Other names published for STU2: YLR045C
STU2 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Additional Information
STU2 - Reviews (25)
| Reference | Other Genes Addressed |
|---|---|
| Burrack LS and Berman J (2012) Flexibility of centromere and kinetochore structures. Trends Genet 28(5):204-12 | |
| Jaspersen SL and Ghosh S (2012) Nuclear envelope insertion of spindle pole bodies and nuclear pore complexes. Nucleus 3(3):226-36 | |
| Winey M and Bloom K (2012) Mitotic spindle form and function. Genetics 190(4):1197-224 | |
| Dasso M (2011) Shedding light on mysterious microtubules. Dev Cell 20(2):e1 | |
| Enserink JM and Kolodner RD (2010) An overview of Cdk1-controlled targets and processes. Cell Div 5():11 | |
| Fischer R, et al. (2008) Polarized growth in fungi--interplay between the cytoskeleton, positional markers and membrane domains. Mol Microbiol 68(4):813-26 | |
| Howard J and Hyman AA (2007) Microtubule polymerases and depolymerases. Curr Opin Cell Biol 19(1):31-5 | |
| Westermann S, et al. (2007) Structures and functions of yeast kinetochore complexes. Annu Rev Biochem 76:563-91 | |
| Lansbergen G and Akhmanova A (2006) Microtubule plus end: a hub of cellular activities. Traffic 7(5):499-507 | |
| Xiang X (2006) A +TIP for a smooth trip. J Cell Biol 172(5):651-4 | |
| Akhmanova A and Hoogenraad CC (2005) Microtubule plus-end-tracking proteins: mechanisms and functions. Curr Opin Cell Biol 17(1):47-54 | |
| Kline-Smith SL, et al. (2005) Kinetochore-spindle microtubule interactions during mitosis. Curr Opin Cell Biol 17(1):35-46 | |
| Krishnan V and Surana U (2005) Taming the spindle for containing the chromosomes. Cell Cycle 4(3):376-9 | |
| Tan AL, et al. (2005) Essential tension and constructive destruction: the spindle checkpoint and its regulatory links with mitotic exit. Biochem J 386(Pt 1):1-13 | |
| Tanaka TU, et al. (2005) Kinetochore capture and bi-orientation on the mitotic spindle. Nat Rev Mol Cell Biol 6(12):929-42 | |
| Biggins S and Walczak CE (2003) Captivating capture: how microtubules attach to kinetochores. Curr Biol 13(11):R449-60 | |
| McAinsh AD, et al. (2003) Structure, function, and regulation of budding yeast kinetochores. Annu Rev Cell Dev Biol 19:519-39 | |
| McNally F (2003) Microtubule dynamics: new surprises from an old MAP. Curr Biol 13(15):R597-9 | |
| Popov AV and Karsenti E (2003) Stu2p and XMAP215: turncoat microtubule-associated proteins? Trends Cell Biol 13(11):547-50 | |
| Kinoshita K, et al. (2002) XMAP215: a key component of the dynamic microtubule cytoskeleton. Trends Cell Biol 12(6):267-73 | |
| Kitagawa K and Hieter P (2001) Evolutionary conservation between budding yeast and human kinetochores. Nat Rev Mol Cell Biol 2(9):678-87 | |
| Ohkura H, et al. (2001) Dis1/TOG universal microtubule adaptors - one MAP for all? J Cell Sci 114(Pt 21):3805-12 | |
| Van Hooser AA and Heald R (2001) Kinetochore function: the complications of becoming attached. Curr Biol 11(21):R855-7 | |
| Vogel J and Snyder M (2000) gamma-Tubulin of budding yeast. Curr Top Dev Biol 49:75-104 | |
| Winsor B and Schiebel E (1997) Review: an overview of the Saccharomyces cerevisiae microtubule and microfilament cytoskeleton. Yeast 13(5):399-434 |



