Biology Reference
In-Depth Information
Rieder, C., Cole, R., Khodjakov, A., Sluder, G., 1995. The checkpoint delaying anaphase in
response to chromosome monoorientation is mediated by an inhibitory signal produced
by unattached kinetochores. J. Cell Biol. 130, 941-948.
Rischitor, P.E., May, K.M., Hardwick, K.G., 2007. Bub1 is a fission yeast kinetochore scaf-
fold protein, and is sufficient to recruit other spindle checkpoint proteins to ectopic sites
on chromosomes. PLoS One 2, e1342.
Rong, Y.S., Titen, S.W., Xie, H.B., Golic, M.M., Bastiani, M., et al., 2002. Targeted
mutagenesis by homologous
recombination in D. melanogaster . Genes Dev. 16,
1568-1581.
Royou, A., Macias, H., Sullivan, W., 2005. The Drosophila Grp/Chk1 DNA damage
checkpoint controls entry into anaphase. Curr. Biol. 15, 334-339.
Royou, A., Gagou, M.E., Karess, R., Sullivan, W., 2010. BubR1- and Polo-coated DNA
tethers facilitate poleward segregation of acentric chromatids. Cell 140, 235-245.
Sabino, D., Brown, N.H., Basto, R., 2011. Drosophila Ajuba is not an Aurora-A activator
but is required to maintain Aurora-A at the centrosome. J. Cell Sci. 124, 1156-1166.
Saeki, A., Tamura, S., Ito, N., Kiso, S., Matsuda, Y., et al., 2002. Frequent impairment of the
spindle assembly checkpoint in hepatocellular carcinoma. Cancer 94, 2047-2054.
Santaguida, S., Musacchio, A., 2009. The life and miracles of kinetochores. EMBO J. 28,
2511-2531.
Santaguida, S., Vernieri, C., Villa, F., Ciliberto, A., Musacchio, A., 2011. Evidence that
Aurora B is implicated in spindle checkpoint signalling independently of error correc-
tion. EMBO J. 30, 1508-1519.
Saurin, A.T., van der Waal, M.S., Medema, R.H., Lens, S.M.A., Kops, G.J.P.L., 2011.
Aurora B potentiates Mps1 activation to ensure rapid checkpoint establishment at the
onset of mitosis. Nat. Commun. 2, 316.
Saxena, A., Saffery, R., Wong, L.H., Kalitsis, P., Choo, K.H.A., 2002. Centromere proteins
Cenpa, Cenpb, and Bub3 interact with poly(ADP-ribose) polymerase-1 protein and are
poly(ADP-ribosyl)ated. J. Biol. Chem. 277, 26921-26926.
Schittenhelm, R.B., Chaleckis, R., Lehner, C.F., 2009. Intrakinetochore localization and
essential functional domains of Drosophila Spc105. EMBO J. 28, 2374-2386.
Sczaniecka, M., Feoktistova, A., May, K.M., Chen, J.S., Blyth, J., et al., 2008. The spindle
checkpoint functions of Mad3 and Mad2 depend on a Mad3 KEN box-mediated inter-
action with Cdc20-anaphase-promoting complex (APC/C). J. Biol. Chem. 283,
23039-23047.
Sharp-Baker, H., Chen, R.H., 2001. Spindle checkpoint protein Bub1 is required for kinet-
ochore localization of Mad1, Mad2, Bub3, and CENP-E, independently of its kinase
activity. J. Cell Biol. 153, 1239-1250.
Shepperd, L.A., Meadows, J.C., Sochaj, A.M., Lancaster, T.C., Zou, J., et al., 2012. Phos-
phodependent recruitment of Bub1 and Bub3 to Spc7/KNL1 by Mph1 kinase maintains
the spindle checkpoint. Curr. Biol. 22, 891-899.
Shichiri, M., Yoshinaga, K., Hisatomi, H., Sugihara, K., Hirata, Y., 2002. Genetic and epi-
genetic inactivation of mitotic checkpoint genes hBUB1 and hBUBR1 and their rela-
tionship to survival. Cancer Res. 62, 13-17.
Shin, H.J., Baek, K.H., Jeon, A.H., Park, M.T., Lee, S.J., et al., 2003. Dual roles of human
BubR1, a mitotic checkpoint kinase, in the monitoring of chromosomal instability. Can-
cer Cell 4, 483-497.
Sironi, L., Mapelli, M., Knapp, S., De Antoni, A., Jeang, K.T., Musacchio, A., 2002. Crystal
structure of the tetrameric Mad1-Mad2 core complex: implications of a 'safety belt' bind-
ing mechanism for the spindle checkpoint. EMBO J. 21, 2496-2506.
Skoufias, D.A., Andreassen, P.R., Lacroix, F.B., Wilson, L., Margolis, R.L., 2001. Mamma-
lian mad2 and bub1/bubR1 recognize distinct spindle-attachment and kinetochore-
tension checkpoints. Proc. Natl. Acad. Sci. U.S.A. 98, 4492-4497.
 
Search WWH ::




Custom Search