School of Biological Sciences, University of Auckland, Auckland, New Zealand.
Livestock Improvement Corporation, Hamilton, New Zealand.
BMC Genomics. 2020 Aug 26;21(1):591. doi: 10.1186/s12864-020-07004-z.
The DGAT1 gene encodes an enzyme responsible for catalysing the terminal reaction in mammary triglyceride synthesis, and underpins a well-known pleiotropic quantitative trait locus (QTL) with a large influence on milk composition phenotypes. Since first described over 15 years ago, a protein-coding variant K232A has been assumed as the causative variant underlying these effects, following in-vitro studies that demonstrated differing levels of triglyceride synthesis between the two protein isoforms.
We used a large RNAseq dataset to re-examine the underlying mechanisms of this large milk production QTL, and hereby report novel expression-based functions of the chr14 g.1802265AA > GC variant that encodes the DGAT1 K232A substitution. Using expression QTL (eQTL) mapping, we demonstrate a highly-significant mammary eQTL for DGAT1, where the K232A mutation appears as one of the top associated variants for this effect. By conducting in vitro expression and splicing experiments in bovine mammary cell culture, we further show modulation of splicing efficiency by this mutation, likely through disruption of an exon splice enhancer as a consequence of the allele encoding the 232A variant.
The relative contributions of the enzymatic and transcription-based mechanisms now attributed to K232A remain unclear; however, these results suggest that transcriptional impacts contribute to the diversity of lactation effects observed at the DGAT1 locus.
DGAT1 基因编码一种负责催化乳脂合成终末反应的酶,是对乳成分表型具有巨大影响的著名多效数量性状位点(QTL)的基础。自 15 年前首次描述以来,一种蛋白编码变体 K232A 被认为是导致这些影响的致病变体,这是基于体外研究的,该研究表明两种蛋白异构体之间的甘油三酯合成水平不同。
我们使用大型 RNAseq 数据集重新研究了这个大型产奶 QTL 的潜在机制,并在此报告了 chr14 g.1802265AA>GC 变体的新的基于表达的功能,该变体编码 DGAT1 K232A 取代。通过表达 QTL(eQTL)映射,我们证明了 DGAT1 的乳腺高度显著的 eQTL,其中 K232A 突变似乎是该效应的关联变体之一。通过在牛乳腺细胞培养中进行体外表达和剪接实验,我们进一步表明该突变可调节剪接效率,可能是由于编码 232A 变体的等位基因破坏了外显子剪接增强子。
目前归因于 K232A 的酶促和转录机制的相对贡献尚不清楚;然而,这些结果表明转录影响有助于解释在 DGAT1 基因座观察到的哺乳作用的多样性。