定量遗传学和细胞生物学的结合:一种新的筛选方法揭示了人们在微管稳定性方面存在遗传编码变异。

Bioarchitecture Pub Date : 2014-03-01 Epub Date: 2014-03-11 DOI:10.4161/bioa.28481
Dennis C Ko, Sarah L Jaslow
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引用次数: 4

摘要

微管在许多重要的细胞过程中起着核心作用,包括染色体分离、细胞内运输和细胞极性。由于这些动态聚合物是真核细胞结构的重要组成部分,我们对最近的发现感到惊讶,人类共同的遗传差异导致不同人细胞中微管稳定性的变化。TUBB6基因附近的单核苷酸多态性(SNP)编码V类β-微管蛋白,与该蛋白的表达水平相关,在高水平表达时降低微管稳定性。我们讨论了新的细胞GWAS(全基因组关联研究)平台,该平台导致了微管稳定性的自然、常见变异的发现,以及这一发现可能对人类健康和疾病(包括癌症和神经系统疾病)的影响。此外,我们的可推广的方法为细胞生物学家提供了一个门户,帮助解释人类遗传变异的功能后果。
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The marriage of quantitative genetics and cell biology: a novel screening approach reveals people have genetically encoded variation in microtubule stability.

Microtubules play a central role in many essential cellular processes, including chromosome segregation, intracellular transport, and cell polarity. As these dynamic polymers are crucial components of eukaryotic cellular architecture, we were surprised by our recent discovery that a common human genetic difference leads to variation in microtubule stability in cells from different people. A single nucleotide polymorphism (SNP) near the TUBB6 gene, encoding class V β-tubulin, is associated with the expression level of this protein, which reduces microtubule stability at higher levels of expression. We discuss the novel cellular GWAS (genome-wide association study) platform that led to this discovery of natural, common variation in microtubule stability and the implications this finding may have for human health and disease, including cancer and neurological disorders. Furthermore, our generalizable approach provides a gateway for cell biologists to help interpret the functional consequences of human genetic variation.

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