Koning Ann J, Larson Lynnelle L, Cadera Emily J, Parrish Mark L, Wright Robin L
Department of Zoology, University of Washington, Seattle, Washington 98195-1800, USA.
Genetics. 2002 Apr;160(4):1335-52. doi: 10.1093/genetics/160.4.1335.
In yeast, increased levels of the sterol biosynthetic enzyme, 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase isozyme, Hmg1p, induce assembly of nuclear-associated ER membranes called karmellae. To identify additional genes involved in karmellae assembly, we screened temperature-sensitive mutants for karmellae assembly defects. Two independently isolated, temperature-sensitive strains that were also defective for karmellae biogenesis carried mutations in VPS16, a gene involved in vacuolar protein sorting. Karmellae biogenesis was defective in all 13 other vacuole biogenesis mutants tested, although the severity of the karmellae assembly defect varied depending on the particular mutation. The hypersensitivity of 14 vacuole biogenesis mutants to tunicamycin was well correlated with pronounced defects in karmellae assembly, suggesting that the karmellae assembly defect reflected alteration of ER structure or function. Consistent with this hypothesis, seven of eight mutations causing defects in secretion also affected karmellae assembly. However, the vacuole biogenesis mutants were able to proliferate their ER in response to Hmg2p, indicating that the mutants did not have a global defect in the process of ER biogenesis.
在酵母中,固醇生物合成酶3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶同工酶Hmg1p水平的升高会诱导称为卡默拉体的核相关内质网膜的组装。为了鉴定参与卡默拉体组装的其他基因,我们筛选了对温度敏感的突变体,以寻找卡默拉体组装缺陷。两个独立分离的对温度敏感的菌株,它们在卡默拉体生物发生方面也存在缺陷,其VPS16基因发生了突变,VPS16是一个参与液泡蛋白分选的基因。在所测试的其他13个液泡生物发生突变体中,卡默拉体生物发生均存在缺陷,尽管卡默拉体组装缺陷的严重程度因具体突变而异。14个液泡生物发生突变体对衣霉素的超敏感性与卡默拉体组装的明显缺陷密切相关,这表明卡默拉体组装缺陷反映了内质网结构或功能的改变。与这一假设一致,导致分泌缺陷的8个突变中有7个也影响了卡默拉体组装。然而,液泡生物发生突变体能够响应Hmg2p使内质网增殖,这表明这些突变体在内质网生物发生过程中没有全局性缺陷。