• 제목/요약/키워드: yeast mutants

검색결과 144건 처리시간 0.025초

Bifurcation analysis of budding yeast cell cycle

  • Nguyen, Cuong;Yoon, Chang-No;Kim, Hak-Yong;Han, Seung-Kee
    • 한국생물정보학회:학술대회논문집
    • /
    • 한국생물정보시스템생물학회 2004년도 The 3rd Annual Conference for The Korean Society for Bioinformatics Association of Asian Societies for Bioinformatics 2004 Symposium
    • /
    • pp.50-56
    • /
    • 2004
  • Bifurcation analysis of cell cycle regulation in the budding yeast is performed basedon the mathematical model by Chen et al [Molecular biology of cell, 11:369-391, 2000]. On the bifurcation diagram, locations of both stable and unstable solutions of the nonlinear differential equations are presented by taking the mass of cell as a controlparameter. Based on the bifurcation diagram, dynamic mechanism underlying the 'start' transition, initiation of a new round of cell cycle, and the 'finish' transition, completion of cell cycle and returning back to the initial state, is discussed: the 'start' transition is a transition from a stable fixed solution for a small mass and to an oscillatory state for a large mass, and the 'finish' transition is a switching back to the stable fixed solution from the oscillatory state. To understand the role of the genes during the cell cycle regulation, bifurcation diagrams for the mutants are compared with that of the wild type.

  • PDF

Amino acid substitutions conferring cold-sensitive phenotype on the yeast MTF1 gene

  • Jang, Sei-Heon
    • Journal of Microbiology
    • /
    • 제35권3호
    • /
    • pp.228-233
    • /
    • 1997
  • The MTF1 gene of Saccharomyces cerevisiae encodes a 43 kDa MITOCHONDRIAL RNA polymerase specificity factor which recognizes mitochondrial promoters to initiate correct transcription. To better understand structure-function of the MTF1 gene as well as the transcription mechanism of mitochondrial RNA polymerase, two cold-sensitive alleles of the MTF1 mutation were isolated by plasmid shuffling method after PCR-based random mutagenesis of the MTF1 gene. The mutation sites were analyzed by nucleotide sequencing. These cs phenotype mtf1 mutants were respiration competent on the nonfermentible glycerol medium at the permissive temperature, but incompetent at 13.deg.C. The cs phenotype allele of the MTF1, yJH147, encoded an L146P replacement. The other cs allele, yJH148, contained K179E and K214M double replacements. Mutations in both alleles were in a region of Mtflp which is located between domains with amino acid sequence similarities to conserved regions 2 and 3 of bacterial s factors.

  • PDF

Development of a Novel Yeast Strain Which Ferments Soy Sauce by Protoplast Fusion

  • Lee, Eun-Ju;Kim, Jong-Kyu
    • Journal of Microbiology and Biotechnology
    • /
    • 제3권1호
    • /
    • pp.24-30
    • /
    • 1993
  • In order to develop a novel yeast which produces the charateristic aroma of soy sauce, a protoplast fusion between Zygosaccharomyces rouxii WFS4 and Torulopsis versatilis IAM 4993 was carried out. Auxotrophic mutants as selective markers were obtained from Zygosaccharomyces rouxii and Torulopsis versatilis by treatment of N-methyl-N -nitro-N-nitrosoguanidine. The conditions of the protoplast formation and the regeneration for fusion were examined. The protoplast fusion using polyethylene glycol 4000 led to the fusion frequency of $4~5{\times}10^{-7}\;cells/ml$. Among fusants, a fusant ST723-F31 presented the best results in terms of the aromaticity of fragrance, the growth pattern, the resistance against salt and the degree of growth according to pH. It makes easy to control the production and the balance of aroma components so that it gives a good flavor, shortens the fermentation period and, simplifies the preparation process when using a bioreactor into which fusant is immobilized.

  • PDF

Functional Characterization of the Madlp, a Spindle Checkpoint Protein in Fission Yeast

  • Kim, In-Gyu;Rhee, Dong-Keun;Lee, Hee-Cheul;Lee, Joo;Kim, Hyong-Bai
    • Journal of Microbiology and Biotechnology
    • /
    • 제15권4호
    • /
    • pp.694-700
    • /
    • 2005
  • Defects in the mitotic spindle or in the attachment of chromosomes to the spindle are believed to release an activated form of spindle checkpoint complex that inhibits APC-dependent ubiquitination and subsequently arrests the cell cycle at metaphase. When the spindle assembly is disrupted, the fission yeast mitotic arrest deficient (mad) mutants fail to arrest and rapidly lose viability. To enhance our understanding of the molecular mechanisms for the pathway of checkpoint function, the functional characterizations of Mad 1 p from Schizosaccharomyces pombe involved in this process have been carried out. Yeast two-hybrid and various deletion analyses of S. pombe Mad1 p reveal that the C terminus of Mad1p is critical for the binding of Mad2p and maintenance of Mad 1 p-Mad2p interaction. In addition, it was found. that the Mad1p region (residues 206-356) is essential for Mad1p-other checkpoint components. Mad1p truncating this region is sufficient to bind Mad2p but abolishes the checkpoint function, indicating that the checkpoint function is necessary for interaction of Mad 1 p-other checkpoint components. The possible functions of S. pombe Mad1p at the cell cycle checkpoint are discussed.

Identification of a Domain in Yeast Chitin Synthase 3 Interacting with Chitin Synthase 4 by Two-Hybrid Analysis

  • Park, Hyun-Sook;Shin-Jung-Choi;Nok-Hyun-Park;Chi-Hwa-Kim;Sung-Uk-Kim
    • Journal of Microbiology and Biotechnology
    • /
    • 제12권6호
    • /
    • pp.943-949
    • /
    • 2002
  • It has been proposed that chitin synthase 3 (CHS3)-nediated chitin synthesis during the vegetative cell cycle is regulated by chitin synthase 4 (CHS4) of Saccharomyces cerevisiae. To investigate direct protein-protein interaction between the coding products of these two genes, a domain of Chs3p that is responsible for interaction with Chs4p was identified, using the yeast two-hybrid system. This domain of 54 amino acids, termed MIRC3-4 (Maximum Interacting Region of Chs3p with Chs4p), is well conserved among CHS3 homologs of various fungi. Some mutations in MIRC3-4 resulted in a decrease in the enzymatic activity and chitin contents. Chs3p carrying those mutations exhibited weak interactions with Chs4p, when assayed by the yeast two-hybrid system. Surprisingly, all the mutants were sensitive to Calcofluor regardless of changes in enzymatic activities or chitin contents. This report deals with a core region in MIRC3-4 that affects the interaction with Chs4p.

효모에서 B형 간염바이러스의 내면항원의 발현과 분비에 미치는 전위내면항원의 역할 (Role of pre-C Region in the Expression and Secretion of Hepatitis B Viral Core Antigen in Yeast)

  • 신상훈;김성기;노현모
    • 미생물학회지
    • /
    • 제28권1호
    • /
    • pp.1-5
    • /
    • 1990
  • B형 간염바이러스($\alpha$dr 형)의 내면항원(HBcAg) 유전자는 두개의 단백질 합성시작 유전자 암호 ATG를 갖는다. 하나는 전위내 면항원을 다른 하나는 내면항원 유전자들 위한 ATG 부호이다. 내연항원의 발현과 전위내면항원의 역할을 연구한기 위하여 전위내면 항왼 유전자를 포함하는 것과 포함하지 않는 내연항원 유전자를 효모발현 운반체에 클j료녕 하였다. 또한 내면항원의 발현에 5 upstream 의 역할을 알아보기 위하여 여러 가지의 5’ 제거툴연변이체를 클로닝하였다. 앞에서 만들어진 플라스미드로 여러 효모 균주을 형질전환시킨 후 발헨된 내면항원과 그와 관련된 항원 HBeAg을 방사면역측정법 으로 확인하였다. 효모에서 내면항원 발현의 최적조건 허에서 가장 높은 수준의 항원은 PGK promoter 와 terminator에 내연향원 올 포함한 pGKHBc를 가진 SHY4에서 검출되었다. 전위내면부위의 존재와 우관하게 내면항원은 배양액에서는 검출되지 않고 세포내에서만 검출되었다. 이 결과는 전위내면항원이 효모 내에서 내연항왼의 분비에 영향올 주지않음을 의미한다.

  • PDF

아연 저항성 갖는 인위적으로 유도된 효모 돌연변이체의 특성 (Characterization of artificially induced zinc-tolerant yeast mutants)

  • 이상만
    • Journal of Applied Biological Chemistry
    • /
    • 제60권2호
    • /
    • pp.113-117
    • /
    • 2017
  • 생물학적정화는 미생물을 이용하여 중금속을 포함한 오염물질을 정화하는 방법이다. 효모는 다양한 중금속을 흡착하여 정화하는 능력이 우수하다고 잘 알려졌다. 따라서 본 연구는 여러 중금속 중 하나인 아연에 저항성인 큰 효모를 인위적인 돌연변이를 통해서 얻는 것에 초점을 두었다. 대조구인 효모를 1 mM 농도의 아연이 포함된 배지에서 키운 후 점차 아연의 농도를 높여 최종적으로 80 mM이 되는 지점까지 키웠으며 이 농도는 효모가 점진적 적응을 거쳤어도 성장이 불가능한 한계점 근처이며 이렇게 유도 분리된 효모를 ZnR이라 명명하였다. ZnR은 대조구 효모보다 아연에 대한 저항성이 현저히 증가되었으며 이 외에 카드뮴과 니켈에 대한 저항성도 증가되었지만 구리에 대한 저항성은 오히려 감소 되었다. ZnR이 보여준 아연에 대한 저항성 증가는 유전자 돌연변이에 의한 영구적인 획득 결과이다. 단 기간 내에 아연에 대한 저항성 큰 효모의 인위적인 유도 및 분리는 생물학적정화 연구에 유용하게 쓰여질 정보이다.

Genetic Screening for Plant Cell Death Suppressors and Their Functional Analysis in Plants

  • Yun, Dae-Jin
    • 한국생명과학회:학술대회논문집
    • /
    • 한국생명과학회 2005년도 국제학술심포지움 The 44th Annual Meeting of Korean Society for Life Science
    • /
    • pp.23-36
    • /
    • 2005
  • Bax, a mammalian pro-apoptotic member of the Bcl-2 family, induces cell death when expressed In yeast. To investigate whether .Bax expression can induce cell death in plant, we produced transgenic Arabidopsis plants that contained murine Bax cDNA under control of a glucocorticoid-inducible promoter. Transgenic plants treated with dexamethasone, a strong synthetic glucocorticoid, induced Bax accumulation and cell death, suggesting that some elements of cell death mechanism by Bax may be conserved among various orgarusms. Therefore, we developed novel yeast genetic system, and cloned several Plant Bax Inhibitors (PBIs). Here, we report the function of two PBIs In detail. PBIl is ascorbate peroxidase (sAPX). Fluorescence method of dihydrorhodamine123 oxidation revealed that expression of Bax in yeast cells generated reactive oxygen species (ROS), and which was greatly reduced by co-expression with sAPX. These results suggest that sAPX inhibits the generation of ROS by Bax, which in turn suppresses Bax-induced cell death in yeast. PBI2 encodes nucleoside diphosphate kinase (NDPK). ROS stress strongly induces the expression of the NDPK2 gene in Arabidopsis thaliana (AtNDPK2). Transgenic plants overexpressing AtNDPK2 have lower lovels of ROS than wildtype plants. Mutants lacking AtNDPK2 had higher levels of ROS than wildtype. H$_{2O2}$ treatment induced the phosphorylation of two endogenous proteins whose molecular weights suggested they are AtMPK3 and AtMPK6. In the absence of H2O2 treatment, phosphorylation of these proteins was slightly elevated in plants overexpressing AtNDPK2 but markedly decreased In the AtNDPK2 deletion mutant. Yeast two-hybrid and in vitro protein pull-down assays revealed that AtNDPK2 specifically interacts with AtMPK3 and AtMPK6. Furthermore, AtNDPK2 also enhances the MBP phosphorylation activity of AtMPK3 i'n vitro. Finally, constitutive overexpression of AtNDPK2 in Arabidopsis plants conferred an enhanced tolerance to multiple environmental stresses that elicit ROS accumulation In situ. Thus, AtNDPK2 appears to play a novel regulatory role in H2O2-mediated MAPK signaling in plants.

  • PDF

Mitophagy Improves Ethanol Tolerance in Yeast: Regulation by Mitochondrial Reactive Oxygen Species in Saccharomyces cerevisiae

  • Jing, Hongjuan;Liu, Huanhuan;Lu, Zhang;Cui, liuqing;Tan, Xiaorong
    • Journal of Microbiology and Biotechnology
    • /
    • 제30권12호
    • /
    • pp.1876-1884
    • /
    • 2020
  • Ethanol often accumulates during the process of wine fermentation, and mitophagy has critical role in ethanol output. However, the relationship between mitophagy and ethanol stress is still unclear. In this study, the expression of ATG11 and ATG32 genes exposed to ethanol stress was accessed by real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR). The result indicated that ethanol stress induced expression of the ATG11 and ATG32 genes. The colony sizes and the alcohol yield of atg11 and atg32 were also smaller and lower than those of wild type strain under ethanol whereas the mortality of mutants is higher. Furthermore, compared with wild type, the membrane integrity and the mitochondrial membrane potential of atg11 and atg32 exhibited greater damage following ethanol stress. In addition, a greater proportion of mutant cells were arrested at the G1/G0 cell cycle. There was more aggregation of peroxide hydrogen (H2O2) and superoxide anion (O2•-) in mutants. These changes in H2O2 and O2•- in yeasts were altered by reductants or inhibitors of scavenging enzyme by means of regulating the expression of ATG11 and ATG32 genes. Inhibitors of the mitochondrial electron transport chain (mtETC) also increased production of H2O2 and O2•- by enhancing expression of the ATG11 and ATG32 genes. Further results showed that activator or inhibitor of autophagy also activated or inhibited mitophagy by altering production of H2O2 and O2•. Therefore, ethanol stress induces mitophagy which improves yeast the tolerance to ethanol and the level of mitophagy during ethanol stress is regulated by ROS derived from mtETC.

Effects of Ser2 and Tyr6 Mutants of BAF53 on Cell Growth and p53-dependent Transcription

  • Lee, Jung Hwa;Lee, Ji Yeon;Chang, Seok Hoon;Kang, Mi Jin;Kwon, Hyockman
    • Molecules and Cells
    • /
    • 제19권2호
    • /
    • pp.289-293
    • /
    • 2005
  • BAF53 is an actin-related protein that shuttles between nucleus and cytoplasm. In the nucleus, it constitutes an integral component of many chromatin-modifying complexes such as the SWI/SNF, TIP60, TRRAP, and TIP48/49 complexes. BAF53 is essential for growth, but its function remains elusive. BAF53 homologues from yeast to humans have a conserved N-terminal motif, MS_(G/A)(G/A)__(V/L)YGG, which is unique to these proteins. Previously we showed that over-expression of an N-terminal deletion mutant of BAF53 ($BAF53_-{\Delta}N$) reduced the viability of HEK293 and HeLa cells. When we replaced the serine 2 and tyrosine 6 of this N-terminal motif with alanine, over-expression of the alanine-replaced BAF53 strongly impaired the growth of HEK293 cells whereas replacement with aspartate/glutamate had no effect. The alanine-replaced BAF53 mutants also stimulated p53-dependent transcription, in which the SWI/SNF and TRRAP complexes are involved. Our results demonstrate that serine 2 and tyrosine 6 play important roles in BAF53 activity.