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A Eukaryote without Catalase-Containing Microbodies: Neurospora crassa Exhibits a Unique Cellular Distribution of Its Four Catalases

机译:一个没有过氧化氢酶的真核生物的真核生物:Neurospora crassa展示其四个过氧化氢酶的独特细胞分布。

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摘要

Microbodies usually house catalase to decompose hydrogen peroxide generated within the organelle by the action of various oxidases. Here we have analyzed whether peroxisomes (i.e., catalase-containing microbodies) exist in Neurospora crassa. Three distinct catalase isoforms were identified by native catalase activity gels under various peroxisome-inducing conditions. Subcellular fractionation by density gradient centrifugation revealed that most of the spectrophotometrically measured activity was present in the light upper fractions, with an additional small peak coinciding with the peak fractions of HEX-1, the marker protein for Woronin bodies, a compartment related to the microbody family. However, neither in-gel assays nor monospecific antibodies generated against the three purified catalases detected the enzymes in any dense organellar fraction. Furthermore, staining of an N. crassa wild-type strain with 3,3'-diaminobenzidine and H2O2 did not lead to catalase-dependent reaction products within microbodies. Nonetheless, N. crassa does possess a gene (cat-4) whose product is most similar to the peroxisomal type of monofunctional catalases. This novel protein indeed exhibited catalase activity, but was not localized to microbodies either. We conclude that N. crassa lacks catalase-containing peroxisomes, a characteristic that is probably restricted to a few filamentous fungi that produce little hydrogen peroxide within microbodies.
机译:微体通常容纳过氧化氢酶,以分解各种氧化酶的作用在细胞器内产生的过氧化氢。在这里我们分析了神经孢菌中是否存在过氧化物酶体(即含有过氧化氢酶的微体)。在各种过氧化物酶体诱导条件下,通过天然过氧化氢酶活性凝胶鉴定出三种不同的过氧化氢酶同工型。通过密度梯度离心进行的亚细胞分级分离显示,大多数分光光度法测得的活性都存在于较轻的上层级分中,另外一个小峰与Woronin体的标志蛋白HEX-1(与微体有关的部分)的峰级分相吻合。家庭。然而,针对三种纯化的过氧化氢酶的凝胶内测定法或单特异性抗体均未检测到任何致密的细胞器级分中的酶。此外,用3,3'-二氨基联苯胺和H2O2对克雷萨氏菌野生型菌株进行染色不会在微体内产生过氧化氢酶依赖性反应产物。尽管如此,克雷萨猪笼草确实具有一个基因(cat-4),其产物与过氧化物酶体类型的单功能过氧化氢酶最为相似。这种新蛋白确实表现出过氧化氢酶活性,但也未定位于微体。我们得出的结论是,猪笼草缺乏含过氧化氢酶的过氧化物酶体,这一特征可能仅限于少数丝状真菌,在微体内其几乎不产生过氧化氢。

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