Tanaka H, Kato K, Yamashita E, Sumizawa T, Zhou Y, Yao M, Iwasaki K, Yoshimura M, Tsukihara T (2009. január 1.). „The structure of rat liver vault at 3.5 angstrom resolution”. Science323 (5912), 384–388. o. DOI:10.1126/science.1164975. PMID19150846.
Llauró A, Guerra P, Kant R, Bothner B, Verdaguer N, de Pablo PJ (2016. október 14.). „Decrease in pH destabilizes individual vault nanocages by weakening the inter-protein lateral interaction”. Sci Rep6, 34143. o. DOI:10.1038/srep34143. PMID27739422. PMC5064368.
Kickhoefer VA, Stephen AG, Harrington L, Robinson MO, Rome LH (1999. november 1.). „Vaults and telomerase share a common subunit, TEP1”. The Journal of Biological Chemistry274 (46), 32712–32717. o. DOI:10.1074/jbc.274.46.32712. PMID10551828.
Kickhoefer VA, Siva AC, Kedersha NL, Inman EM, Ruland C, Streuli M, Rome LH (1999. szeptember 1.). „The 193-kD vault protein, VPARP, is a novel poly(ADP-ribose) polymerase”. The Journal of Cell Biology146 (5), 917–928. o. DOI:10.1083/jcb.146.5.917. PMID10477748. PMC2169495.
Yu Z, Fotouhi-Ardakani N, Wu L, Maoui M, Wang S, Banville D, Shen SH (2002. október 1.). „PTEN associates with the vault particles in HeLa cells”. The Journal of Biological Chemistry277 (43), 40247–40252. o. DOI:10.1074/jbc.M207608200. PMID12177006.
Zhou P, Meng X, Nie Z, Wang H, Wang K, Du A, Lei Y (2024. április 26.). „PTEN: an emerging target in rheumatoid arthritis?”. Cell Commun Signal22 (1), 246. o. DOI:10.1186/s12964-024-01618-6. PMID38671436. PMC11046879.
Tanaka, Hideaki (2012). „Structural studies of large nucleoprotein particles, vaults”. Proceedings of the Japan Academy, Series B88 (8), 416–433. o. DOI:10.2183/pjab.88.416. PMID23060231. PMC3491081.
Chugani DC, Rome LH, Kedersha NL (1993. szeptember 1.). „Evidence that vault ribonucleoprotein particles localize to the nuclear pore complex”. Journal of Cell Science106 (Pt 1), 23–29. o. DOI:10.1242/jcs.106.1.23. PMID8270627.
Berger W, Steiner E, Grusch M, Elbling L, Micksche M (2009. január 1.). „Vaults and the major vault protein: novel roles in signal pathway regulation and immunity”. Cellular and Molecular Life Sciences66 (1), 43–61. o. DOI:10.1007/s00018-008-8364-z. PMID18759128. PMC11131553.
Kickhoefer VA, Liu Y, Kong LB, Snow BE, Stewart PL, Harrington L, Rome LH (2001. január 1.). „The Telomerase/vault-associated protein TEP1 is required for vault RNA stability and its association with the vault particle”. The Journal of Cell Biology152 (1), 157–64. o. DOI:10.1083/jcb.152.1.157. PMID11149928. PMC2193651.
Kickhoefer VA, Vasu SK, Rome LH (1996. május 1.). „Vaults are the answer, what is the question?”. Trends in Cell Biology6 (5), 174–178. o. DOI:10.1016/0962-8924(96)10014-3. PMID15157468.
Rome LH, Kickhoefer VA (2013. február 1.). „Development of the vault particle as a platform technology”. ACS Nano7 (2), 889–902. o. DOI:10.1021/nn3052082. PMID23267674.
Mossink MH, van Zon A, Scheper RJ, Sonneveld P, Wiemer EA (2003. október 1.). „Vaults: a ribonucleoprotein particle involved in drug resistance?”. Oncogene22 (47), 7458–7467. o. DOI:10.1038/sj.onc.1206947. PMID14576851.
Rome L, Kedersha N, Chugani D (1991. augusztus 1.). „Unlocking vaults: organelles in search of a function”. Trends in Cell Biology1 (2–3), 47–50. o. DOI:10.1016/0962-8924(91)90088-Q. PMID14731565.
Daly, TK (2013). „In silico resurrection of the major vault protein suggests it is ancestral in modern eukaryotes”. Genome Biology and Evolution5 (8), 1567–1583. o. DOI:10.1093/gbe/evt113. PMID23887922. PMC3762200.
Mrazek J, Toso D, Ryazantsev S, Zhang X, Zhou ZH, Fernandez BC, Kickhoefer VA, Rome LH (2014. november 1.). „Polyribosomes are molecular 3D nanoprinters that orchestrate the assembly of vault particles”. ACS Nano8 (11), 11552–11559. o. DOI:10.1021/nn504778h. PMID25354757. PMC4245718.
Kar UK, Srivastava MK, Andersson A, Baratelli F, Huang M, Kickhoefer VA, Dubinett SM, Rome LH, Sharma S (2011. május 1.). „Novel CCL21-vault nanocapsule intratumoral delivery inhibits lung cancer growth”. PLOS ONE6 (5), e18758. o. DOI:10.1371/journal.pone.0018758. PMID21559281. PMC3086906.
Tanaka H, Kato K, Yamashita E, Sumizawa T, Zhou Y, Yao M, Iwasaki K, Yoshimura M, Tsukihara T (2009. január 1.). „The structure of rat liver vault at 3.5 angstrom resolution”. Science323 (5912), 384–388. o. DOI:10.1126/science.1164975. PMID19150846.
Llauró A, Guerra P, Kant R, Bothner B, Verdaguer N, de Pablo PJ (2016. október 14.). „Decrease in pH destabilizes individual vault nanocages by weakening the inter-protein lateral interaction”. Sci Rep6, 34143. o. DOI:10.1038/srep34143. PMID27739422. PMC5064368.
Kickhoefer VA, Stephen AG, Harrington L, Robinson MO, Rome LH (1999. november 1.). „Vaults and telomerase share a common subunit, TEP1”. The Journal of Biological Chemistry274 (46), 32712–32717. o. DOI:10.1074/jbc.274.46.32712. PMID10551828.
Kickhoefer VA, Siva AC, Kedersha NL, Inman EM, Ruland C, Streuli M, Rome LH (1999. szeptember 1.). „The 193-kD vault protein, VPARP, is a novel poly(ADP-ribose) polymerase”. The Journal of Cell Biology146 (5), 917–928. o. DOI:10.1083/jcb.146.5.917. PMID10477748. PMC2169495.
Yu Z, Fotouhi-Ardakani N, Wu L, Maoui M, Wang S, Banville D, Shen SH (2002. október 1.). „PTEN associates with the vault particles in HeLa cells”. The Journal of Biological Chemistry277 (43), 40247–40252. o. DOI:10.1074/jbc.M207608200. PMID12177006.
Zhou P, Meng X, Nie Z, Wang H, Wang K, Du A, Lei Y (2024. április 26.). „PTEN: an emerging target in rheumatoid arthritis?”. Cell Commun Signal22 (1), 246. o. DOI:10.1186/s12964-024-01618-6. PMID38671436. PMC11046879.
Tanaka, Hideaki (2012). „Structural studies of large nucleoprotein particles, vaults”. Proceedings of the Japan Academy, Series B88 (8), 416–433. o. DOI:10.2183/pjab.88.416. PMID23060231. PMC3491081.
Chugani DC, Rome LH, Kedersha NL (1993. szeptember 1.). „Evidence that vault ribonucleoprotein particles localize to the nuclear pore complex”. Journal of Cell Science106 (Pt 1), 23–29. o. DOI:10.1242/jcs.106.1.23. PMID8270627.
Berger W, Steiner E, Grusch M, Elbling L, Micksche M (2009. január 1.). „Vaults and the major vault protein: novel roles in signal pathway regulation and immunity”. Cellular and Molecular Life Sciences66 (1), 43–61. o. DOI:10.1007/s00018-008-8364-z. PMID18759128. PMC11131553.
Kickhoefer VA, Liu Y, Kong LB, Snow BE, Stewart PL, Harrington L, Rome LH (2001. január 1.). „The Telomerase/vault-associated protein TEP1 is required for vault RNA stability and its association with the vault particle”. The Journal of Cell Biology152 (1), 157–64. o. DOI:10.1083/jcb.152.1.157. PMID11149928. PMC2193651.
Mossink MH, van Zon A, Fränzel-Luiten E, Schoester M, Kickhoefer VA, Scheffer GL, Scheper RJ, Sonneveld P, Wiemer EA (2002. december 1.). „Disruption of the murine major vault protein (MVP/LRP) gene does not induce hypersensitivity to cytostatics”. Cancer Research62 (24), 7298–7304. o. PMID12499273.
Kickhoefer VA, Vasu SK, Rome LH (1996. május 1.). „Vaults are the answer, what is the question?”. Trends in Cell Biology6 (5), 174–178. o. DOI:10.1016/0962-8924(96)10014-3. PMID15157468.
Rome LH, Kickhoefer VA (2013. február 1.). „Development of the vault particle as a platform technology”. ACS Nano7 (2), 889–902. o. DOI:10.1021/nn3052082. PMID23267674.
Mossink MH, van Zon A, Scheper RJ, Sonneveld P, Wiemer EA (2003. október 1.). „Vaults: a ribonucleoprotein particle involved in drug resistance?”. Oncogene22 (47), 7458–7467. o. DOI:10.1038/sj.onc.1206947. PMID14576851.
Rome L, Kedersha N, Chugani D (1991. augusztus 1.). „Unlocking vaults: organelles in search of a function”. Trends in Cell Biology1 (2–3), 47–50. o. DOI:10.1016/0962-8924(91)90088-Q. PMID14731565.
Daly, TK (2013). „In silico resurrection of the major vault protein suggests it is ancestral in modern eukaryotes”. Genome Biology and Evolution5 (8), 1567–1583. o. DOI:10.1093/gbe/evt113. PMID23887922. PMC3762200.
Mrazek J, Toso D, Ryazantsev S, Zhang X, Zhou ZH, Fernandez BC, Kickhoefer VA, Rome LH (2014. november 1.). „Polyribosomes are molecular 3D nanoprinters that orchestrate the assembly of vault particles”. ACS Nano8 (11), 11552–11559. o. DOI:10.1021/nn504778h. PMID25354757. PMC4245718.
Sharma S, Zhu L, Srivastava MK, Harris-White M, Huang M, Lee JM, Rosen F, Lee G, Wang G, Kickhoefer V, Rome LH, Baratelli F, St John M, Reckamp K, Chul-Yang S, Hillinger S, Strieter R, Dubinett S (2013. január 1.). „CCL21 Chemokine Therapy for Lung Cancer”. International Trends in Immunity1 (1), 10–15. o. PMID25264541. PMC4175527.
Kar UK, Srivastava MK, Andersson A, Baratelli F, Huang M, Kickhoefer VA, Dubinett SM, Rome LH, Sharma S (2011. május 1.). „Novel CCL21-vault nanocapsule intratumoral delivery inhibits lung cancer growth”. PLOS ONE6 (5), e18758. o. DOI:10.1371/journal.pone.0018758. PMID21559281. PMC3086906.
Llauró A, Guerra P, Kant R, Bothner B, Verdaguer N, de Pablo PJ (2016. október 14.). „Decrease in pH destabilizes individual vault nanocages by weakening the inter-protein lateral interaction”. Sci Rep6, 34143. o. DOI:10.1038/srep34143. PMID27739422. PMC5064368.
Kickhoefer VA, Siva AC, Kedersha NL, Inman EM, Ruland C, Streuli M, Rome LH (1999. szeptember 1.). „The 193-kD vault protein, VPARP, is a novel poly(ADP-ribose) polymerase”. The Journal of Cell Biology146 (5), 917–928. o. DOI:10.1083/jcb.146.5.917. PMID10477748. PMC2169495.
Zhou P, Meng X, Nie Z, Wang H, Wang K, Du A, Lei Y (2024. április 26.). „PTEN: an emerging target in rheumatoid arthritis?”. Cell Commun Signal22 (1), 246. o. DOI:10.1186/s12964-024-01618-6. PMID38671436. PMC11046879.
Tanaka, Hideaki (2012). „Structural studies of large nucleoprotein particles, vaults”. Proceedings of the Japan Academy, Series B88 (8), 416–433. o. DOI:10.2183/pjab.88.416. PMID23060231. PMC3491081.
Berger W, Steiner E, Grusch M, Elbling L, Micksche M (2009. január 1.). „Vaults and the major vault protein: novel roles in signal pathway regulation and immunity”. Cellular and Molecular Life Sciences66 (1), 43–61. o. DOI:10.1007/s00018-008-8364-z. PMID18759128. PMC11131553.
Kickhoefer VA, Liu Y, Kong LB, Snow BE, Stewart PL, Harrington L, Rome LH (2001. január 1.). „The Telomerase/vault-associated protein TEP1 is required for vault RNA stability and its association with the vault particle”. The Journal of Cell Biology152 (1), 157–64. o. DOI:10.1083/jcb.152.1.157. PMID11149928. PMC2193651.
Daly, TK (2013). „In silico resurrection of the major vault protein suggests it is ancestral in modern eukaryotes”. Genome Biology and Evolution5 (8), 1567–1583. o. DOI:10.1093/gbe/evt113. PMID23887922. PMC3762200.
Mrazek J, Toso D, Ryazantsev S, Zhang X, Zhou ZH, Fernandez BC, Kickhoefer VA, Rome LH (2014. november 1.). „Polyribosomes are molecular 3D nanoprinters that orchestrate the assembly of vault particles”. ACS Nano8 (11), 11552–11559. o. DOI:10.1021/nn504778h. PMID25354757. PMC4245718.
Sharma S, Zhu L, Srivastava MK, Harris-White M, Huang M, Lee JM, Rosen F, Lee G, Wang G, Kickhoefer V, Rome LH, Baratelli F, St John M, Reckamp K, Chul-Yang S, Hillinger S, Strieter R, Dubinett S (2013. január 1.). „CCL21 Chemokine Therapy for Lung Cancer”. International Trends in Immunity1 (1), 10–15. o. PMID25264541. PMC4175527.
Kar UK, Srivastava MK, Andersson A, Baratelli F, Huang M, Kickhoefer VA, Dubinett SM, Rome LH, Sharma S (2011. május 1.). „Novel CCL21-vault nanocapsule intratumoral delivery inhibits lung cancer growth”. PLOS ONE6 (5), e18758. o. DOI:10.1371/journal.pone.0018758. PMID21559281. PMC3086906.