Department of Bacteriology and Biochemistry, Idaho Agricultural Experiment Station, University of Idaho, Moscow, Idaho 83843.
Appl Environ Microbiol. 1986 Oct;52(4):637-43. doi: 10.1128/aem.52.4.637-643.1986.
p-Fluorophenylalanine-resistant mutants of starch-degrading Bacillus polymyxa ATCC 842, generated by ethyl methanesulfonate mutagenesis followed by incubation with caffeine, overproduced small amounts of l-phenylalanine (l-phe) from starch. A beta-2-thienylalanine-resistant mutant (BT-7) derived from p-fluorophenylalanine mutant (C-4000 FP-4) and resistant to both p-fluorophenylalanine and beta-2-thienylalanine produced 0.5 g of l-phe and 0.15 g of l-tyrosine per liter from 10 g of starch per liter when growing in a minimal medium. trans-Cinnamic acid (CA) was also excreted by both mutants, indicating the possibility of l-phenylalanine ammonia-lyase-induced deamination of l-phe to CA. The amount of l-phe-derived CA detected in BT-7 was less compared with mutant C-4000 FP-4. CA production was induced in the parent only when l-phe was used as a sole nitrogen source. Time of CA production in the two mutants could be delayed by addition of other nitrogen sources, an indication of possible l-phenylalanine ammonia-lyase inhibition or repression. The presence of l-phenylalanine ammonia-lyase in B. polymyxa mutant C-4000 FP-4 was confirmed by assays of cell-free extracts from cells grown in starch minimal medium containing l-phe as the sole nitrogen source. Preliminary studies of the regulation of deoxy-d-arabino-heptulosonate-7-phosphate synthase and prephenate dehydratase in the wild-type strain showed that deoxy-d-arabino-heptulosonate-7-phosphate synthase was subject to feedback inhibition by l-phe, l-tyrosine, and l-tryptophan. Inhibition by each amino acid was to a similar extent singly or in combination at a 0.5 mM level of each amino acid. Prephenate dehydratase was feedback inhibited by l-phe, but not by l-tyrosine or l-tryptophan or both. In the double analog-resistant mutant BT-7, deoxy-d-arabino-heptulosonate-7-phosphate synthase had specific activity similar to that in the wild type, and the enzyme was still subject to feedback inhibition. However, prephenate dehydratase had increased specific activity and it was also insensitive to feedback inhibition by l-phe. The overproduction of aromatic amino acids by BT-7 was thought to be due, at least in part, to deregulation of feedback inhibition of prephenate dehydratase. Chorismate mutase was not subject to feedback inhibition in the wild type and was unaffected in the mutant.
淀粉分解芽孢杆菌 ATCC 842 的 p-氟苯丙氨酸抗性突变体,通过乙基甲磺酸诱变,再用咖啡因孵育生成,能从淀粉中少量生产 l-苯丙氨酸(l-phe)。来源于 p-氟苯丙氨酸突变体(C-4000 FP-4)的β-2-噻吩丙氨酸抗性突变体(BT-7),同时耐受 p-氟苯丙氨酸和β-2-噻吩丙氨酸,在最小培养基中从每升 10 克淀粉生长时,能生产 0.5 克 l-phe 和 0.15 克 l-酪氨酸。两种突变体都分泌反式肉桂酸(CA),表明 l-苯丙氨酸氨裂解酶诱导的 l-phe 脱氨生成 CA 的可能性。与突变体 C-4000 FP-4 相比,BT-7 中检测到的 l-phe 衍生 CA 量较少。只有当 l-phe 用作唯一氮源时,亲本才会诱导 CA 产生。在两种突变体中,通过添加其他氮源可以延迟 CA 的产生,表明可能存在 l-苯丙氨酸氨裂解酶的抑制或阻遏。通过细胞无细胞提取物的测定,在含有 l-phe 作为唯一氮源的淀粉最小培养基中生长的 B. polymyxa 突变体 C-4000 FP-4 中证实了 l-苯丙氨酸氨裂解酶的存在。野生型菌株中 deoxy-d-arabino-heptulosonate-7-phosphate synthase 和 prephenate dehydratase 的调节初步研究表明,deoxy-d-arabino-heptulosonate-7-phosphate synthase 受到 l-phe、l-酪氨酸和 l-色氨酸的反馈抑制。在 0.5 mM 水平的每种氨基酸的单一或组合中,每种氨基酸的抑制程度相似。 prephenate dehydratase 受到 l-phe 的反馈抑制,但不受 l-酪氨酸或 l-色氨酸或两者的影响。在双类似物抗性突变体 BT-7 中,deoxy-d-arabino-heptulosonate-7-phosphate synthase 的比活与野生型相似,该酶仍受到反馈抑制。然而, prephenate dehydratase 的比活增加,并且也不受 l-phe 的反馈抑制。BT-7 中芳香族氨基酸的过量生产被认为至少部分是由于 prephenate dehydratase 的反馈抑制失调。分支酸变位酶在野生型中不受反馈抑制,在突变体中也不受影响。