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In silico Identification and Taxonomic Distribution of Plant Class C GH9 Endoglucanases

机译:C类GH9内切葡聚糖酶的计算机鉴定和分类分布

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摘要

The glycoside hydrolase 9 superfamily, mainly comprising the endoglucanases, is represented in all three domains of life. The current division of GH9 enzymes, into three subclasses, namely A, B, and C, is centered on parameters derived from sequence information alone. However, this classification is ambiguous, and is limited by the paralogous ancestry of classes B and C endoglucanases, and paucity of biochemical and structural data. Here, we extend this classification schema to putative GH9 endoglucanases present in green plants, with an emphasis on identifying novel members of the class C subset. These enzymes cleave the β(1 → 4) linkage between non-terminal adjacent D-glucopyranose residues, in both, amorphous and crystalline regions of cellulose. We utilized non redundant plant GH9 enzymes with characterized molecular data, as the training set to construct Hidden Markov Models (HMMs) and train an Artificial Neural Network (ANN). The parameters that were used for predicting dominant enzyme function, were derived from this training set, and subsequently refined on 147 sequences with available expression data. Our knowledge-based approach, can ascribe differential endoglucanase activity (A, B, or C) to a query sequence with high confidence, and was used to construct a local repository of class C GH9 endoglucanases (GH9C = 241) from 32 sequenced green plants.
机译:主要包含内切葡聚糖酶的糖苷水解酶9超家族在生活的所有三个域中都有代表。 GH9酶目前分为三个子类,即A,B和C,其中心是仅从序列信息中得出的参数。然而,这种分类是模棱两可的,并且受到B类和C类内切葡聚糖酶的同源血统以及缺乏生化和结构数据的限制。在这里,我们将这种分类方案扩展到绿色植物中存在的假定的GH9内切葡聚糖酶,重点是识别C类子集的新成员。这些酶在纤维素的无定形和结晶区域均会切割非末端相邻D-吡喃葡萄糖残基之间的β(1→4)键。我们利用具有特征分子数据的非冗余植物GH9酶作为训练集来构建隐马尔可夫模型(HMM)和训练人工神经网络(ANN)。从该训练集中获得用于预测优势酶功能的参数,然后在147个具有可用表达数据的序列上进行完善。我们基于知识的方法,可以高可信度地将差异内切葡聚糖酶活性(A,B或C)归因于查询序列,并用于从32个测序的绿色植物中构建C类GH9内切葡聚糖酶(GH9C = 241)的本地存储库。

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