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细菌磷酸转移酶系统介导的糖转运。通过荧光各向异性表征大肠杆菌酶I单体/二聚体平衡。

Sugar transport by the bacterial phosphotransferase system. Characterization of the Escherichia coli enzyme I monomer/dimer equilibrium by fluorescence anisotropy.

作者信息

Chauvin F, Brand L, Roseman S

机构信息

McCollum-Pratt Institute, Johns Hopkins University, Baltimore, Maryland 21218.

出版信息

J Biol Chem. 1994 Aug 12;269(32):20263-9.

PMID:8051118
Abstract

Enzyme I (EI), the first protein of the bacterial phosphotransferase system (PTS), exists in a monomer/dimer (M/D) equilibrium. We have proposed that the two species are functionally different and that their interconversion may regulate sugar transport via the PTS. The C-terminal Cys of Escherichia coli EI was reacted with pyrene maleimide (Han, M. K., Roseman, S., and Brand, L. (1990) J. Biol. Chem. 265, 1985-1995), and the pyrene conjugate used to characterize the M/D equilibrium by fluorescence anisotropy. The properties of unlabeled and pyrene-labeled EI are indistinguishable. Values for the apparent association constant, K'eq, and the steady-state anisotropy of the monomer and the dimer were obtained under a variety of conditions. K'eq increases 23-fold, from 0.45 x 10(5) to 10.7 x 10(5) M-1, as the temperature increases from 6 to 30 degrees C; the association appears to be entropically driven. Under all conditions tested, the K'eq for phospho-EI is 6-12-fold less than for dephospho-EI. For phospho-EI, PEP and Mg2+ induce a 240-fold increase of K'eq when both ligands are present. Based on these data, EI was preincubated under conditions that change K'eq, and the initial activities of the different species were determined at 37 degrees C in a PTS sugar phosphorylation assay with PEP as the phosphoryl donor. The initial rate depends on the M/D ratio; it is maximal when EI is 100% dimer, and zero when EI is 100% monomer. In the latter case, the rate gradually increases in the assay mixture. The results have important implications for how the PTS regulates sugar transport and other physiological phenomena.

摘要

酶I(EI)是细菌磷酸转移酶系统(PTS)的首个蛋白质,以单体/二聚体(M/D)平衡状态存在。我们提出这两种形式在功能上有所不同,且它们之间的相互转化可能通过PTS调节糖的转运。大肠杆菌EI的C末端半胱氨酸与芘马来酰亚胺发生反应(韩,M.K.,罗斯曼,S.,和布兰德,L.(1990年)《生物化学杂志》265卷,1985 - 1995页),并用芘共轭物通过荧光各向异性来表征M/D平衡。未标记的EI和芘标记的EI的性质难以区分。在多种条件下获得了表观缔合常数K'eq以及单体和二聚体的稳态各向异性值。随着温度从6℃升高到30℃,K'eq增加了23倍,从0.45×10⁵变为10.7×10⁵ M⁻¹;这种缔合似乎是由熵驱动的。在所有测试条件下,磷酸化EI的K'eq比去磷酸化EI的K'eq小6 - 12倍。对于磷酸化EI,当两种配体都存在时,PEP和Mg²⁺会使K'eq增加240倍。基于这些数据,EI在改变K'eq的条件下进行预孵育,并在37℃下以PEP作为磷酰供体的PTS糖磷酸化测定中测定不同形式的初始活性。初始速率取决于M/D比率;当EI为100%二聚体时最大,当EI为100%单体时为零。在后一种情况下,测定混合物中的速率会逐渐增加。这些结果对于PTS如何调节糖转运和其他生理现象具有重要意义。

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