Диссертация (1145883), страница 30
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von der, Tuite M. F. Regulated translational bypass of stop codonsin yeast // Trends in microbiology. — 2007. — Vol. 15, no. 2. — Pp. 78–86.128. Haase S. B., Reed S. I. Improved flow cytometric analysis of the buddingyeast cell cycle // Cell Cycle. — 2002. — Vol. 1, no. 2. — Pp.
117–121.129. Haber J. E., George J. P. A mutation that permits the expression of normallysilent copies of mating-type information in Saccharomyces cerevisiae //Genetics. — 1979. — Vol. 93, no. 1. — Pp. 13–35.130. Halfmann R., Jarosz D. F., Jones S. K., Chang A., Lancaster A. K., LindquistS. Prions are a common mechanism for phenotypic inheritance in wildyeasts // Nature. — 2012a.
— Vol. 482, no. 7385. — Pp. 363–8.131. Halfmann R., Wright J. J. R., Alberti S., Lindquist S., Rexach M. Prionformation by a yeast GLFG nucleoporin // Prion. — 2012b. — Vol. 6, no.4. — Pp. 391–9.158132. Harrison P. M.,biasinGerstein M. A method to assess compositionalbiologicalsequencesanditsapplicationtoprion-likeglutamine/asparagine-rich domains in eukaryotic proteomes // Genomebiology. — 2003. — Vol.
4, no. 6. — R40.133. Hartwell L., Dutcher S., Wood J., Garvik B. The fidelity of mitoticchromosome reproduction in S. cerevisiae // Rec Adv Yeast Mol Biol. —1982. — Vol. 1. — Pp. 28–38.134. Hatin I., Fabret C., Namy O., Decatur W. A., Rousset J.-P. Fine-tuning oftranslation termination efficiency in Saccharomyces cerevisiae involves twofactors in close proximity to the exit tunnel of the ribosome // Genetics. —2007. — Vol. 177, no. 3. — Pp.
1527–1537.135. Hatin I., Fabret C., Rousset J.-P., Namy O. Molecular dissection oftranslation termination mechanism identifies two new critical regions ineRF1 // Nucleic acids research. — 2009. — Vol. 37, no. 6. — Pp. 1789–98.136. Hawthorne D., Mortimer R. Genetic mapping of nonsense suppressors inyeast // Genetics. — 1968. — Vol.
60, no. 4. — P. 735.137. Hawthorne D. C. UGA mutations and UGA suppressors in yeast //Biochimie. — 1976. — Vol. 58, no. 1. — Pp. 179–182.138. Hawthorne D. C., Leupold U. Suppressors in yeast // Current topics inmicrobiology and immunology. — Springer, 1974. — Pp. 1–47.139. Hibbs M. A., Hess D. C., Myers C. L., Huttenhower C., Li K., TroyanskayaO. G. Exploring the functional landscape of gene expression: directed searchof large microarray compendia // Bioinformatics. — 2007. — Vol. 23, no.20. — Pp.
2692–9.140. Hinnebusch A. G. Translational regulation of GCN4 and the general aminoacid control of yeast // Annual Review of Microbiology. — 2005. — Vol. 59,no. 1. — Pp. 407–450.141. Hinnebusch A. G. Molecular mechanism of scanning and start codonselection in eukaryotes // Microbiology and molecular biology reviews :MMBR. — 2011. — Sept. — Vol. 75, no. 3. — Pp.
434–67.142. Holt C., Yandell M. MAKER2: an annotation pipeline and genome-databasemanagement tool for second-generation genome projects // BMCbioinformatics. — 2011. — Vol. 12, no. 1. — P. 491.159143. Hongay C., Jia N., Bard M., Winston F. Mot3 is a transcriptional repressorof ergosterol biosynthetic genes and is required for normal vacuolar functionin Saccharomyces cerevisiae // The EMBO journal.
— 2002. — Vol. 21, no.15. — Pp. 4114–4124.144. Hose J., Yong C. M., Sardi M., Wang Z., Newton M. A., Gasch A. P. Dosagecompensation can buffer copy-number variation in wild yeast // eLife. —2015. — Vol. 4. — e05462.145. Hothorn T., Hornik K., Wiel M. A. van de, Zeileis A. Implementing a classof permutation tests: The coin package // Journal of Statistical Software. —2008a. — Vol.
28, no. 8.146. Hothorn T., Bretz F., Westfall P. Simultaneous inference in generalparametric models // Biometrical Journal. — 2008b. — Vol. 50, no. 3. —Pp. 346–363.147. Huang V. J., Stein K. C., True H. L. Spontaneous variants of the [RNQ+ ]prion in yeast demonstrate the extensive conformational diversity possiblewith prion proteins // PLoS ONE / ed. by J.
Ma. — 2013. — Vol. 8, no.10. — e79582.148. Huber A., French S. L., Tekotte H., Yerlikaya S., Stahl M., PerepelkinaM. P., Tyers M., Rougemont J., Beyer A. L., Loewith R. Sch9 regulatesribosome biogenesis via Stb3, Dot6 and Tod6 and the histone deacetylasecomplex RPD3L // The EMBO journal. — 2011. — Vol. 30, no. 15. —Pp.
3052–3064.149. Hughes J. D., Estep P. W., Tavazoie S., Church G. M. Computationalidentification of cis-regulatory elements associated with groups offunctionally related genes in Saccharomyces cerevisiae // Journal ofmolecular biology. — 2000. — Vol. 296, no.
5. — Pp. 1205–1214.150. Inge-Vechtomov S., Zhouravleva G., Philippe M. Eukaryotic release factors(eRFs) history // Biology of the Cell.— 2003.— Vol. 95, 3-4.—Pp. 195–209.151. Inge-Vechtomov S., Ilmov E., Mironova L., Tikchomirova V., VolkovK., Zadorsky S. Yeast approach to protein “prionization”: SUP35-[PSI]system // Prions and Brain Diseases in Animals and Humans.
— Springer,1998. — Pp. 99–109.160152. Inoue H., Nojima H., Okayama H. High efficiency transformation ofEscherichia coli with plasmids // Gene. — 1990. — Vol. 96, no. 1. —Pp. 23–28.153. Ishiguro J., Ono B.-I., Masurekar M., McLaughlin C. S., Sherman F. Alteredribosomal protein S11 from the SUP46 suppressor of yeast // Journal ofmolecular biology. — 1981. — Vol. 147, no. 3.
— Pp. 391–397.154. IUPAC-IUB JCBN. IUPAC-IUB Joint Commission on BiochemicalNomenclature (JCBN). Nomenclature and symbolism for amino acids andpeptides. Recommendations 1983 // The Biochemical journal. — 1984. —Vol. 219, no. 2. — Pp. 345–73.155. Jones G. W., Song Y., Masison D. C. Deletion of the Hsp70 chaperone geneSSB causes hypersensitivity to guanidine toxicity and curing of the [PSI + ]prion by increasing guanidine uptake in yeast // Molecular Genetics andGenomics.
— 2003. — Vol. 269, no. 3. — Pp. 304–311.156. Jones G., Stalker J., Humphray S., West A. A systematic library forcomprehensive overexpression screens in Saccharomyces cerevisiae //Nature methods. — 2008. — Vol. 5, no. 3. — Pp. 239–241.157. Jorgensen P., Nishikawa J. L., Breitkreutz B.-J., Tyers M. Systematicidentification of pathways that couple cell growth and division in yeast //Science. — 2002. — Vol.
297, no. 5580. — Pp. 395–400.158. Juliani M. H., Costa S., Bacila M. Non-chromosomal respiratory deficientmutants induced by guanidine hydrochloride in Saccharomyces cerevisiae //Biochemical and Biophysical Research Communications. — 1973. — Vol.53, no. 2. — Pp. 531–538.159. Jung G., Jones G., Masison D. C. Amino acid residue 184 of yeast Hsp104chaperone is critical for prion-curing by guanidine, prion propagation, andthermotolerance // PNAS U.
S. A. — 2002. — Vol. 99, no. 15. —Pp. 9936–41.160. Kaiser C., Michaelis S., Mitchell A. Methods in Yeast Genetics. — 1994Edition. — NY : CSHL PRESS, 1994. — P. 234.161. Kaiser C. J., Grötzinger S. W., Eckl J. M., Papsdorf K., Jordan S., RichterK. A network of genes connects polyglutamine toxicity to ploidy control inyeast // Nature communications. — 2013. — Vol. 4.
— P. 1571.161162. Kapp L. D., Lorsch J. R. The molecular mechanics of eukaryotictranslation // Annual review of biochemistry. — 2004. — Vol. 73, no.1. — Pp. 657–704.163. Kasahara K., Ohtsuki K., Ki S., Aoyama K., Takahashi H., KobayashiT., Shirahige K., Kokubo T. Assembly of regulatory factors on rRNAand ribosomal protein genes in Saccharomyces cerevisiae // Molecular andcellular biology.
— 2007. — Vol. 27, no. 19. — Pp. 6686–6705.164. Kervestin S., Jacobson A. NMD: a multifaceted response to prematuretranslational termination // Nature reviews Molecular cell biology.—2012. — Vol. 13, no. 11. — Pp. 700–712.165. Khoshnevis S., Gross T., Rotte C., Baierlein C., Ficner R., Krebber H. Theiron–sulphur protein RNase L inhibitor functions in translation termination //EMBO reports. — 2010. — Vol. 11, no. 3.
— Pp. 214–219.166. Kiktev D., Moskalenko S., Murina O., Baudin-Baillieu A., Rousset J.-P.,Zhouravleva G. The paradox of viable sup45 STOP mutations: a necessaryequilibrium between translational readthrough, activity and stability of theprotein // Molecular Genetics and Genomics. — 2009. — Vol. 282, no.
1. —Pp. 83–96.167. Kim S. Y., Craig E. A. Broad sensitivity of Saccharomyces cerevisiaelacking ribosome-associated chaperone Ssb or Zuo1 to cations, includingaminoglycosides // Eukaryotic Cell. — 2005. — Vol. 4, no. 1. — Pp. 82–89.168. King C.-y., Diaz-Avalos R. Protein-only transmission of three yeast prionstrains.169. Kobayashi O., Suda H., Ohtani T., Sone H. Molecular cloning and analysisof the dominant flocculation gene FLO8 from Saccharomyces cerevisiae //Molecular & General Genetics.