The role of atypical ubiquitination in cell regulation
Tóm tắt
Ubiquitination is a type of intracellular proteins post-translational modification (PTM) characterized by covalent attachment of ubiquitin molecules to target proteins. This includes monoubiquitination (attachment of one ubiquitin molecule), multiple monoubiquitination also known as multiubiquitination (attachment of several monomeric ubiquitin molecules to a target protein), and polyubiquitination (attachment of ubiquitin chains consisting of several, most frequently four ubiquitin monomers to a target protein). In the case of polyubiquitination, linear or branched polyubiquitin chains are formed. Their formation involves various lysine residues of monomeric ubiquitin. The best studied is Lys48-linked polyubiquitination, which targets proteins for proteasomal degradation. In this review we have considered examples of so-called atypical polyubiquitination, which mainly involves other lysine residues (Lys6, Lys11, Lys27, Lys29, Lys33, Lys63) and also N-terminal methionine. The considered examples convincingly demonstrate that polyubiquitination of proteins (not necessarily) targets proteins for their proteolytic degradation in proteasomes. Atypically polyubiquitinated proteins are involved in regulation of various processes including immune response, genome stability, signal transduction, etc. Alterations of ubiquitination machinery is crucial for development of serious diseases.
Tài liệu tham khảo
Hershko, A. and Ciechanover, A., Annu. Rev. Biochem., 1998, vol. 67, pp. 425–479.
Kulathu, Y. and Komander, D., Nat. Rev., Mol. Cell. Biol., 2012, vol. 13, pp. 508–523.
Tomko, R.J., Jr. and Hochstrasser, M., Annu. Rev. Biochem., 2013, vol. 82, pp. 1–34.
Patton, E.E., Willems, A.R., and Tyers, M., Trends Genet., 1998, vol. 14, no. 6, pp. 236–243.
Hochstrasser, M., Cell, 1996, vol. 84, no. 6, pp. 813–815.
Finley, D., Sadis, S., Monia, B.P., Boucher, P., Ecker, D.J., Crooke, S.T., and Chau, V., Mol. Cell Biol., 1994, vol. 14, no. 8, pp. 5501–5509.
Tenno, T., Fujiwara, K., Tochio, H., Iwai, K., Morita, E.H., Hayashi, H., Murata, S., Hiroaki, H., Sato, M., Tanaka, K., and Shirakawa, M., Genes Cells, 2004, vol. 9, no. 10, pp. 865–875.
Vertegaal, A.C.O., Chem. Rev., 2011, vol. 111, pp. 7923–7940.
Sadowski, M., Suryadinata, R., Tan, A.R., Roesley, S.N.A., and Sarcevic, B., IUBMB Life, 2012, vol. 64, no. 2, pp. 136–142.
Bremm, A. and Komander, D., Trends in Biochem. Sci., 2011, vol. 36, no. 7, pp. 355–363.
Benskey, M., Lee, K.Y., Parikh, K., Lookingland, K.J., and Goudreau, J.L., NeuroToxicology, 2013, vol. 37, pp. 144–153.
Aguilar, R.C. and Wendland, B., Current Opinion in Cell Biol., 2003, vol. 15, pp. 184–190.
Kravtsova-Ivantsiv, Y. and Ciechanover, A., J. Cell. Science, 2012, vol. 125, pp. 539–548.
Birsa, N., Norkett, R., Wauer, T., Mevissen, T.E.T., Wu, H.-C., Foltynie, T., Bhatia, K., Hirst, W.D., Komander, D., Plun-Favreau, H., and Kittler, J.T., J. Biol. Chem., 2014, vol. 289, no. 21, pp. 14569–14582.
Huang, H., Wang, H., and Figueiredo-Pereira, M.E., Cell. Biochem. Biophys., 2013, vol. 67, no. 1, pp. 55–66.
Rego, M.A., Kolling, F.W., IV, Vuono, E.A., Mauro, M., and Howlett, N.G., Blood, 2012, vol. 120, no. 10, pp. 2109–2117.
Rott, R., Szargel, R., Haskin, J., Shani, V., Shainskaya, A., Manov, I., Liani, E., Avraham, E., and Engelender, S., J. Biol. Chem., 2008, vol. 283, no. 6, pp. 3316–3328.
Ott, D.E., Coren, L.V., Copeland, T.D., Kane, B.P., Johnson, D.G., Sowder, R.C., II, Yoshinaka, Y., Oroszlan, S., Arthur, L.O., and Hendrson, L., J. Virol., 1998, vol. 72, no. 4, pp. 2962–2968.
Ulrich, H.D. and Walden, H., Nat. Rev. Mol. Cell. Biol., 2010, vol. 11, pp. 479–489.
Raedler, L., Am. Health Drug Benefits, 2015, vol. 8, pp. 135–140.
Ikeda, F. and Dikis, I., EMBO Reports, 2008, vol. 9, no. 6, pp. 536–542.
Peng, J., Schwartz, D., Elias, J.E., Thoreen, C.C., Cheng, D., Marsischky, G., Roelofs, J., Finley, D., and Gygi, S.P., Nat. Biotechnol., 2003, vol. 21, pp. 921–926.
Kirkpatrick, D.S., Denison, C., and Gygi, S.P., Nat. Cell. Biol., 2005, vol. 7, pp. 750–757.
Varadan, R., Walker, O., Pickart, C., and Fushman, D., J. Mol. Biol., 2002, vol. 324, pp. 637–647.
Varadan, R., Assfalg, M., Haririnia, A., Raasi, S., Pickart, C., and Fushman, D., J. Biol. Chem., 2004, vol. 279, pp. 7055–7060.
Datta, A.B., Hura, G.L., and Wolberger, C., J. Mol. Biol., 2009, vol. 392, pp. 1117–1124.
Raasi, S., Varadan, R., Fushman, D., and Pickart, C.M., Nat. Struct. Mol. Biol., 2005, vol. 12, pp. 708–714.
Di Fiore, P.P., Polo, S., and Hoffman, K., Nat. Rev. Mol. Cell. Biol., 2003, vol. 4, pp. 491–497.
Lill, J.R. and Wertz, I.E., Trends Pharmacol. Sci., 2014, vol. 35, pp. 187–207.
Huibregtse, J.M., Scheffner, M., Beaudenon, S., and Howley, P.M., Proc. Natl. Acad. Sci. USA, 1995, vol. 92, pp. 2563–2567.
Joazeiro, C.A.P. and Weissman, A.M., Cell, 2000, vol. 102, pp. 549–552.
Hicke, L. and Dunn, R., Annu. Rev. Cell. Dev. Biol., 2003, vol. 19, pp. 141–172.
Hatakeyama, S., Yada, M., Matsumoto, M., Ishida, N., and Nakayama, K.I., J. Biol. Chem., 2001, vol. 276, pp. 33111–33120.
Coscoy, L., Sanchez, D.J., and Ganem, D., J. Cell. Biol., 2001, vol. 155, pp. 1265–1274.
Eisenhaber, B., Chumak, N., Eisenhaber, F., and Hauser, M.T., Genome Biol., 2007, vol. 8, p.209.
Buneeva, O.A. and Medvedev, A.E., Biochemistry (Moscow), 2006, vol. 71, no. 8, pp. 1050–1061.
Buneeva, O.A. and Medvedev, A.E., Biomed. Khim., 2011, vol. 57, pp. 246–281.
Grossman, S.R., Deato, M.E., Brignone, C., Chan, H.M., Kung, A.L., Tagami, H., Nakatani, Y., David, M., and Livingston, D.M., Science, 2003, vol. 300, no. 5617, pp. 342–344.
Koegl, M., Hoppe, T., Schlenker, S., Ulrich, H.D., Mayer, T.U., and Jentsch, S., Cell, 1999, vol. 96, pp. 635–644.
Kuhlbrodt, K., Mouysset, J., and Hoppe, T., Essays in Biochemistry, 2005, vol. 41, pp. 1–14.
Kim, H.T., Kim, K.P., Lledias, F., Kisselev, A.F., Scaglione, K.M., Skowyra, D., Gygi, S.P., and Goldberg, A.L., J. Biol. Chem., 2007, vol. 282, no. 24, pp. 17375–17386.
Chung, C.H. and Baek, S.H., Biochem. Biophys. Res. Communs, 1999, vol. 266, pp. 633–640.
Amerik, A.Y. and Hochstrasser, M., Biochim. Biophys. Acta, 2004, vol. 1695, pp. 189–207.
Wang, Y., Serricchio, M., Jauregui, M., Shanbhag, R., Stoltz, T., Di Paolo, C.T., Kim, P.K., and McQuibban, G.A., Autophagy, 2015, vol. 11, no. 4, pp. 595–606.
Sowa, M.E., Bennett, E.J., Gygi, S.P., and Harper, J.W., Cell, 2009, vol. 138, pp. 389–403.
Nijman, S.M.B., Luna-Vargas, M.P.A., Velds, A., Brummelkamp, T.R., Dirac, A.M.G., Sixma, T.K., and Bernards, R., Cell, 2005, vol. 123, pp. 773–786.
Bhattacharya, S. and Ghosh, M.K., BioMed Res. Intern., 2014, vol. 2014, ID 435197.
Pal, A., Young, M.A., and Donato, N.J., Cancer Res., 2014, vol. 74, pp. 4955–4966.
Kerscher, O., Felberbaum, R., and Hochstrasser, M., Annu. Rev. Cell Dev. Biol., 2006, vol. 22, pp. 159–180.
Busch, H. and Goldknopf, I.L., Mol. Cell. Biochem., 1981, vol. 40, pp. 173–187.
Spencer, V.A. and Davie, J.R., Gene, 1999, vol. 240, pp. 1–12.
Hicke, L., Nat. Rev., Mol. Cell. Biol., 2001, vol. 2, pp. 195–201.
Robzyk, K., Recht, J., and Osley, M.A., Science, 2000, vol. 287, pp. 501–504.
Jentsch, S., McGrath, J.P., and Varshavsky, A., Nature, 1987, vol. 329, pp. 131–134.
Roest, H.P., van Klaveren, J., de Wit, J., van Gurp, C.G., Koken, M.H., Vermey, M., van Roijen, J.H., Hoogerbrugge, J.W., Vreeburg, J.T., Baarends, W.M., Bootsma, D., Grootegoed, J.A., and Hoeijmakers, J.H., Cell, 1996, vol. 86, no. 5, pp. 799–810.
Karpiuk, O., Najafova, Z., Kramer, F., Hennion, M., Galonska, C., König, A., Snaidero, N., Vogel, T., Shchebet, A., Begus-Nahrmann, Y., Kassem, M., Simons, M., Shcherbata, H., Beissbarth, T., and Johnsen, S.A., Mol. Cell, 2012, vol. 46, no. 5, pp. 705–713.
Trujillo, K.M. and Osley, M.A., Mol. Cell, 2012, vol. 48, no. 5, pp. 734–746.
Sadeghi, L., Siggens, L., Svensson, J.P., and Ekwall, K., Nat. Struct. Mol. Biol., 2014, vol. 21, no. 3, pp. 236–243.
Minsky, N., Shema, E., Field, Y., Schuster, M., Segal, E., and Oren, M., Nat. Cell. Biol., 2008, vol. 10, no. 4, pp. 483–488.
Fierz, B., Chatterjee, C., McGinty, R.K., Bar-Dagan, M., Raleigh, D.P., and Muir, T.W., Nat. Chem. Biol., 2011, vol. 7, no. 2, pp. 113–119.
Shema-Yaacoby, E., Nikolov, M., Haj-Yahya, M., Siman, P., Allemand, E., Yamaguchi, Y., Muchardt, C., Urlaub, H., Brik, A., Oren, M., and Fischle, W., Cell. Rep., 2013, vol. 4, no. 3, pp. 601–608.
Pirngruber, J., Shchebet, A., Schreiber, L., Shema, E., Minsky, N., Chapman, R.D., Eick, D., Aylon, Y., Oren, M., and Johnsen, S.A., EMBO Rep., 2009, vol. 10, no. 8, pp. 894–900.
Johnsen, S.A., FEBS Lett., 2012, vol. 586, no. 11, pp. 1592–1601.
Kari, V., Shchebet, A., Neumann, H., and Johnsen, S.A., Cell Cycle, 2011, vol. 10, no. 20, pp. 3495–3504.
Moyal, L., Lerenthal, Y., Gana-Weisz, M., Mass, G., So, S., Wang, S.Y., Eppink, B., Chung, Y.M., Shalev, G., Shema, E., Shkedy, D., Smorodinsky, N.I., van Vliet, N., Kuster, B., Mann, M., Ciechanover, A., Dahm-Daphi, J., Kanaar, R., Hu, M.C., Chen, D.J., Oren, M., and Shiloh, Y., Mol. Cell, 2011, vol. 41, no. 5, pp. 529–542.
Espinosa, J.M., Genes Dev., 2008, vol. 22, no. 20, pp. 2743–2749.
Prenzel, T., Begus-Nahrmann, Y., Kramer, F., Hennion, M., Hsu, C., Gorsler, T., Hintermair, C., Eick, D., Kremmer, E., Simons, M., Beissbarth, T., and Johnsen, S.A., Cancer Res., 2011, vol. 71, no. 17, pp. 5739–5753.
Urasaki, Y., Heath, L., and Xu, C.W., PLoS One, 2012, vol. 7, no. 5, e36775.
Hahn, M.A., Dickson, K.A., Jackson, S., Clarkson, A., Gill, A.J., and Marsh, D.J., Hum. Mol. Genet., 2012, vol. 21, no. 3, pp. 559–568.
Cole, A.J., Clifton-Bligh, R., and Marsh, D.J., Endocr.-Relat. Cancer, 2015, vol. 22, pp. T19–T33.
Gregory, R.C., Taniguchi, T., and D’Andrea, A., Semin. Cancer Biol., 2003, vol. 13, no. 1, pp. 77–82.
Castella, M., Jacquemont, C., Thompson, E.L., Yeo, J.E., Cheung, R.S., Huang, J.W., Sobeck, A., Hendrickson, E.A., and Taniguchi, T., PLoS Genet., 2015, vol. 11, no. 10, e1005563.
Haglund, K., Sigismund, S., Polo, S., Szymkiewicz, I., Di Fiore, P.P., and Dikic, I., Nat. Cell. Biol., 2003, vol. 5, pp. 461–466.
Levkowitz, G., Waterman, H., Zamir, E., Kam, Z., Oved, S., Langdon, W.Y., Beguinot, L., Geiger, B., and Yarden, Y., Genes Dev., 1998, vol. 12, no. 23, pp. 3663–3674.
Roth, A.F. and Davis, N.G., J. Biol. Chem., 2000, vol. 275, pp. 8143–8153.
Shih, S.C., Sloper-Mould, K.E., and Hicke, L., EMBO J., 2000, vol. 19, pp. 187–198.
Hicke, L. and Riezman, H., Cell, 1996, vol. 84, pp. 277–287.
Kolling, R. and Hollenberg, C.P., EMBO J., 1994, vol. 13, pp. 3261–3271.
Acconciaa, F., Sigismunda, S., and Polo, S., Experim. Cell. Res., 2009, vol. 315, pp. 1610–1618.
Bache, K.G., Slagsvold, T., and Stenmark, H., EMBO J., 2004, vol. 23, pp. 2707–2712.
Strack, B., Calistri, A., Accola, M.A., Palú, G., and Göttlinger, H.G., Proc. Natl. Acad. Sci. USA, 2000, vol. 97, pp. 13063–13068.
Craven, R.C., Harty, R.N., Paragas, J., Palese, P., and Wills, J.W., J. Virol., 1999, vol. 73, pp. 3359–3365.
Jayakar, H.R., Murti, K.G., and Whitt, M.A., J. Virol., 2000, vol. 74, pp. 9818–9827.
Harty, R.N., Brown, M.E., Wang, G., Huibregtse, J., and Hayes, F.P.A., Proc. Natl. Acad. Sci. USA, 2000, vol. 97, pp. 13871–13876.
Morita, E. and Sundquist, W.I., Annu. Rev. Cell. Dev. Biol., 2004, vol. 20, pp. 395–425.
Kaiser, P., Flick, K., Wittenberg, C., and Reed, S.I., Cell, 2000, vol. 102, pp. 303–314.
Kuras, L., Rouillon, A., Lee, T., Barbey, R., Tyers, M., and Thomas, D., Mol. Cell, 2002, vol. 10, pp. 69–80.
Flick, K., Raasi, S., Zhang, H., Yen, J.L., and Kaiser, P., Nat. Cell. Biol., 2006, vol. 8, pp. 509–515.
Ye, Y., J. Struct. Biol., 2006, vol. 156, pp. 29–40.
Jentsch, S. and Rumpf, S., Trends Biochem. Sci., 2007, vol. 32, pp. 6–11.
Bays, N.W., Wilhovsky, S.K., Goradia, A., Hodgkiss-Harlow, K., and Hampton, R.Y., Mol. Biol. Cell., 2001, vol. 12, pp. 4114–4128.
Ye, Y., Meyer, H.H., and Rapoport, T.A., Nature, 2001, vol. 414, pp. 652–656.
Jarosch, E., Taxis, C., Volkwein, C., Bordallo, J., Finley, D., Wolf, D.H., and Sommer, T., Nat. Cell. Biol., 2002, vol. 4, pp. 134–139.
Braun, S., Matuschewski, K., Rape, M., Thoms, S., and Jentsch, S., EMBO J., 2002, vol. 21, pp. 615–621.
Rabinovich, E., Kerem, A., Frohlich, K.U., Diamant, N., and Bar-Nun, S., Mol. Cell. Biol., 2002, vol. 22, pp. 626–634.
Ye, Y., Meyer, H.H., and Rapoport, T.A., J. Cell. Biol., 2003, vol. 162, pp. 71–84.
Rape, M., Hoppe, T., Gorr, I., Kalocay, M., Richly, H., and Jentsch, S., Cell, 2001, vol. 107, pp. 667–677.
Ramadan, K., Bruderer, R., Spiga, F.M., Popp, O., Baur, T., Gotta, M., and Meyer, H.H., Nature, 2007, vol. 450, pp. 1258–1262.
Babu, J.R., Geetha, T., and Wooten, M.W., J. Neurochem., 2005, vol. 94, pp. 192–203.
Wooten, M.W., Geetha, T., Seibenhener, M.L., Babu, J.R., Diaz-Meco, M.T., and Moscat, J., J. Biol. Chem., 2005, vol. 280, pp. 35625–35629.
Seibenhener, M.L., Babu, J.R., Geetha, T., Wong, H.C., Krishna, N.R., and Wooten, M.W., Mol. Cell. Biol., 2004, vol. 24, pp. 8055–8068.
Li, W. and Ye, Y., Cell Mol. Life Sci., 2008, vol. 65, no. 15, pp. 2397–2406.
Lim, K.L., Chew, K.C., Tan, J.M., Wang, C., Chung, K.K., Zhang, Y., Tanaka, Y., Smith, W., Engelender, S., Ross, C.A., Dawson, V.L., and Dawson T.M., J. Neurosci., 2005, vol. 25, pp. 2002–2009.
Lim, G.G.Y., Chew, K.C.M., Ng, X.-H., Henry-Basil, A., Sim, R.W.X., Tan, J.M.M., Chai, C., and Lim, K.-L., PLoS One, 2013, vol. 8, no. 9, pp. 1–15, e73235.
Bennett, E.J., Shaler, T.A., Woodman, B., Ryu, K.Y., Zaitseva, T.S., Becker, C.H., Bates, G.P., Schulman, H., and Kopito, R.R., Nature, 2007, vol. 448, pp. 704–708.
Tan, J.M.M., Wong, E.S.P., Kirkpatrick, D.S., Pletnikova, O., Ko, H.S., Tay, S.-P., Ho, M.W.L., Troncoso, J., Gygi, S.P., Lee, M.K., Dawson, V.L., Dawson, T.M., and Lim, K.-L., Hum. Mol. Genet., 2008, vol. 17, no. 3, pp. 431–439.
Imai, Y., Soda, M., Inoue, H., Hattori, N., Mizuno, Y., and Takahashi, R., Cell, 2001, vol. 105, pp. 891–902.
Shimura, H., Hattori, N., Kubo, S., Mizuno, Y., Asakawa, S., Minoshima, S., Shimizu, N., Iwai, K., Chiba, T., Tanaka, K., and Suzuki, T., Nat. Genet., 2000, vol. 25, pp. 302–305.
Zhang, Y., Gao, J., Chung, K.K., Huang, H., Dawson, V.L., and Dawson, T.M., Proc. Natl. Acad. Sci. USA, 2000, vol. 97, pp. 13354–13359.
Olzmann, J.A., Li, L., Chudaev, M.V., Chen, J., Perez, F.A., Palmiter, R.D., and Chin, L.S., J. Cell Biol., 2007, vol. 178, pp. 1025–1038.
Doss-Pepe, E.W., Chen, L., and Madura, K., J. Biol. Chem., 2005, vol. 280, pp. 16619–16624.
Komatsu, M., Waguri, S., Chiba, T., Murata, S., Iwata, J.I., Tanida, I., Ueno, T., Koike, M., Uchiyama, Y., Kominami, E., and Tanaka, K., Nature, 2006, vol. 441, pp. 880–884.
Hara, T., Nakamura, K., Matsui, M., Yamamoto, A., Nakahara, Y., Suzuki-Migishima, R., Yokoyama, M., Mishima, K., Saito, I., Okano, H., and Mizushima, N., Nature, 2006, vol. 441, pp. 885–889.
Tan, J.M.M., Wong, E.S.P., Dawson, V.L., Dawson, T.M., and Lim, K.-L., Autophagy, 2008, vol. 4, no. 2, pp. 251–253.
Grabbe, C., Husnjak, K., and Dikic, I., Nat. Rev. Mol. Cell Biol., 2011, vol. 12, pp. 295–307.
Skaug, B., Jiang, X., and Chen, Z., Annu. Rev. Biochem., 2009, vol. 78, pp. 769–796.
Haas, T.L., Emmerich, C.H., Gerlach, B., Schmukle, A.C., Cordier, S.M., Rieser, E., Feltham, R., Vince, J., Warnken, U., Wenger, T., Koschny, R., Komander, D., Silke, J., and Walczak, H., Mol. Cell, 2009, vol. 36, no. 5, pp. 831–844.
Rahighi, S., Ikeda, F., Kawasaki, M., Akutsu, M., Suzuki, N., Kato, R., Kensche, T., Uejima, T., Bloor, S., Komander, D., Randow, F., Wakatsuki, S., and Dikic, I., Cell, 2009, vol. 136, no. 6, pp. 1098–1109.
Tokunaga, F., Sakata, S., Saeki, Y., Satomi, Y., Kirisako, T., Kamei, K., Nakagawa, T., Kato, M., Murata, S., Yamaoka, S., Yamamoto, M., Akira, S., Takao, T., Tanaka, K., and Iwai, K., Nat. Cell. Biol., 2009, vol. 11, no. 2, pp. 123–132.
Ikeda, F., Deribe, Y.L., Skånland, S.S., Stieglitz, B., Grabbe, C., Franz-Wachtel, M., van Wijk, S.J., Goswami, P., Nagy, V., Terzic, J., Tokunaga, F., Androulidaki, A., Nakagawa, T., Pasparakis, M., Iwai, K., Sundberg, J.P., Schaefer, L., Rittinger, K., Macek, B., and Dikic, I., Nature, 2011, vol. 471, no. 7340, pp. 637–641.
Gerlach, B, Cordier, S.M., Schmukle, A.C., Emmerich, C.H., Rieser, E., Haas, T.L., Webb, A.I., Rickard, J.A., Anderton, H., Wong, W.W., Nachbur, U., Gangoda, L., Warnken, U., Purcell, A.W., Silke, J., and Walczak, H., Nature, 2011, vol. 471, no. 7340, pp. 591–596.
Tokunaga, F., Nakagawa, T., Nakahara, M., Saeki, Y., Taniguchi, M., Sakata, S., Tanaka, K., Nakano, H., and Iwai, K., Nature, 2011, vol. 471, no. 7340, pp. 633–636.
Dynek, J.N., Goncharov, T., Dueber, E.C., Fedorova, A.V., Izrael-Tomasevic, A., Phu, L., Helgason, E., Fairbrother, W.J., Deshayes, K., Kirkpatrick, D.S., and Vucic, D., EMBO J., 2010, vol. 29, no. 24, pp. 4198–4209.
Sebban, H., Yamaoka, S., and Courtois, G., Trends Cell. Biol., 2006, vol. 16, pp. 569–577.
Chen, Z.J. and Sun, L.J., Mol. Cell, 2009, vol. 33, pp. 275–286.
Bennett, E.J. and Harper, J.W., Nat. Struct. Mol. Biol., 2008, vol. 15, pp. 20–22.
Baboshina, O.V. and Haas, A.L., J. Biol. Chem., 1996, vol. 271, pp. 2823–2831.
Wickliffe, K.E., Lorenz, S., Wemmer, D.E., Kuriyan, J., and Rape, M., Cell, 2011, vol. 144, no. 5, pp. 769–781.
Matsumoto, M.L., Wickliffe, K.E., Dong, K.C., Yu, C., Bosanac, I., Bustos, D., Phu, L., Kirkpatrick, D.S., Hymowitz, S.G., Rape, M., Kelley, R.F., and Dixit, V.M., Mol. Cell, 2010, vol. 39, pp. 477–484.
Williamson, A., Wickliffe, K.E., Mellone, B.G., Song, L., Karpen, G.H., and Rape, M., Proc. Natl. Acad. Sci. USA, 2009, vol. 106, pp. 18213–18218.
Jin, L., Williamson, A., Banerjee, S., Philipp, I., and Rape, M., Cell, 2008, vol. 133, pp. 653–665.
Wu, T., Merbl, Y., Huo, Y., Gallop, J.L., Tzur, A., and Kirschner, M.W., Proc. Natl. Acad. Sci. USA, 2010, vol. 107, pp. 1355–1360.
Song, L. and Rape, M., Mol. Cell, 2010, vol. 38, pp. 369–382.
King, R.W., Peters, J.M., Tugendreich, S., Rolfe, M., Hieter, P., and Kirschner, M.W., Cell, 1995, vol. 81, pp. 279–288.
Summers, M.K., Pan, B., Mukhyala, K., and Jackson, P.K., Mol. Cell, 2008, vol. 31, pp. 544–556.
Hay-Koren, A., Caspi, M., Zilberberg, A., and Rosin-Arbesfeld, R., Mol. Biol. Cell, 2011, vol. 22, pp. 399–411.
Goto, E., Yamanaka, Y., Ishikawa, A., Aoki-Kawasumi, M., Mito-Yoshida, M., Ohmura-Hoshino, M., Matsuki, Y., Kajikawa, M., Hirano, H., and Ishido, S., J. Biol. Chem., 2010, vol. 285, pp. 35311–35319.
Xu, P., Duong, D.M., Seyfried, N.T., Cheng, D., Xie, Y., Robert, J., Rush, J., Hochstrasser, M., Finley, D., and Peng, J., Cell, 2009, vol. 137, pp. 133–145.
Alexandru, G., Graumann, J., Smith, G.T., Kolawa, N.J., Fang, R., and Deshaies, R.J., Cell, 2008, vol. 134, pp. 804–816.
Shang, F., Deng, G., Liu, Q., Guo, W., Haas, A.L., Crosas, B., Finley, D., and Taylor, A., J. Biol. Chem., 2005, vol. 280, no. 21, pp. 20365–20374.
Cripps, D., Thomas, S.N., Jeng, Y., Yang, F., Davies, P., and Yang, A.J., J. Biol. Chem., 2006, vol. 281, no. 16, pp. 10825–10838.
Hospenthal, M.K., Freund, S.M.V., and Komander, D., Nat. Struct. Mol. Biol., 2013, vol. 20, no. 5, pp. 555–565.
Nishikawa, H., Ooka, S., Sato, K., Arima, K., Okamoto, J., Klevit, R.E., Fukuda, M., and Ohta, T., J. Biol. Chem., 2004, vol. 279, no. 6, pp. 3916–3924.
Morris, J.R. and Solomon, E., Hum. Mol. Genet., 2004, vol. 13, no. 8, pp. 807–817.
Ben-Saadon, R., Zaaroor, D., Ziv, T., and Ciechanover, A., Mol. Cell, 2006, vol. 24, pp. 701–711.
Ikeda, H. and Kerppola, T.K., Mol. Biol. Cell, 2008, vol. 19, pp. 4588–4601.
Zucchelli, S., Codrich, M., Marcuzzi, F., Pinto, M., Vilotti, S., Biagioli, M., Ferrer, I., and Gustincich, S., Hum. Mol. Genet., 2010, vol. 19, no. 19, pp. 3759–3770.
Geisler, S., Holmström, K.M., Skujat, D., Fiesel, F.C., Rothfuss, O.C., Kahle, P.J., and Springer, W., Nat. Cell. Biol., 2010, vol. 12, no. 2, pp. 119–145.
Peng, D.-J., Zeng, M., Muromoto, R., Matsuda, T., Shimoda, K., Subramaniam, M., Spelsberg, T.C., Wei, W.-Z., and Venuprasad, K., J. Immunol., 2011, vol. 186, no. 10, pp. 5638–5647.
Xu, K., Shimelis, H., Linn, D.E., Jiang, R., Yang, X., Sun, F., Guo, Z., Chen, H., Li, W., Chen, H., Kong, X., Melamed, J., Fang, S., Xiao, Z., Veenstra, T.D., and Qiu, Y., Cancer Cell, 2009, vol. 15, no. 4, pp. 270–282.
Mastrandrea, L.D., You, J., Niles, E.G., and Pickart, C.M., J. Biol. Chem., 1999, vol. 274, no. 38, pp. 27299–27306.
Jiang, J., Ballinger, C.A., Wu, Y., Dai, Q., Cyr, D.M., Höhfeld, J., and Patterson, C., J. Biol. Chem., 2001, vol. 276, no. 46, pp. 42938–42944.
Chastagner, P., Israël, A., and Brou, C., PLoS One, 2008, vol. 3, no. 7, e2735.
Fei, C., Li, Z., Li, C., Chen, Y., Chen, Z., He, X., Mao, L., Wang, X., Zeng, R., and Li, L., Mol. Cell. Biol., 2013, vol. 33, no. 20, pp. 4095–4105.
Kristariyanto, Y.A., Choi, S.-Y., Rehman, S.A.A., Ritorto, M.S., Campbell, D.G., Morrice, N.A., Toth, R., and Kulathu, Y., Biochem. J., 2015, vol. 467, pp. 345–352.
Huang, H., Jeon, M.-S., Liao, L., Yang, C., Elly, C., Yates, J.R., and Liu, Y.-C., Immunity, 2010, vol. 33, pp. 60–70.
Yuan, W.-C., Lee, Y.-R., Lin, S.-Y., Chang, L.-Y., Tan, Y.P., Hung, C.-C., Kuo, J.-C., Liu, C.-H., Lin, M.-Y., Xu, M., Chen, Z.J., and Chen, R.H., Mol. Cell, 2014, vol. 54, pp. 586–600.
Al-Hakim, A.K., Zagorska, A., Chapman, L., Deak, M., Peggie, M., and Alessi, D.R., Biochem. J., 2008, vol. 411, pp. 249–260.
Walczak, H., Iwai, K., and Dikic, I., BMC Biol., 2012, vol. 10, p. 23. http://www.biomedcentral.com/1741-7007/10/23
Iwai, K., Cell Cycle, 2011, vol. 10, no. 18, pp. 3095–3104.
