首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Chitin synthase 3 from yeast has zymogenic properties that depend on both the CAL1 and the CAL3 genes.
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Chitin synthase 3 from yeast has zymogenic properties that depend on both the CAL1 and the CAL3 genes.

机译:来自酵母的几丁质合酶3具有取决于CAL1和CAL3基因的产酶特性。

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摘要

In previous studies, chitin synthase 3 (Chs3), the enzyme responsible for synthesis of most of the chitin present in the yeast cell, was found to be inactivated by incubation with trypsin, in contrast to other yeast chitin synthases (Chs1 and Chs2), which are stimulated by this treatment (chitin synthase; UDP-N-acetyl-D-glucosamine:chitin 4-beta-N-acetylglucosaminyl-transferase, EC 2.4.1.16). It has now been found that the substrate UDPGlcNAc protects Chs3 against proteolytic inactivation. Treatment of Chs3-containing membranes with detergents drastically reduced the enzymatic activity. Activity could, however, be restored by subsequent incubation with trypsin or other proteases in the presence of UDPGlcNAc. Under such conditions, protease treatment stimulated activity as much as 10-fold. A change in divalent cation specificity after trypsin treatment suggests that the protease directly affects the enzyme molecule. Experiments with mutants in the three genes involved in Chs3 activity--CAL1, CAL2, and CAL3--showed that only CAL1 and CAL3 are required for the protease-elicited (zymogenic) activity. It is concluded that Chs3 is a zymogen and that the CAL2 product functions as its activator. The differences and possible similarities between Chs3 and the other chitin synthases are discussed.
机译:在先前的研究中,与其他酵母几丁质合酶(Chs1和Chs2)相反,发现与胰蛋白酶一起孵育后,导致酵母细胞中大多数几丁质合成的酶几丁质合酶3(Chs3),受到这种处理的刺激(几丁质合酶; UDP-N-乙酰基-D-葡糖胺:几丁质4-β-N-乙酰基氨基葡萄糖基转移酶,EC 2.4.1.16)。现已发现,底物UDPGlcNAc保护Chs3免于蛋白水解失活。用去污剂处理含Chs3的膜会大大降低酶的活性。但是,可以通过随后在UDPGlcNAc存在下与胰蛋白酶或其他蛋白酶一起孵育来恢复活性。在这种条件下,蛋白酶处理刺激了多达10倍的活性。胰蛋白酶处理后二价阳离子特异性的变化表明蛋白酶直接影响酶分子。对涉及Chs3活性的三个基因CAL1,CAL2和CAL3-中的突变体进行的实验表明,蛋白酶诱导的(酶促)活性仅需要CAL1和CAL3。结论是Chs3是酶原,CAL2产物起其激活剂的作用。讨论了Chs3和其他几丁质合酶之间的差异和可能的相似性。

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