鉴定蛋白质家族重复结构域的进化起源

Chaitanya Aluru, Mona Singh
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引用次数: 1

摘要

重复结构域的阵列对蛋白质家族的正常功能至关重要。这些重复很容易在序列中识别,并且被认为主要是通过多个结构域的同时复制而产生的。然而,对于大多数重复结构域蛋白家族来说,在其进化史中发生的特定结构域重复事件通常知之甚少。在这里,我们扩展了现有的使用领域树和序列树来推断领域复制和损失事件的协调公式,以额外考虑任意成本模型下的同时领域复制。我们开发了一种新的整数线性规划(ILP)解决方案来解决这个调和问题,并在模拟数据集上证明了我们的方法的准确性和鲁棒性。最后,作为原理证明,我们将我们的方法应用于包含C2H2锌指重复结构域的正类群,并确定了在灵长类谱系开始时发生的同步结构域复制。仿真和ILP代码可在https://github.com/Singh-Lab/treeSim上获得。
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Identifying Evolutionary Origins of Repeat Domains in Protein Families
Arrays of repeat domains are critical to the proper function of a significant fraction of protein families. These repeats are easily identified in sequence, and are thought to have arisen primarily through the simultaneous duplication of multiple domains. However, for most repeat domain protein families, very little is typically known about the specific domain duplication events that occurred in their evolutionary histories. Here we extend existing reconciliation formulations that use domain trees and sequence trees to infer domain duplication and loss events to additionally consider simultaneous domain duplications under arbitrary cost models. We develop a novel integer linear programming (ILP) solution to this reconciliation problem, and demonstrate the accuracy and robustness of our approach on simulated datasets. Finally, as proof of principle, we apply our approach to an orthogroup containing the C2H2 zinc finger repeat domain, and identify simultaneous domain duplications that occurred at the onset of the primate lineage. Simulation and ILP code is available at https://github.com/Singh-Lab/treeSim.
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