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用由ATP或ADP单体肌动蛋白制备的F-肌动蛋白进行核苷酸交换和流变学研究。

Nucleotide exchange and rheometric studies with F-actin prepared from ATP- or ADP-monomeric actin.

作者信息

Newman J, Zaner K S, Schick K L, Gershman L C, Selden L A, Kinosian H J, Travis J L, Estes J E

机构信息

Department of Physics, Union College, Schenectady, New York 12308.

出版信息

Biophys J. 1993 May;64(5):1559-66. doi: 10.1016/S0006-3495(93)81525-X.

Abstract

It has recently been reported that polymer actin made from monomer containing ATP (ATP-actin) differed in EM appearance and rheological characteristics from polymer made from ADP-containing monomers (ADP-actin). Further, it was postulated that the ATP-actin polymer was more rigid due to storage of the energy released by ATP hydrolysis during polymerization (Janmey et al. 1990. Nature 347:95-99). Electron micrographs of our preparations of ADP-actin and ATP-actin polymers show no major differences in appearance of the filaments. Moreover, the dynamic viscosity parameters G' and G" measured for ATP-actin and ADP-actin polymers are very different from those reported by Janmey et al., in absolute value, in relative differences, and in frequency dependence. We suggest that the relatively small differences observed between ATP-actin and ADP-actin polymer rheological parameters could be due to small differences either in flexibility or, more probably, in filament lengths. We have measured nucleotide exchange on ATP-actin and ADP-actin polymers by incorporation of alpha-32P-ATP and found it to be very slow, in agreement with earlier literature reports, and in contradiction to the faster exchange rates reported by Janmey et al. This exchange rate is much too slow to cause "reversal" of ADP-actin polymer ATP-actin polymer as reported by Janmey et al. Thus our results do not support the notion that the energy of actin-bound ATP hydrolysis is trapped in and significantly modifies the actin polymer structure.

摘要

最近有报道称,由含ATP的单体(ATP - 肌动蛋白)制成的聚合物肌动蛋白在电子显微镜外观和流变学特性上与由含ADP的单体(ADP - 肌动蛋白)制成的聚合物不同。此外,据推测,由于聚合过程中ATP水解释放的能量储存,ATP - 肌动蛋白聚合物更具刚性(Janmey等人,1990年。《自然》347:95 - 99)。我们制备的ADP - 肌动蛋白和ATP - 肌动蛋白聚合物的电子显微镜照片显示,细丝外观没有重大差异。此外,针对ATP - 肌动蛋白和ADP - 肌动蛋白聚合物测量的动态粘度参数G'和G",在绝对值、相对差异和频率依赖性方面,与Janmey等人报道的非常不同。我们认为,在ATP - 肌动蛋白和ADP - 肌动蛋白聚合物流变学参数之间观察到的相对较小差异,可能是由于柔韧性上的微小差异,或者更可能是由于细丝长度上的微小差异。我们通过掺入α - 32P - ATP测量了ATP - 肌动蛋白和ADP - 肌动蛋白聚合物上的核苷酸交换,发现其非常缓慢,这与早期文献报道一致,并且与Janmey等人报道的更快交换速率相矛盾。这种交换速率太慢,无法导致Janmey等人报道的ADP - 肌动蛋白聚合物向ATP - 肌动蛋白聚合物的“逆转”。因此,我们的结果不支持肌动蛋白结合的ATP水解能量被困在肌动蛋白聚合物结构中并显著改变该结构的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5a8/1262482/a69d8244067d/biophysj00088-0197-a.jpg

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