Miller A G, Budd K
J Bacteriol. 1976 Dec;128(3):741-8. doi: 10.1128/jb.128.3.741-748.1976.
The iodides of three lipid-soluble cations (dibenzyldimethylammonium; tribenzylmethylammonium, TBMA+; ethyldimethylbenzylammonium) were synthesized by the reaction of 14C-labeled methyl or 14C-labeled ethyl iodide with the appropriate secondary of tertiary amine and used in an attempt to measure the transmembrane electrical potential difference in Neocosmospora. Only mycelium containing high levels of Na+ accumulated measureable amounts of these cations and only above pH 6. Uptake was reduced in the presence of exogenous K+, Na+, Mg2+, or tris(hydroxymethyl)aminomethane. The velocity of TBMA+ uptake was proportional to its concentration between 46 and 427 muM. Neither the rate nor the extent of TBMB+ uptake was greatly affected by the presence of a fivefold excess of either dibenzyldimethylammonium or ethyldimethylbenzylammonium, even though these cations were themselves accumulated. The uncoupler m-chlorophenylhydrazone induced loss of previously accumulated TBMA+ from the mycelium. Anaerobiosis and cold (5 degrees C) temperature both inhibited TBMA+ uptake but did not induce the loss of previously accumulated TBMA+. The uptake of lipophilic cations by Na+-rich mycelium indicated a minimum transmembrane electrical potential of -60 to -70 mV (inside negative). Net uptake of these cations appeared to be strongly influenced by the availability of endogenous exchangeable cations and by the presence of other exogenous cations, as well as by the membrane potential. Despite these limitations, transport of C1- by Na+-rich mycelium appeared to take place against the electrochemical gradient for C1-.
通过将14C标记的甲基碘或14C标记的乙基碘与适当的仲胺或叔胺反应,合成了三种脂溶性阳离子(二苄基二甲基铵;三苄基甲基铵,TBMA+;乙基二甲基苄基铵)的碘化物,并用于尝试测量新宇宙孢菌中的跨膜电势差。只有含有高水平Na+的菌丝体积累了可测量量的这些阳离子,且仅在pH 6以上。在外源K+、Na+、Mg2+或三(羟甲基)氨基甲烷存在下,摄取减少。TBMA+摄取速度与其在46至427 μM之间的浓度成正比。即使这些阳离子自身会积累,但五倍过量的二苄基二甲基铵或乙基二甲基苄基铵的存在对TBMB+摄取的速率和程度均无太大影响。解偶联剂间氯苯腙会导致菌丝体中先前积累的TBMA+流失。厌氧和低温(5℃)均会抑制TBMA+摄取,但不会导致先前积累的TBMA+流失。富含Na+的菌丝体对亲脂性阳离子的摄取表明最小跨膜电势为-60至-70 mV(内侧为负)。这些阳离子的净摄取似乎受到内源性可交换阳离子的可用性、其他外源阳离子的存在以及膜电位的强烈影响。尽管存在这些限制,但富含Na+的菌丝体对Cl-的转运似乎是逆着Cl-的电化学梯度进行的。