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Location of Aryl Sulfatase in Conidia and Young Mycelia of Neurospora crassa

机译:芳基硫酸酯酶在神经孢霉的分生孢子和幼小菌丝体中的位置

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摘要

Aryl sulfatase (arylsulfate sulfohydrolase, EC 3.1.6.1) was found to have multiple locations in Neurospora conidia. Some enzyme activity remained in the supernatant when a spore suspension was centrifuged or filtered. Part of the cell-bound activity could be detected by adding the assay ingredients to a suspension of intact spores (patent enzyme), and additional activity was only detectable when the spores were first treated to destroy their permeability barriers (cryptic enzyme). Such treatments include: disruption with an X-press, brief rinsing with chloroform or acetone, incubation at 60 C for 5 min, and incubation with phenethyl alcohol, nystatin, or ascosin. Part of the patent aryl sulfatase was inactivated by briefly acid treating the intact spores (no loss of conidial viability). This enzyme was considered to have a cell surface location. Some enzyme was acid-resistant in intact spores, but all of the enzyme was acid-sensitive in spores whose permeability barriers had been disrupted. The pH dependence, kinetic properties, and p-nitrophenyl sulfate uptake were investigated in acid-treated conidia. No aryl sulfatase was detected in ascospores. Young mycelia contained more aryl sulfatase than did conidia, but little, if any, was secreted into the growth medium. Cryptic activity was demonstrated in young mycelia by brief chloroform treatment or by rinsing the cells with 0.1 m acetate buffer. Enzyme activity in young mycelia was completely labile to acid treatment, as was cell viability.
机译:发现芳基硫酸酯酶(芳基硫酸盐磺化水解酶,EC 3.1.6.1)在Neurospora分生孢子中有多个位置。当孢子悬浮液被离心或过滤时,一些酶活性保留在上清液中。通过将测定成分添加到完整的孢子(专利酶)的悬浮液中,可以检测到部分细胞结合的活性,并且只有在首次处理孢子以破坏其通透性屏障(隐性酶)的情况下,才能检测到额外的活性。此类处理包括:用X-压片打碎,用氯仿或丙酮短暂漂洗,在60°C孵育5分钟,以及与苯乙醇,制霉菌素或壁球蛋白孵育。通过简单地酸处理完整的孢子使部分芳基硫酸酯酶失活(无分生孢子活力)。该酶被认为具有细胞表面位置。某些酶在完整的孢子中具有耐酸性,但所有酶在渗透性屏障已被破坏的孢子中均对酸敏感。在酸处理的分生孢子中研究了pH依赖性,动力学性质和对硝基苯基硫酸盐的摄取。在子囊孢子中未检测到芳基硫酸酯酶。年轻的菌丝体比分生孢子含有更多的芳基硫酸酯酶,但是几乎没有分泌到生长培养基中。通过短暂的氯仿处理或用0.1 m乙酸盐缓冲液冲洗细胞,可证明年轻菌丝体具有隐秘活性。年轻菌丝体中的酶活性对酸处理完全不稳定,细胞活力也是如此。

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