Ritchie A K, Fambrough D M
J Gen Physiol. 1975 Jun;65(6):751-67. doi: 10.1085/jgp.65.6.751.
The acetylcholine reversal potential (Er) of cultured rat myotubes is -3mV. When activated, the receptor is permeable to K+ and Na+, but not to Cl- ions. Measurement of Er in Tris+-substituted, Na-free medium also indicated a permeability to Tris+ ions. Unlike adult frog muscle the magnitude of Er was insensitive to change in external Ca++ (up to 30 mM) or to changes in external pH (between 6.4 and 8.9). The equivalent circuit equation describing the electrical circuit composed of two parallel ionic batteries (EK and ENa) and their respective conductances (gK and gNa), which has been generally useful in describing the Er of adult rat and frog muscle, could also be applied to rat myotubes when Er was measured over a wide range of external Na+ concentrations. The equivalent circuit equation could not be applied to myotubes bathed in media of different external K+ concentrations. In this case, the Er was more closely described by the Goldman constant field equation. Under certain circumstances, it is known that the receptor in adult rat and frog muscle can be induced to reversibly shift from behavior described by the equivalent circuit equation to that described by the Goldman equation. Attempts to similarly manipulate the responses of cultured rat myotubes were unsussessful. These trials included a reduction in temperature (15 degress C), partial alpha-bungarotoxin blodkade, and activation of responses with the cholinergic agonist, decamethonium.
培养的大鼠肌管的乙酰胆碱反转电位(Er)为 -3mV。激活后,该受体对K⁺和Na⁺通透,但对Cl⁻离子不通透。在无钠的Tris⁺替代培养基中测量Er也表明其对Tris⁺离子有通透性。与成年青蛙肌肉不同,Er的大小对外界Ca²⁺(高达30 mM)的变化或外界pH(在6.4和8.9之间)的变化不敏感。描述由两个并联离子电池(EK和ENa)及其各自电导(gK和gNa)组成的电路的等效电路方程,通常可用于描述成年大鼠和青蛙肌肉的Er,当在广泛的外界Na⁺浓度范围内测量Er时,也可应用于大鼠肌管。等效电路方程不适用于浸泡在不同外界K⁺浓度培养基中的肌管。在这种情况下,Er更符合戈德曼常数场方程的描述。在某些情况下,已知成年大鼠和青蛙肌肉中的受体可被诱导从等效电路方程描述的行为可逆地转变为戈德曼方程描述的行为。对培养的大鼠肌管的反应进行类似操作的尝试未成功。这些试验包括降低温度(15摄氏度)、部分α-银环蛇毒素阻断以及用胆碱能激动剂十烃季铵激活反应。