Kang Christopher Minkyu, Jiang Yi Wei
Department of Medical Biochemistry & Genetics, Texas A&M University System Health Science Center, 428 Reynolds Medical Building, College Station, TX 77843-1114, USA.
Yeast. 2005 Jan 30;22(2):79-90. doi: 10.1002/yea.1195.
We recently discovered that slowed DNA synthesis induces filamentous differentiation in S. cerevisiae. We screened the BY yeast deletion strains and identified four classes of non-essential genes that are required for both slowed DNA-induced filamentous growth and classic forms of filamentous growth: (a) genes encoding regulators of the actin cytoskeleton and cell polarity, ABP1, CAP2 and HUF1 (=YOR300W), in addition to the previously known BNI1, BUD2, PEA2, SPA2 and TPM1; (b) genes that are likely involved in cell wall biosynthesis, ECM25, GAS1 and PRS3; (c) genes encoding possible regulators of protein secretion, SEC66, RPL21A and RPL34B; (d) genes encoding factors for normal mitochondrial function, IML1 and UGO1. These results showed that pseudohyphal formation involves not the only previously known regulation of the actin cytoskeleton/cell polarity but also regulation of cell wall synthesis, protein secretion and mitochondrial function. Identification of multiple classes of genes that are required for both slowed DNA synthesis-induced and classic forms of filamentous growth confirms that slowed DNA synthesis-induced filamentous growth is bone fide filamentous differentiation.
我们最近发现,DNA合成减缓会诱导酿酒酵母发生丝状分化。我们筛选了BY酵母缺失菌株,鉴定出四类非必需基因,它们对于DNA合成减缓诱导的丝状生长和经典形式的丝状生长都是必需的:(a) 编码肌动蛋白细胞骨架和细胞极性调节因子的基因,除了先前已知的BNI1、BUD2、PEA2、SPA2和TPM1外,还有ABP1、CAP2和HUF1(=YOR300W);(b) 可能参与细胞壁生物合成的基因,ECM25、GAS1和PRS3;(c) 编码可能的蛋白质分泌调节因子的基因,SEC66、RPL21A和RPL34B;(d) 编码正常线粒体功能因子的基因,IML1和UGO1。这些结果表明,假菌丝形成不仅涉及先前已知的肌动蛋白细胞骨架/细胞极性调节,还涉及细胞壁合成、蛋白质分泌和线粒体功能的调节。鉴定出多类对于DNA合成减缓诱导的和经典形式的丝状生长都必需的基因,证实了DNA合成减缓诱导的丝状生长是真正的丝状分化。