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Michael W Linscheid

Publications and source records attributed to Michael W Linscheid.

3 recordsLinked to original sources

The gas-phase chemistry of cis-diammineplatinum(II) complexes: a joint experimental and theoretical study.

Prior to reactions with DNA, the anticancer drug cisplatin [Pt(II)(NH(3))(2)Cl(2)] forms a series of solvolysis intermediates by successive replacement of the chloro ligands by water or hydroxyl groups. The bonding of water to Pt(II) is weak, and it is easily substituted by donor ligands present in the solution, for example, amines or alcohols. We studied such compounds using high-resolution electrospray mass spectrometry with a linear ion trap and DFT computations. This combination allows for the first time a detailed description of the reactions initiated by the central atom of the complexes. Positively charged cisplatin adducts with primary and secondary alcohols ([Pt(II)(NH(3))(2)(ROH)Cl](+)) show unexpected reactions when fragmented in a linear ion trap. Either water loss is accompanied by formation of the corresponding carbene complex, or loss of the corresponding aldehyde/ketone leads to the formation of the complex [Pt(NH(3))(2)(H(2))Cl](+). Complete loss of the alcohol ligand is not observed for kinetic reasons. A detailed investigation by DFT and molecular dynamics for the cisplatin/methanol complex [Pt(II)(NH(3))(2)(CH(3)OH)Cl](+) allowed identification of the reaction mechanisms leading to the observed fragmentation patterns. The initial step for both fragmentation pathways is activation of the alpha-CH bond and subsequent H transfer within the complex. Direct activation of the OH or CO bond is less favorable. Ligands bound to the Pt(II) center such as the chloro ligand can directly catalyze the reaction by intermediate binding of H atoms. Upon collision activation, adducts without an alpha-H atom such as [Pt(NH(3))(2){(CH(3))(3)COH}Cl](+) show loss of water or the corresponding alkene.

Alcohols↗

Transcriptional activity of the host-interaction locus and a putative pilin gene of Bdellovibrio bacteriovorus in the predatory life cycle.

Bdellovibrio bacteriovorus is a predatory bacterium that grows and replicates within the periplasm of a large variety of Gram-negative bacteria. So far, the host-interaction locus (hit locus) is the only genetic locus that is implicated in the obligate predatory lifestyle. Sequence analysis revealed that upstream of the hit locus, the genomic regions of the two obligate predatory B. bacteriovorus-type strains HD100 and HD114 encode genes for pilus formation. As pili might be involved in the invasion process, the transcriptional activity of the hit locus and of a putative pilin gene (flp1) of the pilus cluster were studied in synchronized cultures of B. bacteriovorus with Escherichia coli K-12 as prey bacteria. Stages of the life cycle were monitored with scanning electronic microscopy and transcriptional analyses were performed by quantitative reverse transcription polymerase chain reaction. Our study revealed an increased expression level of the putative hit and flp1 genes in the attack phase of B. bacteriovorus, whereas the transcriptional activity significantly decreased during the intracellular replication phase.

Amino Acid Sequence↗