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1.
A QSAR model for the prediction of CNS activity was developed and validated based on data from an in‐house database of “drug‐like” compounds. The model has demonstrated its applicability for novel chemical structures and its usefulness for the design of CNS‐focused compound libraries.

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2.
Two series of dimeric ligands for a G‐protein‐coupled receptor were prepared that differ by the interconnecting spacer system. Biological evaluation revealed that both dimeric series exhibit unique biological properties relative to their monomeric counterparts.

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3.
Proteins with a high propensity to aggregate can be largely prevented from doing so with surprisingly small changes to their primary structure. By using a combination of rational design and quantitative measurements of aggregation rates, we show that adding a single charge in specific “gatekeeper” regions is sufficient to change the timescale for amyloid fibril growth from minutes to weeks, thereby dramatically reducing the efficiency of this process.

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4.
The role of β‐aminovinyl ketones as synthetic intermediates has been well categorised, but recent developments have shown an interesting array of applications and new chemotherapeutic potential, both in the preparation of biologically active heterocycles and as pharmacophores in their own right.

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5.
More than the sum of its parts : The seeds of Nigella sativa have been a traditional herbal remedy for ailments such as asthma, diarrhea, and cancer. Their essential oil is rich in polyunsaturated fatty acids and thymoquinone. By linking them covalently, a tremendous boost in anticancer activity can be achieved in resistant tumor cells.

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6.
Playing polo : Small‐molecule inhibitors of polo‐like kinase 1 are mostly ATP‐competitive, and thus face enormous specificity hurdles. This communication explores the concept of inhibiting Plk1 with a small‐molecule inhibitor of the protein–protein interactions required for Plk1 function.

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7.
FRETting about MBP : Position‐specific incorporation of fluorescent groups is a useful method for analysis of the functions and structures of proteins. Here we demonstrate that position‐specific incorporation of fluorescent non‐natural amino acids in response to expanded codons enables us to detect ligand‐binding activity of maltose‐binding protein (MBP) through fluorescence resonance energy transfer (FRET) and ligand‐dependent fluorescence quenching.

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8.
Bivalent modulators of P‐glycoprotein : A small library of flavonoid homodimers and heterodimers was synthesized, and their in vitro activity in reversing paclitaxel resistance was evaluated along with structure–activity relationships. SAR trends indicate that flavonoid dimers with nonpolar, hydrophobic, less bulky substituents generally show more potent reversing activity. This will help guide future efforts in the search for more potent compounds.

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9.
Combretastatin A‐4 derivatives : A series of combretastatin A‐4‐derived 1‐benzyl‐4,5,6‐trimethoxyindoles was designed and prepared as a novel class of potent antimitotic agents acting through the colchicine binding site on the microtubule.

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10.
A series of arotinoids with a central benzofuran or naphthofuran ring structure were synthesized by an efficient three‐step process. Most of these 3‐substituted naphthofuran arotinoids are potent agonists of the retinoic acid receptor (RAR) subtypes, with activities in the nanomolar range.

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11.
A series of DNA methyltransferase 1 (DNMT1) inhibitors were modeled by docking and molecular dynamics studies to rationalize their activity. Our findings will be valuable in guiding research efforts toward the rational design and virtual screening of novel DNMT inhibitors.

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12.
The cover picture shows three views of a vitamin B12–insulin conjugate bound to transcobalamin II, docked in the insulin receptor (IR). This study reveals how the structure of an orally deliverable insulin changes in solution after vitamin B12 conjugation and its effect on IR binding capacity. The results demonstrate that chemical modification of insulin by linking relatively large pendant groups does not interfere with IR recognition. For more details, see the Full Paper by T. J. Fairchild, R. P. Doyle, et al. on p. 421 ff.

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13.
Histamine mediates its various functions through four histamine receptor subtypes. The H3 subtype is mainly found in the central nervous system, where it modulates the release of histamine and other neurotransmitters, whereas the H4 subtype plays a crucial role in inflammatory and immunological processes. Herein, the synthesis and characterization of a conveniently accessible tritiated radioligand is reported that proved to be a versatile pharmacological probe.

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14.
Asborin , the carbaborane analogue of aspirin, was obtained by a high‐yield synthetic procedure and proved to be an active cyclooxygenase (COX) inhibitor (H: white, B: beige, C: gray, O: blue).

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15.
Molecules that inhibit store‐operated calcium entry (SOCE) are potentially useful immunomodulating agents. The identification of proteins involved in this pathway may further enable the identification of selective inhibitors. Herein we document some examples of the small‐molecule inhibitors of SOCE that have been reported to date. We also describe methods that were used to characterize the mechanism of action of these inhibitors.

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16.
The cover picture shows some commonly used antibiotics with heterocyclic side chains inhibit peroxidase‐catalyzed iodination of L‐tyrosine upon hydrolysis by the bacterial enzyme metallo‐beta‐lactamase. This suggests that the production of metallo‐beta‐lactamase and subsequent hydrolysis of antibiotics would affect thyroid activity. For more details, see the Communication by A. Tamilselvi and G. Mugesh on p. 512 ff.

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17.
What parameters determine promiscuity? A compound's potential for promiscuity (pharmacological activity at multiple targets) may be influenced by molecular parameters such as ionization state, lipophilicity, and molecular weight. In an analysis of recent Roche compounds we found that a positive charge is an important determinant for potential promiscuity; aminergic activity was found to be the main reason for overt promiscuity.

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18.
Antifolate labels : Molecules that bind specifically and with high affinity to proteins can be developed into powerful tools for chemical biology. The interaction between substituted 5‐benzyl pyrimidines and dihydrofolate reductase can be exploited for chemically labeling fusion proteins in mammalian cells.

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19.
Powerful pyrene probes : Two kinds of pyrene‐labeled oligonucleotides (HNA‐ and RNA‐skeleton probes) were explored. The enhanced fluorescence intensity in the monomer region and the disappearance of aggregate/excimer emission in duplexes has been successfully used to detect the hybridization of oligonucleotides.

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20.
Every little drop : The KD values of angiogenin (ANG) interactions as shown by FRET analysis of thousands of pL‐sized droplets agree with data from bulk‐fluorescence polarization measurements. Importantly, the use of fluorophores does not affect the activity of ANG or the binding of anti‐ANG antibodies to ANG. Such an experimental platform could be applied to the high‐throughput analysis of protein–protein interactions.

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