Acierno R, Agnisola C, Tota B, Sidell B D
Dipartimento di Biologia, Università di Lecce, Italy.
Am J Physiol. 1997 Jul;273(1 Pt 2):R100-6. doi: 10.1152/ajpregu.1997.273.1.R100.
Channichthyid icefishes of Antarctica are unique among adult vertebrates. All icefish species lack hemoglobin and red blood cells in their circulating blood. All icefishes examined to date also lack the intracellular oxygen-binding protein myoglobin (Mb) in their oxidative skeletal muscles. However, some icefish species do express Mb in their heart ventricles. It is unknown whether Mb in those species in which it is present represents an evolutionary relic or has functional significance. To address this problem, we compared mechanical performance of isolated, perfused hearts from two species of icefish in which Mb is either present (Chionodraco rastrospinosus) or is absent (Chaenocephalus aceratus). Hearts were challenged with increasing afterload (2.5-4.0 kPa) under conditions of defined basal flow (approximately 100 ml.min-1.kg-1), in both the presence and absence of 5 mM sodium nitrite, a Mb poison. Unlike hearts from C. aceratus, which were unable to maintain a constant cardiac output under pressure loading, those from C. rastrospinosus retained a constant flow up to 3.5 kPa afterload. At the upper range of power outputs, hearts of Mb-lacking C. aceratus display greater oxygen utilization than those of Mb-containing C. rastrospinosus. Poisoning of Mb significantly impaired the ability of C. rastrospinosus hearts to face pressure loading without reduction in flow, whereas those of C. aceratus were refractory to the treatment. The results strongly support a functional role for Mb in the former species.
南极的冰鱼科冰鱼在成年脊椎动物中很独特。所有冰鱼种类的循环血液中都缺乏血红蛋白和红细胞。迄今为止检查的所有冰鱼种类在其氧化型骨骼肌中也缺乏细胞内氧结合蛋白肌红蛋白(Mb)。然而,一些冰鱼种类在其心室中确实表达Mb。在那些存在Mb的种类中,Mb是代表进化遗迹还是具有功能意义尚不清楚。为了解决这个问题,我们比较了两种冰鱼分离灌注心脏的机械性能,一种冰鱼(棘突冰鱼)存在Mb,另一种冰鱼(裸头冰鱼)不存在Mb。在规定的基础流量(约100 ml·min⁻¹·kg⁻¹)条件下,在有和没有5 mM亚硝酸钠(一种Mb抑制剂)的情况下,增加后负荷(2.5 - 4.0 kPa)来挑战心脏。与裸头冰鱼的心脏在压力负荷下无法维持恒定的心输出量不同,棘突冰鱼的心脏在高达3.5 kPa的后负荷下仍能保持恒定的流量。在功率输出的上限范围内,缺乏Mb的裸头冰鱼心脏比含有Mb的棘突冰鱼心脏显示出更高的氧利用率。Mb中毒显著损害了棘突冰鱼心脏在不降低流量的情况下应对压力负荷的能力,而裸头冰鱼的心脏对这种处理具有抗性。结果有力地支持了Mb在前者物种中具有功能作用。