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Pnc1p介导的烟酰胺清除作用改变了酿酒酵母中核糖体DNA沉默的表观遗传特性。

Pnc1p-mediated nicotinamide clearance modifies the epigenetic properties of rDNA silencing in Saccharomyces cerevisiae.

作者信息

McClure Julie M, Gallo Christopher M, Smith Daniel L, Matecic Mirela, Hontz Robert D, Buck Stephen W, Racette Frances G, Smith Jeffrey S

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia Health System, Charlottesville, Virginia 22908, USA.

出版信息

Genetics. 2008 Oct;180(2):797-810. doi: 10.1534/genetics.108.091090. Epub 2008 Sep 9.

Abstract

The histone deacetylase activity of Sir2p is dependent on NAD(+) and inhibited by nicotinamide (NAM). As a result, Sir2p-regulated processes in Saccharomyces cerevisiae such as silencing and replicative aging are susceptible to alterations in cellular NAD(+) and NAM levels. We have determined that high concentrations of NAM in the growth medium elevate the intracellular NAD(+) concentration through a mechanism that is partially dependent on NPT1, an important gene in the Preiss-Handler NAD(+) salvage pathway. Overexpression of the nicotinamidase, Pnc1p, prevents inhibition of Sir2p by the excess NAM while maintaining the elevated NAD(+) concentration. This growth condition alters the epigenetics of rDNA silencing, such that repression of a URA3 reporter gene located at the rDNA induces growth on media that either lacks uracil or contains 5-fluoroorotic acid (5-FOA), an unusual dual phenotype that is reminiscent of telomeric silencing (TPE) of URA3. Despite the similarities to TPE, the modified rDNA silencing phenotype does not require the SIR complex. Instead, it retains key characteristics of typical rDNA silencing, including RENT and Pol I dependence, as well as a requirement for the Preiss-Handler NAD(+) salvage pathway. Exogenous nicotinamide can therefore have negative or positive impacts on rDNA silencing, depending on the PNC1 expression level.

摘要

Sir2p的组蛋白去乙酰化酶活性依赖于NAD⁺,并受到烟酰胺(NAM)的抑制。因此,酿酒酵母中由Sir2p调控的过程,如基因沉默和复制性衰老,易受细胞内NAD⁺和NAM水平变化的影响。我们已经确定,生长培养基中高浓度的NAM通过一种部分依赖于NPT1的机制提高细胞内NAD⁺浓度,NPT1是普赖斯-汉德勒NAD⁺补救途径中的一个重要基因。烟酰胺酶Pnc1p的过表达可防止过量NAM对Sir2p的抑制,同时维持升高的NAD⁺浓度。这种生长条件改变了rDNA沉默的表观遗传学,使得位于rDNA处的URA3报告基因的抑制导致在缺乏尿嘧啶或含有5-氟乳清酸(5-FOA)的培养基上生长,这是一种不寻常的双重表型,让人联想到URA3的端粒沉默(TPE)。尽管与TPE有相似之处,但修饰后的rDNA沉默表型并不需要SIR复合体。相反,它保留了典型rDNA沉默的关键特征,包括对RENT和Pol I的依赖性,以及对普赖斯-汉德勒NAD⁺补救途径的需求。因此,外源性烟酰胺对rDNA沉默可能有负面或正面影响,这取决于PNC1的表达水平。

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