Temporal patterns of liver and adipose lipase abundance across the periparturient period in multiparous Holstein dairy cows

S.J. Kendall , H.T. Holdorf , R.S. Pralle , H.M. White
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Abstract

Lipases such as patatin-like phospholipase domain-containing protein 3 (PNPLA3) exist in multiple tissue types. In subcutaneous adipose tissue, PNPLA3 was not altered during the periparturient period. Conversely, strong associations between liver PNPLA3 and liver triglyceride content peripartum were identified and confirmed to be causative using knockdown approaches in a primary bovine hepatocyte model. The objective of this research was to characterize adipose and hepatic lipase abundance, as well as abundance of hepatic transcription factors (TF) involved in adipose and liver tissue lipolysis to determine potential impact on bovine fatty liver development and recovery. Adipose and liver tissue biopsy samples were collected from −28 to +56 d relative to calving (DRTC) from multiparous Holstein dairy cows randomly assigned to either a control (CTL) or ketosis induction protocol (KIP) diet. Clinical ketosis (blood BHB ≥ 3.0 mM) was used as a cowside indicator of successful induction and was achieved in CTL (n = 2) and KIP (n = 12) cows. Both adipose and liver abhydrolase domain-containing protein 5 and adipose triglyceride lipase (ATGL) differed across DRTC, as did liver perilipin 1. Hepatic mature and immature carbohydrate response element binding protein, and sterol regulatory binding protein 1c, varied or tended to vary across DRTC × treatment. Neither adipose nor liver hormone sensitive lipase (HSL) were responsive to treatment or varied across DRTC, but adipose HSL was positively associated with nonesterified fatty acids at +1 DRTC. Adipose and liver ATGL was associated with liver triglycerides across all DRTC. Patterns of adipose HSL and ATGL abundance did not explain the increase in nonesterified fatty acids observed at +1 DRTC in this study. Future investigation of lipase abundance in other adipose tissue depots is still needed to better explain regulation during this time. Bovine fatty liver development and recovery appears to be contingent upon liver PNPLA3 abundance, rather than liver ATGL.
多产荷斯坦奶牛围产期肝脏和脂肪脂肪酶丰度的时间模式。
脂肪酶如磷脂酶结构域蛋白3 (PNPLA3)存在于多种组织类型中。在皮下脂肪组织中,PNPLA3在围产期未发生改变。相反,在原代牛肝细胞模型中,肝脏PNPLA3和肝脏甘油三酯含量之间存在很强的相关性,并通过敲低方法证实了这一相关性。本研究的目的是表征脂肪和肝脂肪酶的丰度,以及参与脂肪和肝组织脂解的肝转录因子(TF)的丰度,以确定对牛脂肪肝发育和恢复的潜在影响。在相对于产犊(DRTC) -28至+56 d期间,将荷斯坦奶牛随机分配到对照(CTL)或酮症诱导方案(KIP)饲粮中,收集脂肪和肝脏组织活检样本。以临床酮症(血BHB≥3.0 mM)作为诱导成功的牛侧指标,CTL牛(n = 2)和KIP牛(n = 12)均实现了酮症诱导。脂肪和肝脏脱氢酶结构域蛋白5以及脂肪甘油三酯脂肪酶(ATGL)在DRTC中都存在差异,肝脏脂泌素1也是如此。肝脏成熟和未成熟碳水化合物反应元件结合蛋白和固醇调节结合蛋白1c在DRTC x处理中发生变化或趋于变化。脂肪和肝激素敏感脂肪酶(HSL)对治疗均无反应,且在不同DRTC中均无变化,但脂肪HSL与+1 DRTC时非酯化脂肪酸呈正相关。脂肪和肝脏ATGL与所有DRTC的肝脏甘油三酯相关。脂肪HSL和ATGL丰度的模式并不能解释本研究中观察到的+1 DRTC时非酯化脂肪酸的增加。未来仍需要对其他脂肪组织库中脂肪酶丰度的研究来更好地解释这段时间的调节。牛脂肪肝的发展和恢复似乎取决于肝脏PNPLA3的丰度,而不是肝脏ATGL。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JDS communications
JDS communications Animal Science and Zoology
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