Punt P J, Seiboth B, Weenink X O, van Zeijl C, Lenders M, Konetschny C, Ram A F, Montijn R, Kubicek C P, van den Hondel C A
Department of Applied Microbiology and Gene Technology, TNO Voeding, PO Box 360, 3700 AJ Zeist, The Netherlands.
Mol Microbiol. 2001 Jul;41(2):513-25. doi: 10.1046/j.1365-2958.2001.02541.x.
DNA fragments containing genetic information for five secretion-related small GTPases of Aspergillus niger (srgA-E) were isolated and identified as members of different Rab/Ypt subfamilies. This isolation and the search for similar sequences in fungal genomic and EST databases showed that, in contrast to Saccharomyces cerevisiae, filamentous fungi also possess homologues of mammalian Rab2 GTPases. Multiple transcripts with unusually long 5' and 3' untranslated regions were found for all srg genes. Their level of expression was independent of the type of carbon source used for growth. Although the transcripts of srgA and srgB were abundant to the same extent throughout the cultivation, that of the other genes peaked during the early growth phase and then declined. Two genes, srgA and srgB, were characterized further. The protein encoded by srgA exhibited relatively low identity (58%) to its closest S. cerevisiae homologue SEC4, whereas the protein encoded by srgB showed 73% identity with S. cerevisiae YPT1. In contrast to other SEC4 homologues, srgA was unable to complement an S. cerevisiae sec4 mutant, and its disruption was not lethal in A. niger. SrgA mutants displayed a twofold increase in their hyphal diameter, unusual apical branching and strongly reduced protein secretion during growth on glucose.
分离出了含有黑曲霉5种分泌相关小GTP酶(srgA - E)遗传信息的DNA片段,并鉴定它们为不同Rab/Ypt亚家族的成员。这种分离以及在真菌基因组和EST数据库中搜索相似序列表明,与酿酒酵母不同,丝状真菌也拥有哺乳动物Rab2 GTP酶的同源物。所有srg基因都发现了具有异常长的5'和3'非翻译区的多个转录本。它们的表达水平与用于生长的碳源类型无关。尽管在整个培养过程中srgA和srgB的转录本丰度相同,但其他基因的转录本在生长早期达到峰值,然后下降。对srgA和srgB这两个基因进行了进一步表征。srgA编码的蛋白质与其最接近的酿酒酵母同源物SEC4的同一性相对较低(58%),而srgB编码的蛋白质与酿酒酵母YPT1的同一性为73%。与其他SEC4同源物不同,srgA无法互补酿酒酵母sec4突变体,并且其破坏在黑曲霉中并非致命。SrgA突变体在以葡萄糖为碳源生长时,菌丝直径增加了两倍,出现异常的顶端分支,蛋白质分泌大幅减少。