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Other names published for MATA1: A1
MATA1 LITERATURE TOPICS
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MATA1 - Function/Process (26)
| Reference | Other Genes Addressed |
|---|---|
| Mazor Y and Kupiec M (2009) Developmentally regulated MAPK pathways modulate heterochromatin in Saccharomyces cerevisiae. Nucleic Acids Res 37(14):4839-49 | |
| Galgoczy DJ, et al. (2004) Genomic dissection of the cell-type-specification circuit in Saccharomyces cerevisiae. Proc Natl Acad Sci U S A 101(52):18069-74 | |
| Nagaraj VH, et al. (2004) Combined analysis of expression data and transcription factor binding sites in the yeast genome. BMC Genomics 5(1):59 | |
| Rives AW and Galitski T (2003) Modular organization of cellular networks. Proc Natl Acad Sci U S A 100(3):1128-33 | |
| Gelli A (2002) Rst1 and Rst2 are required for the a/alpha diploid cell type in yeast. Mol Microbiol 46(3):845-54 | |
| Ho CY, et al. (2002) A possible mechanism for partitioning between homo- and heterodimerization of the yeast homeodomain proteins MATa1 and MATalpha2. J Pept Res 59(1):34-43 | |
| Jin Y, et al. (1999) The yeast a1 and alpha2 homeodomain proteins do not contribute equally to heterodimeric DNA binding. Mol Cell Biol 19(1):585-93 | |
| Verna J and Ballester R (1999) A novel role for the mating type (MAT) locus in the maintenance of cell wall integrity in Saccharomyces cerevisiae. Mol Gen Genet 261(4-5):681-9 | |
| Johnson PR, et al. (1998) Degradation signal masking by heterodimerization of MATalpha2 and MATa1 blocks their mutual destruction by the ubiquitin-proteasome pathway. Cell 94(2):217-27 | |
| Huang L, et al. (1997) Amino termini of histones H3 and H4 are required for a1-alpha2 repression in yeast. Mol Cell Biol 17(11):6555-62 | |
| Lo WS, et al. (1997) Development of pseudohyphae by embedded haploid and diploid yeast. Curr Genet 32(3):197-202 | |
| Szeto L and Broach JR (1997) Role of alpha2 protein in donor locus selection during mating type interconversion. Mol Cell Biol 17(2):751-9 | |
| Jin Y, et al. (1995) Altered DNA recognition and bending by insertions in the alpha 2 tail of the yeast a1/alpha 2 homeodomain heterodimer. Science 270(5234):290-3 | |
| Smith DL, et al. (1995) DNA bending by the a1 and alpha 2 homeodomain proteins from yeast. Nucleic Acids Res 23(7):1239-43 | |
| Baxter SM, et al. (1994) Heterodimerization of the yeast homeodomain transcriptional regulators alpha 2 and a1: secondary structure determination of the a1 homeodomain and changes produced by alpha 2 interactions. Biochemistry 33(51):15309-20 | |
| Ho CY, et al. (1994) Heterodimerization of the yeast MATa1 and MAT alpha 2 proteins is mediated by two leucine zipper-like coiled-coil motifs. EMBO J 13(6):1403-13 | |
| Goutte C and Johnson AD (1993) Yeast a1 and alpha 2 homeodomain proteins form a DNA-binding activity with properties distinct from those of either protein. J Mol Biol 233(3):359-71 | |
| Mak A and Johnson AD (1993) The carboxy-terminal tail of the homeo domain protein alpha 2 is required for function with a second homeo domain protein. Genes Dev 7(10):1862-70 | |
| Fujita A, et al. (1992) The yeast SFL2 gene may be necessary for mating-type control. Gene 112(1):85-90 | |
| Mukai Y, et al. (1991) AAR1/TUP1 protein, with a structure similar to that of the beta subunit of G proteins, is required for a1-alpha 2 and alpha 2 repression in cell type control of Saccharomyces cerevisiae. Mol Cell Biol 11(7):3773-9 | |
| Dranginis AM (1990) Binding of yeast a1 and alpha 2 as a heterodimer to the operator DNA of a haploid-specific gene. Nature 347(6294):682-5 | |
| Pugh TA and Clancy MJ (1990) Differential regulation of STA genes of Saccharomyces cerevisiae. Mol Gen Genet 222(1):87-96 | |
| Goutte C and Johnson AD (1988) a1 protein alters the DNA binding specificity of alpha 2 repressor. Cell 52(6):875-82 | |
| Strathern J, et al. (1988) a/Alpha-specific repression by MAT alpha 2. Genetics 120(1):75-81 | |
| Mitchell AP and Herskowitz I (1986) Activation of meiosis and sporulation by repression of the RME1 product in yeast. Nature 319(6056):738-42 | |
| Strathern JN, et al. (1979) Healing of mat mutations and control of mating type interconversion by the mating type locus in Saccharomyces cerevisiae. Proc Natl Acad Sci U S A 76(7):3425-3429 |





