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多瘤病毒DnaJ结构域的遗传分析。

Genetic analysis of the polyomavirus DnaJ domain.

作者信息

Whalen Kerry A, de Jesus Rowena, Kean Jennifer A, Schaffhausen Brian S

机构信息

Department of Biochemistry, Tufts University School of Medicine, Boston, MA 02111, USA.

出版信息

J Virol. 2005 Aug;79(15):9982-90. doi: 10.1128/JVI.79.15.9982-9990.2005.

Abstract

Polyomavirus T antigens share a common N-terminal sequence that comprises a DnaJ domain. DnaJ domains activate DnaK molecular chaperones. The functions of J domains have primarily been tested by mutation of their conserved HPD residues. Here, we report detailed mutagenesis of the polyomavirus J domain in both large T (63 mutants) and middle T (51 mutants) backgrounds. As expected, some J mutants were defective in binding DnaK (Hsc70); other mutants retained the ability to bind Hsc70 but were defective in stimulating its ATPase activity. Moreover, the J domain behaves differently in large T and middle T. A given mutation was twice as likely to render large T unstable as it was to affect middle T stability. This apparently arose from middle T's ability to bind stabilizing proteins such as protein phosphatase 2A (PP2A), since introduction of a second mutation preventing PP2A binding rendered some middle T J-domain mutants unstable. In large T, the HPD residues are critical for Rb-dependent effects on the host cell. Residues Q32, A33, Y34, H49, M52, and N56 within helix 2 and helix 3 of the large T J domain were also found to be required for Rb-dependent transactivation. Cyclin A promoter assays showed that J domain function also contributes to large T transactivation that is independent of Rb. Single point mutations in middle T were generally without effect. However, residue Q37 is critical for middle T's ability to form active signaling complexes. The Q37A middle T mutant was defective in association with pp60(c-src) and in transformation.

摘要

多瘤病毒T抗原共享一个包含DnaJ结构域的共同N端序列。DnaJ结构域激活DnaK分子伴侣。J结构域的功能主要通过其保守的HPD残基的突变来测试。在这里,我们报告了在大T(63个突变体)和中T(51个突变体)背景下对多瘤病毒J结构域的详细诱变。正如预期的那样,一些J突变体在结合DnaK(Hsc70)方面存在缺陷;其他突变体保留了结合Hsc70的能力,但在刺激其ATP酶活性方面存在缺陷。此外,J结构域在大T和中T中的行为不同。给定的突变使大T不稳定的可能性是影响中T稳定性的两倍。这显然是由于中T结合稳定蛋白如蛋白磷酸酶2A(PP2A)的能力,因为引入第二个阻止PP2A结合的突变会使一些中T J结构域突变体不稳定。在大T中,HPD残基对于Rb对宿主细胞的依赖性作用至关重要。还发现大T J结构域的螺旋2和螺旋3内的残基Q32、A33、Y34、H49、M52和N56是Rb依赖性反式激活所必需的。细胞周期蛋白A启动子分析表明,J结构域功能也有助于大T的反式激活,且不依赖于Rb。中T中的单点突变通常没有影响。然而,残基Q37对于中T形成活性信号复合物的能力至关重要。Q37A中T突变体在与pp60(c-src)结合和转化方面存在缺陷。

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