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Chemical and Biochemical Perspectives of Protein Lysine Methylation

期刊

CHEMICAL REVIEWS
卷 118, 期 14, 页码 6656-6705

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AMER CHEMICAL SOC
DOI: 10.1021/acs.chemrev.8b00008

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资金

  1. National Institute of General Medical Sciences of the National Institutes of Health of USA [R01GM096056, R01GM120570, R01GM109760]
  2. National Cancer Institute [5P30 CA008748-44]
  3. Mr. William H. Goodwin and Mrs. Alice Goodwin Commonwealth Foundation for Cancer Research
  4. Experimental Therapeutics Center of Memorial Sloan Kettering Cancer Center
  5. NATIONAL CANCER INSTITUTE [P30CA008748] Funding Source: NIH RePORTER
  6. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM120570, R01GM096056, R01GM109760] Funding Source: NIH RePORTER

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Protein lysine methylation is a distinct posttranslational modification that causes minimal changes in the size and electrostatic status of lysine residues. Lysine methylation plays essential roles in regulating fates and functions of target proteins in an epigenetic manner. As a result, substrates and degrees (free versus mono/di/tri) of protein lysine methylation are orchestrated within cells by balanced activities of protein lysine methyltransferases (PKMTs) and demethylases (KDMs). Their dysregulation is often associated with neurological disorders, developmental abnormalities, or cancer. Methyllysine-containing proteins can be recognized by downstream effector proteins, which contain methyllysine reader domains, to relay their biological functions. While numerous efforts have been made to annotate biological roles of protein lysine methylation, limited work has been done to uncover mechanisms associated with this modification at a molecular or atomic level. Given distinct biophysical and biochemical properties of methyllysine, this review will focus on chemical and biochemical aspects in addition, recognition, and removal of this posttranslational mark. Chemical and biophysical methods to profile PKMT substrates will be discussed along with classification of PKMT inhibitors for accurate perturbation of methyltransferase activities. Semisynthesis of methyllysine-containing proteins will also be covered given the critical need for these reagents to unambiguously define functional roles of protein lysine methylation.

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