Stoler Sam, Rogers Kelly, Weitze Scott, Morey Lisa, Fitzgerald-Hayes Molly, Baker Richard E
Department of Biochemistry and Molecular Biology, University of Massachusetts, Amherst, MA 01003, USA.
Proc Natl Acad Sci U S A. 2007 Jun 19;104(25):10571-6. doi: 10.1073/pnas.0703178104. Epub 2007 Jun 4.
A universal mark of centromeric chromatin is its packaging by a variant of histone H3 known as centromeric H3 (CenH3). The mechanism by which CenH3s are incorporated specifically into centromere DNA or the specialized function they serve there is not known. In a genetic approach to identify factors involved in CenH3 deposition, we screened for dosage suppressors of a temperature-sensitive cse4 allele in Saccharomyces cerevisiae (Cse4 is the S. cerevisiae CenH3). Independent screens yielded ORF YDL139C, which we named SCM3. Dosage suppression by SCM3 was specific for alleles affecting the histone fold domain of Cse4. Copurification and two-hybrid studies showed that Scm3 and Cse4 interact in vivo, and chromatin immunoprecipitation revealed that Scm3, like Cse4, is found associated with centromere DNA. Scm3 contains two essential protein domains, a Leu-rich nuclear export signal and a heptad repeat domain that is widely conserved in fungi. A conditional scm3 allele was generated to allow us to deplete Scm3. Upon Scm3 depletion, cells undergo a Mad2-dependent G2/M arrest, and centromere localization of Cse4 is perturbed. We suggest that S. cerevisiae Scm3 defines a previously undescribed family of fungal kinetochore proteins important for CenH3 localization.
着丝粒染色质的一个普遍特征是其由一种名为着丝粒组蛋白H3(CenH3)的组蛋白H3变体进行包装。CenH3特异性掺入着丝粒DNA的机制或其在那里发挥的特殊功能尚不清楚。在一种鉴定参与CenH3沉积的因子的遗传学方法中,我们筛选了酿酒酵母中温度敏感型cse4等位基因的剂量抑制子(Cse4是酿酒酵母的CenH3)。独立筛选得到了开放阅读框YDL139C,我们将其命名为SCM3。SCM3的剂量抑制作用对影响Cse4组蛋白折叠结构域的等位基因具有特异性。共纯化和双杂交研究表明,Scm3和Cse4在体内相互作用,染色质免疫沉淀显示,Scm3与Cse4一样,与着丝粒DNA相关。Scm3包含两个必需的蛋白质结构域,一个富含亮氨酸的核输出信号和一个在真菌中广泛保守的七肽重复结构域。我们构建了一个条件性scm3等位基因,以便能够耗尽Scm3。在耗尽Scm3后,细胞会经历Mad2依赖的G2/M期阻滞,并且Cse4的着丝粒定位会受到干扰。我们认为,酿酒酵母的Scm3定义了一个以前未描述的真菌动粒蛋白家族,该家族对于CenH3的定位很重要。