Chaithanya Koppisetty Viswa, Sinha Himanshu
Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, IIT Madras, Chennai, Tamil Nadu, India.
Centre for Integrative Biology and Systems Medicine (IBSE), IIT Madras, Chennai, Tamil Nadu, India.
Yeast. 2023 Dec;40(12):616-627. doi: 10.1002/yea.3908. Epub 2023 Nov 22.
MKT1 is a pleiotropic stress response gene identified by several quantitative trait studies with MKT1 as a causal variant, contributing to growth advantage in multiple stress environments. MKT1 has been shown to regulate HO endonuclease posttranscriptionally via the Pbp1-Pab1 complex. RNA-binding protein Puf3 modulates a set of nuclear-encoded mitochondrial transcripts whose expression was found to be affected by MKT1 alleles. This study attempts to relate the MKT1 allele-derived growth advantage with the stability of Puf3 targets during stress and elucidate the roles of Pbp1 and Puf3 in this mechanism. Our results showed that the growth advantage of the MKT1 allele in cycloheximide and H O was PBP1-dependent, whereas in 4-nitroquinoline 1-oxide, the growth advantage was dependent on both PUF3 and PBP1. We compared the messenger RNA decay kinetics of a set of Puf3 targets in multiple stress environments to understand the allele-specific regulation by MKT1. In oxidative stress, the MKT1 allele modulated the differential expression of nuclear-encoded mitochondrial genes in a PBP1- and PUF3-dependent manner. Additionally, MKT1 stabilised Puf3 targets, namely, COX17, MRS1 and RDL2, in an allele and stress-specific manner. Our results showed that COX17, MRS1 and RDL2 had a stress-specific response in stress environments, with the MKT1 allele contributing to better growth; this response was both PBP1- and PUF3-dependent. Our results indicate that the common allele, MKT1 , regulates stress responses by differentially stabilising Puf3-target mitochondrial genes, which allows for the strain's better growth in stress environments.
MKT1是一个多效性应激反应基因,通过多项以MKT1为因果变异的数量性状研究得以鉴定,它在多种应激环境中有助于生长优势。研究表明,MKT1通过Pbp1-Pab1复合体在转录后水平调控HO核酸内切酶。RNA结合蛋白Puf3调节一组核编码的线粒体转录本,发现其表达受MKT1等位基因影响。本研究试图将MKT1等位基因衍生的生长优势与应激期间Puf3靶标的稳定性联系起来,并阐明Pbp1和Puf3在此机制中的作用。我们的结果表明,MKT1等位基因在环己酰亚胺和H₂O中的生长优势依赖于PBP1,而在4-硝基喹啉-1-氧化物中,生长优势则依赖于PUF3和PBP1。我们比较了一组Puf3靶标在多种应激环境中的信使RNA衰变动力学,以了解MKT1的等位基因特异性调控。在氧化应激中,MKT1等位基因以PBP1和PUF3依赖的方式调节核编码线粒体基因的差异表达。此外,MKT1以等位基因和应激特异性方式稳定Puf3靶标,即COX17、MRS1和RDL2。我们的结果表明,COX17、MRS1和RDL2在应激环境中具有应激特异性反应,MKT1等位基因有助于更好地生长;这种反应依赖于PBP1和PUF3。我们的结果表明,常见等位基因MKT1通过差异稳定Puf3靶标线粒体基因来调节应激反应,这使得该菌株在应激环境中生长得更好。