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克氏锥虫70-kDa热休克蛋白的分子与生化比较

Molecular and biochemical comparison of the 70-kDa heat shock proteins of Trypanosoma cruzi.

作者信息

Olson C L, Nadeau K C, Sullivan M A, Winquist A G, Donelson J E, Walsh C T, Engman D M

机构信息

Department of Pathology, Northwestern University Medical School, Chicago, Illinois 60611.

出版信息

J Biol Chem. 1994 Feb 4;269(5):3868-74.

PMID:8106432
Abstract

An analysis of the genetic organization, regulated expression and biochemical properties of the cytoplasmic/nuclear (hsp70) and mitochondrial (mtp70) 70-kDa heat shock proteins of Trypanosoma cruzi is presented. The two proteins are encoded by tandemly arranged gene families that are located on different chromosomes. Both are mildly heat-inducible but have different optimal temperatures for expression. During the switch from proliferation to differentiation that occurs during the growth of T. cruzi in culture, the hsp70 level decreases dramatically while the mtp70 level falls only slightly. The subcellular locations of the two proteins differ during heat shock. While mtp70 remains associated with the kinetoplast at all temperatures, hsp70 becomes more concentrated in the nucleus at higher temperatures. Biochemical analysis of hsp70 and mtp70 revealed both to be potent ATPases. Each protein binds ATP with a Km of about 70 microM and hydrolyzes ATP with a kcat of about 100 min-1, 100 times greater than the kcat of human hsp70. The high ATPase activities of hsp70 and mtp70 are further stimulated by incubation with peptides, suggesting that these trypanosome heat shock proteins have protein chaperone activity. Finally, mtp70, but not hsp70, was found to possess autophosphorylation activity in vitro, a property that it shares with prokaryotic hsp70. These findings demonstrate unique cellular and biochemical characteristics of T. cruzi mtp70 and hsp70 that suggest that they play distinct physiologic roles in the biology of the cell.

摘要

本文对克氏锥虫细胞质/细胞核(hsp70)和线粒体(mtp70)的70 kDa热休克蛋白的基因组织、调控表达及生化特性进行了分析。这两种蛋白由位于不同染色体上的串联排列基因家族编码。二者均为轻度热诱导型,但具有不同的最佳表达温度。在克氏锥虫培养生长过程中从增殖向分化转变期间,hsp70水平急剧下降,而mtp70水平仅略有下降。热休克期间,这两种蛋白的亚细胞定位不同。在所有温度下,mtp70都与动基体相关联,而hsp70在较高温度下在细胞核中更为集中。对hsp70和mtp70的生化分析表明,二者均为强效ATP酶。每种蛋白结合ATP的Km约为70 μM,水解ATP的kcat约为100 min-1,比人类hsp70的kcat高100倍。与肽一起孵育可进一步刺激hsp70和mtp70的高ATP酶活性,表明这些锥虫热休克蛋白具有蛋白伴侣活性。最后,发现mtp70而非hsp70在体外具有自磷酸化活性,这是它与原核hsp70共有的特性。这些发现证明了克氏锥虫mtp70和hsp70独特的细胞和生化特征,表明它们在细胞生物学中发挥着不同的生理作用。

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