Homology Effects by Theodore Friedmann, Jay C. Dunlap and Stephen F. Goodwin

By Theodore Friedmann, Jay C. Dunlap and Stephen F. Goodwin (Eds.)

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1982). A new male-specific lethal mutation in Drosophila melanogaster. Genetics 100, s42. Lyman, L. , Kelley, R. , and Kuroda, M. I. (1997). Drosophila malespecific lethal-2 protein: Structure/function analysis and dependence on MSL-1 for chromosome association. Genetics 147, 1743–1753. Lyon, M. F. (1961). ). Nature 190, 372–373. , and Jaenisch, R. (1997). Xist-deficient mice are defective in dosage compensation but not spermatogenesis. Genes Dev. 11, 156–166. , and Baker, B. S. (2000). Origin and evolution of the regulatory gene male-specific lethal-3.

Cheung, W. , Denu, J. , and Allis, C. D. (2000). Synergistic coupling of histone H3 phosphorylation and acetylation in response to epidermal growth factor stimulation. Mol. Cell 5, 905–915. Clayton, A. , Barratt, M. , and Mahadevan, L. C. (2000). Phosphoacetylation of histone H3 on c-fos- and c-jun-associated nucleosomes upon gene activation. EMBO J. 19, 3714–3726. Clemson, C. , McNeil, J. , Willard, H. , and Lawrence, J. B. (1996). XIST RNA paints the inactive X chromosome at interphase: Evidence for a novel RNA involved in nuclear/chromosome structure.

And Lucchesi, J. C. (1993). The male specific lethal-one gene encodes a novel protein that associates with the male X chromosome in Drosophila. Genetics 134, 545–557. Palmer, M. , and Kuroda, M. I. (1994). Sex-specific regulation of the male-specific lethal-1 dosage compensation gene in Drosophila. Genes Dev. 8, 698–706. , and Lucchesi, J. C. (2000). Recycling to remodel: evolution of dosage-compensation complexes. Curr. Opin. Genet. Dev. 10, 644–650. Parkhurst, S. , and Ish-Horowicz, D. (1990).

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