College of Veterinary Medicine,Nanjing Agricultural University, Nanjing 210095, China.
Poult Sci. 2019 Feb 1;98(2):1002-1011. doi: 10.3382/ps/pey498.
In this report, we investigated the protective function of co-enzyme Q10 on chicken hearts during in vivo heat stress (HS) and the relationship with Hsp70 expression. The concentration of co-enzyme Q10 (Q10) in the serum indicated that Q10 exogenously added prior HS was fully absorbed by chickens and is maintained at high levels during HS. The level of heart and oxidative damage-associated enzymes in the serum revealed that treatment with Q10 decreased the activity of CK-MB, CK, and LDH compared with the HS group; moreover, oxidative injury was also alleviated by Q10 according to the level of SOD, MDA, and T-AOC in the serum compared with HS group during heat stress. A pathological examination indicated that the chicken hearts suffered serious damage during HS, including hemorrhage, granular changes, karyopyknosis, and cardiac muscle fiber disorder; however, the extent of heart damage was reduced in HS + Q10 group. Our results indicated that the addition of Q10 could upregulate the expression of Hsp70 during HS compared with the HS group. Compared with the HS group, the addition of Q10 significantly increased the gene expression of hsf1 during HS and hsf3 at 5 h of HS. The expression of hsf2 and hsf4 was not influenced by HS. Q10 could only accelerate the trimerization of HSF1 as well binding activities to Hsp70 HSE according to native page and ChIP assays. These findings suggest that co-enzyme Q10 can protect chicken hearts from in vivo HS by inducing HSF1 binding activity and Hsp70 expression.
在本报告中,我们研究了辅酶 Q10 在体内热应激 (HS) 期间对鸡心脏的保护作用及其与 Hsp70 表达的关系。血清中辅酶 Q10 (Q10) 的浓度表明,HS 前添加的外源性 Q10 被鸡完全吸收,并在 HS 期间保持高水平。血清中心脏和氧化损伤相关酶的水平表明,与 HS 组相比,用 Q10 处理可降低 CK-MB、CK 和 LDH 的活性;此外,根据血清中 SOD、MDA 和 T-AOC 的水平,Q10 还减轻了氧化损伤。病理检查表明,鸡心在 HS 期间受到严重损伤,包括出血、颗粒变化、核固缩和心肌纤维紊乱;然而,HS + Q10 组的心脏损伤程度减轻。我们的结果表明,与 HS 组相比,Q10 的添加可以在 HS 期间上调 Hsp70 的表达。与 HS 组相比,在 HS 期间,Q10 的添加显著增加了 hsf1 的基因表达,而在 5 h 的 HS 期间增加了 hsf3 的基因表达。hsf2 和 hsf4 的表达不受 HS 影响。根据天然页和 ChIP 测定,Q10 只能加速 HSF1 的三聚化以及与 Hsp70 HSE 的结合活性。这些发现表明,辅酶 Q10 可以通过诱导 HSF1 结合活性和 Hsp70 表达来保护鸡心脏免受体内 HS 的影响。