Department of Internal Medicine, University of New Mexico School of Medicine, Albuquerque, NM, USA.
UNM Comprehensive Cancer Center, Albuquerque, NM, USA.
Mamm Genome. 2019 Aug;30(7-8):192-200. doi: 10.1007/s00335-019-09809-0. Epub 2019 Jul 4.
The increase in the number of both patients and healthcare practitioners who grew up using the Internet and computers (so-called "digital natives") is likely to impact the practice of precision medicine, and requires novel platforms for data integration and mining, as well as contextualized information retrieval. The "Illuminating the Druggable Genome Knowledge Management Center" (IDG KMC) quantifies data availability from a wide range of chemical, biological, and clinical resources, and has developed platforms that can be used to navigate understudied proteins (the "dark genome"), and their potential contribution to specific pathologies. Using the "Target Importance and Novelty Explorer" (TIN-X) highlights the role of LRRC10 (a dark gene) in dilated cardiomyopathy. Combining mouse and human phenotype data leads to increased strength of evidence, which is discussed for four additional dark genes: SLX4IP and its role in glucose metabolism, the role of HSF2BP in coronary artery disease, the involvement of ELFN1 in attention-deficit hyperactivity disorder and the role of VPS13D in mouse neural tube development and its confirmed role in childhood onset movement disorders. The workflow and tools described here are aimed at guiding further experimental research, particularly within the context of precision medicine.
越来越多的患者和医疗保健从业者都是在互联网和计算机环境中(所谓的“数字原住民”)成长起来的,这可能会影响精准医学的实践,需要新的平台来进行数据集成和挖掘,以及上下文信息检索。“照亮可用药基因组知识管理中心”(IDG KMC)量化了来自广泛的化学、生物和临床资源的数据可获得性,并开发了可以用于研究未充分研究的蛋白质(“暗基因组”)及其对特定病理的潜在贡献的平台。使用“目标重要性和新颖性探索器”(TIN-X)突出了 LRRC10(暗基因)在扩张型心肌病中的作用。将小鼠和人类表型数据结合起来会增加证据的强度,我们还讨论了另外四个暗基因:SLX4IP 及其在葡萄糖代谢中的作用、HSF2BP 在冠状动脉疾病中的作用、ELFN1 在注意缺陷多动障碍中的作用以及 VPS13D 在小鼠神经管发育中的作用及其在儿童发病运动障碍中的确认作用。这里描述的工作流程和工具旨在指导进一步的实验研究,特别是在精准医学的背景下。