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结构环境决定了血红素反应基序的生物学意义以及热休克蛋白90(Hsp90)在血红素激活蛋白Hap1激活过程中的作用。

Structural environment dictates the biological significance of heme-responsive motifs and the role of Hsp90 in the activation of the heme activator protein Hap1.

作者信息

Lee Hee Chul, Hon Thomas, Lan Changgui, Zhang Li

机构信息

Department of Biochemistry, NYU School of Medicine, New York, New York 10016, USA.

出版信息

Mol Cell Biol. 2003 Aug;23(16):5857-66. doi: 10.1128/MCB.23.16.5857-5866.2003.

Abstract

Heme-responsive motifs (HRMs) mediate heme regulation of diverse regulatory proteins. The heme activator protein Hap1 contains seven HRMs, but only one of them, HRM7, is essential for heme activation of Hap1. To better understand the molecular basis underlying the biological significance of HRMs, we examined the effects of various mutations of HRM7 on Hap1. We found that diverse mutations of HRM7 significantly diminished the extent of Hap1 activation by heme and moderately enhanced the interaction of Hap1 with Hsp90. Furthermore, deletions of nonregulatory sequences completely abolished heme activation of Hap1 and greatly enhanced the interaction of Hap1 with Hsp90. These results show that the biological functions of HRMs and Hsp90 are highly sensitive to structural changes. The unique role of HRM7 in heme activation stems from its specific structural environment, not its mere presence. Likewise, the role of Hsp90 in Hap1 activation is dictated by the conformational or structural state of Hap1, not by the mere strength of Hap1-Hsp90 interaction. It appears likely that HRM7 and Hsp90 act together to promote the Hap1 conformational changes that are necessary for Hap1 activation. Such fundamental mechanisms of HRM-Hsp90 cooperation may operate in diverse regulatory systems to mediate signal transduction.

摘要

血红素反应基序(HRMs)介导多种调节蛋白的血红素调节。血红素激活蛋白Hap1包含七个HRMs,但其中只有一个,即HRM7,对Hap1的血红素激活至关重要。为了更好地理解HRMs生物学意义背后的分子基础,我们研究了HRM7的各种突变对Hap1的影响。我们发现,HRM7的多种突变显著降低了血红素对Hap1的激活程度,并适度增强了Hap1与Hsp90的相互作用。此外,非调节序列的缺失完全消除了Hap1的血红素激活,并大大增强了Hap1与Hsp90的相互作用。这些结果表明,HRMs和Hsp90的生物学功能对结构变化高度敏感。HRM7在血红素激活中的独特作用源于其特定的结构环境,而非仅仅是其存在。同样,Hsp90在Hap1激活中的作用取决于Hap1的构象或结构状态,而非仅仅取决于Hap1-Hsp90相互作用的强度。HRM7和Hsp90似乎共同作用,促进Hap1激活所必需的Hap1构象变化。HRM-Hsp90合作的这种基本机制可能在多种调节系统中发挥作用,以介导信号转导。

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