利用酶动力学预测异交底羞鱼(fundulus heteroclitus)的ldl - b基因型在细胞代谢、发育速率和游泳性能方面的差异。

Isozymes Pub Date : 1983-01-01
D A Powers, L DiMichele, A R Place
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引用次数: 0

摘要

综上所述,F异交体的LDH-B4等位同工酶在功能上是不相等的。所观察到的动力学差异可以解释为LDH-B4b在较低温度下比LDH-Ba4具有更高的催化效率。在较高的温度下,情况似乎正好相反。LDH-BaBb等位基因同工酶并不完全是这两种同型四聚体的中间产物。这些体外功能差异可以解释为对具有特定ldl - b表型的个体有用。此外,关于它们在代谢和/或整个生物体水平上的重要性的预测可以通过实验进行和测试。我们发现LDH-B表型之间的发育和生理差异似乎取决于表型之间ATP代谢的显着差异。虽然我们还没有阐明ATP代谢受到影响的机制,但我们已经表明,表型之间ATP的差异模式与LDH-B等位基因同工酶之间的动力学差异模式精确地对应。这些现象的进化意义及其潜在的分子机制的解决将为选择主义和中立主义思想学派之间的争论提供线索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of enzyme kinetics to predict differences in cellular metabolism, developmental rate, and swimming performance between LDH-B genotypes of the fish, fundulus heteroclitus.

In summary, the LDH-B4 allelic isozymes of F heteroclitus are functionally nonequivalent. The kinetic differences observed can be explained by a greater catalytic efficiency by LDH-B4b at colder temperatures than LDH-Ba4. The situation appears to be reversed at higher temperatures. The LDH-BaBb allelic isozymes is not exactly intermediate to the two homotetramers. These in vitro functional differences can be interpreted as being useful to individuals with specific LDH-B phenotypes. Moreover, predictions concerning their significance at the metabolic and/or whole organism level can be made and tested experimentally. We have found both developmental and physiological differences between LDH-B phenotypes that appear to depend on a significant variation in ATP metabolism between the phenotypes. Although we have not elucidated the mechanism by which ATP metabolism is affected, we have shown that the pattern of ATP differences between phenotypes, corresponds precisely with the pattern of kinetic differences between the LDH-B allelic isozymes. The resolution of the evolutionary significance of these phenomena and their underlying molecular mechanism will shed light on the controversy between exponents of the selectionist and neutralist schools of thought.

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