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^ Howman, E.V.; Fowler, K.J.; Newson, A.J.; Redward, S.; MacDonald, A.C.; Kalitsis, P.; Choo, K.H.A. (2000), ⇒“Early disruption of centromeric chromatin organization in centromere protein A (Cenpa) null mice”, Proceedings of the National Academy of Sciences 97 (3): 1148?1153, doi:10.1073/pnas.97.3.1148, PMC 15551, PMID 10655499, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=15551 
^ Oegema, K.; Desai, A.; Rybina, S.; Kirkham, M.; Hyman, A.A. (2001), ⇒“Functional Analysis of Kinetochore Assembly in Caenorhabditis elegans”, The Journal of Cell Biology 153 (6): 1209?1226, doi:10.1083/jcb.153.6.1209, PMC 2192036, PMID 11402065, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2192036 
^ Van Hooser, A.A.; Ouspenski, I.I.; Gregson, H.C.; Starr, D.A.; Yen, T.J.; Goldberg, M.L.; Yokomori, K.; Earnshaw, W.C. et al. (2001), “Specification of kinetochore-forming chromatin by the histone H3 variant CENP-A”, Journal of Cell Science 114 (19): 3529?3542, PMID 11682612 
^ Fukagawa, T.; Mikami, Y.; Nishihashi, A.; Regnier, V.; Haraguchi, T.; Hiraoka, Y.; Sugata, N.; Todokoro, K. et al. (2001), ⇒“CENP-H, a constitutive centromere component, is required for centromere targeting of CENP-C in vertebrate cells”, The EMBO Journal 20 (16): 4603?4617, doi:10.1093/emboj/20.16.4603, PMC 125570, PMID 11500386, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=125570 
^ Goshima, G.; Kiyomitsu, T.; Yoda, K.; Yanagida, M. (2003), ⇒“Human centromere chromatin protein hMis12, essential for equal segregation, is independent of CENP-A loading pathway”, The Journal of Cell Biology 160 (1): 25?39, doi:10.1083/jcb.200210005, PMC 2172742, PMID 12515822, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2172742 
^ a b c d Wigge, Philip A.; Kilmartin, John V. (2001), ⇒“The Ndc80p Complex from Saccharomyces cerevisiae Contains Conserved Centromere Components and Has a Function in Chromosome Segregation”, The Journal of Cell Biology 152 (2): 349?360, doi:10.1083/jcb.152.2.349, PMC 2199619, PMID 11266451, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2199619 
^ a b c d Deluca, J.G.; Moree, B.; Hickey, J.M.; Kilmartin, J.V.; Salmon, E.D. (2002), ⇒“hNuf2 inhibition blocks stable kinetochore?microtubule attachment and induces mitotic cell death in HeLa cells”, The Journal of Cell Biology 159 (4): 549?555, doi:10.1083/jcb.200208159, PMC 2173110, PMID 12438418, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2173110 
^ a b Cheeseman, I.M.; Niessen, S.; Anderson, S.; Hyndman, F.; Yates, J.R.; Oegema, K.; Desai, A. (2004), ⇒“A conserved protein network controls assembly of the outer kinetochore and its ability to sustain tension”, Genes & Development 18 (18): 2255?2268, doi:10.1101/gad.1234104, PMC 517519, PMID 15371340, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=517519 
^ Rattner, J.B.; Rao, A.; Fritzler, M.J.; Valencia, D.W.; Yen, T.J. (1993), “CENP-F is a. Ca 400 kDa kinetochore protein that exhibits a cell-cycle dependent localization”, Cell Motil Cytoskeleton 26 (3): 214?26, doi:10.1002/cm.970260305, PMID 7904902 
^ Liao, H.; Winkfein, RJ; Mack, G; Rattner, JB; Yen, TJ (1995), ⇒“CENP-F is a protein of the nuclear matrix that assembles onto kinetochores at late G2 and is rapidly degraded after mitosis”, The Journal of Cell Biology 130 (3): 507?518, doi:10.1083/jcb.130.3.507, PMC 2120529, PMID 7542657, ⇒http://www.pubmedcentral.nih.gov/articlerender.fcgi?tool=pmcentrez&artid=2120529 

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