Leloup L, Driessen A J, Freudl R, Chambert R, Petit-Glatron M F
Laboratoire Génétique et Membranes, Institut Jacques Monod, CNRS-Universités Paris 6 et 7, 75251 Paris Cedex 05, France.
J Bacteriol. 1999 Mar;181(6):1820-6. doi: 10.1128/JB.181.6.1820-1826.1999.
SecA, the translocation ATPase of the preprotein translocase, accounts for 0.25% of the total protein in a degU32(Hy) Bacillus subtilis strain in logarithmic phase. The SecA level remained constant irrespective of the demand for exoprotein production but dropped about 12-fold during the late stationary phase. Modulation of the level of functional SecA during the exponential phase of growth affected differently the secretion of levansucrase and alpha-amylase overexpressed under the control of the sacB leader region. The level of SecA was reduced in the presence of sodium azide and in the div341 thermosensitive mutant at nonpermissive temperatures. Overproduction of SecA was obtained with a multicopy plasmid bearing secA. The gradual decrease of the SecA level reduced the yield of secreted levansucrase with a concomitant accumulation of unprocessed precursor in the cells, while an increase in the SecA level resulted in an elevation of the production of exocellular levansucrase. In contrast, alpha-amylase secretion was almost unaffected by high concentrations of sodium azide or by very low levels of SecA. Secretion defects were apparent only under conditions of strong SecA deprivation of the cell. These data demonstrate that the alpha-amylase and levansucrase precursors markedly differ in their dependency on SecA for secretion. It is suggested that these precursors differ in their binding affinities for SecA.
SecA是前体蛋白转运酶的转运ATP酶,在对数生长期的degU32(Hy)枯草芽孢杆菌菌株中占总蛋白的0.25%。无论外分泌蛋白的产量需求如何,SecA水平都保持恒定,但在稳定期末期下降了约12倍。在生长指数期调节功能性SecA的水平,对在sacB前导区控制下过表达的果聚糖蔗糖酶和α淀粉酶的分泌有不同影响。在叠氮化钠存在下以及在非允许温度下的div341热敏突变体中,SecA水平降低。通过携带secA的多拷贝质粒实现了SecA的过量表达。SecA水平的逐渐降低降低了分泌的果聚糖蔗糖酶的产量,同时细胞中未加工前体积累,而SecA水平的增加导致细胞外果聚糖蔗糖酶产量升高。相反,高浓度叠氮化钠或极低水平的SecA对α淀粉酶的分泌几乎没有影响。只有在细胞严重缺乏SecA的条件下,分泌缺陷才明显。这些数据表明,α淀粉酶和果聚糖蔗糖酶前体在分泌对SecA的依赖性上存在显著差异。有人认为这些前体对SecA的结合亲和力不同。