Anderson J V, Haskell D W, Guy C L
Department of Environmental Horticulture, University of Florida, Gainesville 32611-0512.
Plant Physiol. 1994 Apr;104(4):1371-80. doi: 10.1104/pp.104.4.1371.
A constitutively expressed class of 70-kD heat-shock cognate (HSC70) proteins from spinach leaf tissue was purified based on their affinity for ATP-agarose. The affinity-purified spinach proteins were resolved into at least three different forms on two-dimensional gels. Under native conditions, and iN the absence of ATP, the affinity-purified proteins were separated into three molecular mass classes by gel-filtration chromatography; a monomer of 85 kD, a multimer of 280 kD, and a large molecular mass oligomer of > 650 kD. All molecular mass forms contained a major protein that migrated at 79 kD on sodium dodecyl sulfate-polyacrylamide gels. N-terminal sequencing of the 79-kD purified monomer showed the highest homology to the endoplasmic reticulum-luminal HSC70. Addition of Mg-ATP to monomeric HSC70 did not alter its migration during gel filtration. Addition of Mg-ATP to the dimer converted it to monomer and oligomeric forms, whereas the presence of ATP converted a fraction of the large molecular mass oligomeric form of HSC70 to dimeric and monomeric forms. Only the large molecular mass oligomeric HSC70 appears to autophosphorylate in vitro in the presence of [gamma-32P]-ATP. Dimers and monomers can bind ATP by a nonhydrolytic mechanism and undergo a conformational change in the presence of Mg-ATP. In this paper we discuss the effects that ATP may have on the regulation of plant HSC70.
基于菠菜叶组织中一类组成型表达的70-kD热休克同源蛋白(HSC70)对ATP-琼脂糖的亲和力,对其进行了纯化。在二维凝胶上,亲和纯化的菠菜蛋白可分辨出至少三种不同形式。在天然条件下且不存在ATP时,通过凝胶过滤色谱法将亲和纯化的蛋白分离为三个分子量类别;一个85 kD的单体、一个280 kD的多聚体以及一个分子量大于650 kD的大分子质量寡聚体。所有分子量形式都包含一种主要蛋白质,该蛋白质在十二烷基硫酸钠-聚丙烯酰胺凝胶上迁移至79 kD处。对79-kD纯化单体进行N端测序显示,其与内质网腔HSC70的同源性最高。向单体HSC70中添加Mg-ATP不会改变其在凝胶过滤过程中的迁移情况。向二聚体中添加Mg-ATP会将其转化为单体和寡聚体形式,而ATP的存在会将一部分大分子质量寡聚体形式的HSC70转化为二聚体和单体形式。只有大分子质量寡聚体HSC70似乎在[γ-32P]-ATP存在下于体外进行自磷酸化。二聚体和单体可以通过非水解机制结合ATP,并在Mg-ATP存在下发生构象变化。在本文中,我们讨论了ATP可能对植物HSC70调控产生的影响。