
Ross J, McIver Z, Lambert T, Piergentili T, Bird JT, Gallagher KJ, James P, Zarazúra-Arvizu E, Horsfall LE, Waldron KJ, Wilson MD, Mackay CL, Baslé A, Clarke DJ, Marles-Wright J (2022. január 28.). „Pore dynamics and asymmetric cargo loading in an encapsulin nanocompartment”. Sci Adv8 (4), eabj4461. o. DOI:10.1126/sciadv.abj4461. PMID35080974. PMC8791618.
(2014. szeptember 1.) „A virus capsid-like nanocompartment that stores iron and protects bacteria from oxidative stress.”. The EMBO Journal33 (17), 1896–911. o. DOI:10.15252/embj.201488566. PMID25024436. PMC4195785.
Chmelyuk NS, Oda VV, Gabashvili AN, Abakumov MA (2023. február 17.). „Encapsulins: Structure, Properties, and Biotechnological Applications”. Biochemistry88 (1), 35–49. o. DOI:10.1134/S0006297923010042. PMID37068871. PMC9937530.
Giessen TW, Orlando BJ, Verdegaal AA, Chambers MG, Gardener J, Bell DC, Birrane G, Liao M, Silver PA (2019. július 8.). „Large protein organelles form a new iron sequestration system with high storage capacity”. eLife8, e46070. o. DOI:10.7554/eLife.46070. PMID31282860. PMC6668986.
Ross J, McIver Z, Lambert T, Piergentili T, Bird JT, Gallagher KJ, James P, Zarazúra-Arvizu E, Horsfall LE, Waldron KJ, Wilson MD, Mackay CL, Baslé A, Clarke DJ, Marles-Wright J (2022. január 28.). „Pore dynamics and asymmetric cargo loading in an encapsulin nanocompartment”. Sci Adv8 (4), eabj4461. o. DOI:10.1126/sciadv.abj4461. PMID35080974. PMC8791618.
(2014. szeptember 1.) „A virus capsid-like nanocompartment that stores iron and protects bacteria from oxidative stress.”. The EMBO Journal33 (17), 1896–911. o. DOI:10.15252/embj.201488566. PMID25024436. PMC4195785.
Chmelyuk NS, Oda VV, Gabashvili AN, Abakumov MA (2023. február 17.). „Encapsulins: Structure, Properties, and Biotechnological Applications”. Biochemistry88 (1), 35–49. o. DOI:10.1134/S0006297923010042. PMID37068871. PMC9937530.
Giessen TW, Orlando BJ, Verdegaal AA, Chambers MG, Gardener J, Bell DC, Birrane G, Liao M, Silver PA (2019. július 8.). „Large protein organelles form a new iron sequestration system with high storage capacity”. eLife8, e46070. o. DOI:10.7554/eLife.46070. PMID31282860. PMC6668986.