Astromoff A, Ptashne M
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Proc Natl Acad Sci U S A. 1995 Aug 29;92(18):8110-4. doi: 10.1073/pnas.92.18.8110.
The bacteriophage lambda repressor binds cooperatively to pairs of adjacent sites in the lambda chromosome, one repressor dimer binding to each site. The repressor's amino domain (that which mediates DNA binding) is connected to its carboxyl domain (that which mediates dimerization and the interaction between dimers) by a protease-sensitive linker region. We have generated a variant lambda repressor that lacks this linker region. We show that dimers of the variant protein are deficient in cooperative binding to sites at certain, but not all, distances. The linker region thus extends the range over which carboxyl domains of DNA-bound dimers can interact. In particular, the linker is required for cooperative binding to a pair of sites as found in the lambda chromosome, and thus is essential for the repressor's physiological function.
噬菌体λ阻遏蛋白能协同结合于λ染色体上相邻的位点对,每个位点结合一个阻遏蛋白二聚体。阻遏蛋白的氨基结构域(介导与DNA结合)通过一个对蛋白酶敏感的连接区与羧基结构域(介导二聚化以及二聚体之间的相互作用)相连。我们构建了一种缺失该连接区的λ阻遏蛋白变体。我们发现,该变体蛋白的二聚体在协同结合某些(而非所有)距离的位点时存在缺陷。因此,连接区扩展了DNA结合二聚体的羧基结构域能够相互作用的范围。特别是,连接区对于协同结合λ染色体上的一对位点是必需的,因此对于阻遏蛋白的生理功能至关重要。