McAlear M A, Howell E A, Espenshade K K, Holm C
Department of Cellular and Developmental Biology, Harvard University, Cambridge, Massachusetts 02138.
Mol Cell Biol. 1994 Jul;14(7):4390-7. doi: 10.1128/mcb.14.7.4390-4397.1994.
In addition to its role as a processivity factor in DNA replication, proliferating cell nuclear antigen (PCNA) may function in the regulation of cell cycle progression. We present genetic evidence that PCNA interacts with the gene product of CDC44, an essential nucleotide-binding protein that encodes the large subunit of yeast replication factor C (K. Fien and B. Stillman, personal communication). Mutations in POL30 (PCNA) suppress cold-sensitive alleles of cdc44 that contain mutations in or near nucleotide-binding consensus domains, but they do not suppress a null allele. Thus, it appears that PCNA interacts with Cdc44p but cannot substitute for its function. pol30 mutations suppress additional phenotypes of cdc44 mutations, including the cold sensitivity that they were selected to suppress. This observation suggests an intimate association between PCNA and Cdc44p. Each of five independent pol30 mutants contains a unique single mutation that maps to a localized region on one face of the predicted three-dimensional structure of PCNA. This face identifies a region likely to be important for functional interaction between the CDC44 and POL30 gene products.
增殖细胞核抗原(PCNA)除了在DNA复制中作为持续性因子发挥作用外,还可能在细胞周期进程的调控中起作用。我们提供了遗传学证据,表明PCNA与CDC44的基因产物相互作用,CDC44是一种必需的核苷酸结合蛋白,编码酵母复制因子C的大亚基(K. Fien和B. Stillman,个人交流)。POL30(PCNA)中的突变可抑制cdc44的冷敏感等位基因,这些等位基因在核苷酸结合共有结构域内或附近含有突变,但不能抑制无效等位基因。因此,似乎PCNA与Cdc44p相互作用,但不能替代其功能。pol30突变可抑制cdc44突变的其他表型,包括它们被选择抑制的冷敏感性。这一观察结果表明PCNA与Cdc44p之间存在密切关联。五个独立的pol30突变体中的每一个都包含一个独特的单突变,该突变定位在PCNA预测三维结构一侧的一个局部区域。该面确定了一个可能对CDC44和POL30基因产物之间的功能相互作用很重要的区域。