Chávez Renato, Schachter Karen, Navarro Claudio, Peirano Alessandra, Aguirre Carlos, Bull Paulina, Eyzaguirre Jaime
Laboratorio de Bioquímica, Departamento de Genética Molecular y Microbiología, Pontificia Universidad Católica de Chile, Casilla 114-D, Santiago, Chile.
Gene. 2002 Jun 26;293(1-2):161-8. doi: 10.1016/s0378-1119(02)00720-5.
A number of xylanolytic microorganisms secrete to the medium several molecular forms of endoxylanases. The physiological function of these isoforms is not clear; one possibility is that they are produced under different growth conditions. To study this problem, we have used two endoxylanases (XynA and XynB) produced by the fungus Penicillium purpurogenum. These enzymes have been previously purified and characterized; they belong to family 10 and 11 of the glycosyl hydrolases, respectively. The promoters of the xynA and xynB genes have been sequenced; both present consensus sequences for the binding of the carbon catabolite repressor CreA, but otherwise show substantial differences. The xynB promoter has eight boxes in tandem for the binding of the XlnR activator and lacks the consensus sequence for the PacC pH regulator. On the other hand, the xynA promoter contains one XlnR box and three PacC consensus sequences. To investigate if these differences are reflected in gene expression, Northern blot assays were carried out. The xynA gene is transiently expressed when oat spelt xylan is used as carbon source, but negligible expression was observed with birchwood xylan, xylose or xylitol. In contrast, xynB is broadly induced by all these carbon sources; this may be related to the presence of several XlnR boxes. Similar results were obtained by zymogram analysis of the expressed proteins. The different induction capabilities of birchwood and oat spelt xylan may be due to differences in their composition and structure. Expression assays carried out at different pH reflects that, despite the lack of PacC binding sites in the xynB promoter, this gene is tightly regulated by pH. The findings described here illustrate new and important differences between endoxylanases from families 10 and 11 in P. purpurogenum. They may help explain the production of multiple endoxylanase forms by this organism.
许多木聚糖分解微生物会向培养基中分泌多种分子形式的内切木聚糖酶。这些同工型的生理功能尚不清楚;一种可能性是它们在不同的生长条件下产生。为了研究这个问题,我们使用了由产紫青霉产生的两种内切木聚糖酶(XynA和XynB)。这些酶先前已被纯化和表征;它们分别属于糖基水解酶家族10和11。xynA和xynB基因的启动子已被测序;两者都具有碳分解代谢物阻遏物CreA结合的共有序列,但在其他方面显示出显著差异。xynB启动子有八个串联的XlnR激活剂结合框,并且缺乏PacC pH调节剂的共有序列。另一方面,xynA启动子包含一个XlnR框和三个PacC共有序列。为了研究这些差异是否反映在基因表达中,进行了Northern印迹分析。当燕麦spel xylan用作碳源时,xynA基因瞬时表达,但用桦木木聚糖、木糖或木糖醇观察到的表达可以忽略不计。相反,xynB被所有这些碳源广泛诱导;这可能与几个XlnR框的存在有关。通过对表达蛋白的酶谱分析也得到了类似的结果。桦木木聚糖和燕麦spel木聚糖不同的诱导能力可能是由于它们的组成和结构不同。在不同pH下进行的表达分析表明,尽管xynB启动子中缺乏PacC结合位点,但该基因受到pH的严格调控。这里描述的发现说明了产紫青霉中家族10和11的内切木聚糖酶之间新的重要差异。它们可能有助于解释该生物体产生多种内切木聚糖酶形式的原因。