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ADP-ribosylation of alpha i3C20 by the S1 subunit and deletion peptides of S1 of pertussis toxin.

机译:百日咳毒素S1的S1亚基和S1缺失肽对αi3C20进行ADP核糖基化。

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摘要

Recombinant S1 subunit of PT (rS1) and two carboxyl-terminal deletion peptides, C180 and C204, which comprise the amino-terminal 180 and 204 amino acids of S1, respectively, were analyzed for the ability to ADP-ribosylate alpha i3C20, a synthetic peptide composed of the 20 carboxyl-terminal amino acids of the alpha subunit of the heterotrimeric G protein Gi3. Under linear velocity conditions, C180 ADP-ribosylated alpha i3C20 at a 3-fold higher rate than either C204 or rS1. At variable NAD, rS1, C204, and C180 ADP-ribosylated alpha i3C20 with similar initial velocities which followed Michaelis-Menten kinetics. In contrast, at variable alpha i3C20, rS1, C204, and C180 ADP-ribosylated alpha i3C20 with different initial velocities. At variable alpha i3C20, C204- and rS1-catalyzed ADP-ribosylation followed Michaelis-Menten kinetics, while the velocity curve generated by C180 diverged from Michaelis-Menten kinetics. The rates of initial velocity of C180 did not fit the Lineweaver-Burk equation, but could be transformed into the Hill equation which yielded a Hill coefficient of 2. This predicted that C180 possessed cooperativity between the two substrate binding sites. Other experiments showed that C180 ADP-ribosylated alpha i3C20 at 60% of the rate for the ADP-ribosylation of Gt. These data showed that the entire catalytic mechanism for ADP-ribosylation resides within the first 180 amino acids of S1 and that the carboxyl-terminal 55 residues of S1 allow the ADP-ribosylation of alpha i3C20 to proceed via Michaelis-Menten kinetics. These data along with earlier studies (Krueger & Barbieri, 1993) were also consistent with the presence of two Gt protein binding sites within S1.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:分析了PT的重组S1亚基(rS1)和两个羧基末端缺失肽C180和C204,分别包含S1的氨基末端180和204个氨基酸,以分析ADP-核糖基化αi3C20的能力。由异三聚体G蛋白Gi3的α亚基的20个羧基末端氨基酸组成的肽。在线速度条件下,C180 ADP-核糖基化的αi3C20的速率比C204或rS1高3倍。在变量NAD处,rS1,C204和C180 ADP-核糖基化的αi3C20具有相似的初始速度,并遵循Michaelis-Menten动力学。相反,在可变的αi3C20处,rS1,C204和C180 ADP-核糖基化的αi3C20具有不同的初始速度。在可变的αi3C20处,C204和rS1催化的ADP-核糖基化遵循Michaelis-Menten动力学,而C180生成的速度曲线不同于Michaelis-Menten动力学。 C180的初始速度速率不符合Lineweaver-Burk方程,但可以转换为Hill方程,Hill系数为2。这表明C180在两个底物结合位点之间具有协同作用。其他实验表明,C180 ADP-核糖基化的αi3C20的Gt的ADP-核糖基化率为60%。这些数据表明,ADP-核糖基化的整个催化机制位于S1的前180个氨基酸内,并且S1的羧基末端55个残基允许通过Michaelis-Menten动力学进行αi3C20的ADP-核糖基化。这些数据以及较早的研究(Krueger&Barbieri,1993)也与S1中存在两个Gt蛋白结合位点一致(摘要以250字截短)。

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