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Role of Mono- and Divalent Ions in Peptide Glu-Asp-Arg-DNA Interaction.

Silanteva IA, Komolkin AV, Morozova EA, Vorontsov-Velyaminov PN, Kasyanenko NA · 2019 · The journal of physical chemistry. B; 2019 Mar

In vitroEnglish abstractSource linked
This is Molekul’s research summary, not the original publication. Educational information only, not medical advice. Seek qualified healthcare help for medical conditions.

Study findings

EDR interacted with DNA in the tested systems; magnesium promoted the interaction. The authors described partial entry into the major groove and contacts with guanine atoms.

Population and setting
Purified DNA, spectroscopy, NMR and molecular-dynamics experiments
Evidence type
In vitro
Preparation
See the original report; formulation details require verification.
Source language
eng
Title source
Title as recorded in the linked source or index. A separate original-language title has not been transcribed unless shown above.

Study limitations

  • Biophysical interaction does not establish targeted gene regulation in the living human brain.
  • This is mechanistic research, not clinical efficacy or safety evidence.

Publication counts are not counts of independent trials. Reviews, translations and reports sharing participants may overlap. Findings apply to the studied preparation, population and endpoints.

Source access and review scope

Indexed publication and abstract checked; full methods and risk of bias have not been independently assessed.

Recorded source-check date: 2026-10-06. This date does not imply a completed systematic review.

Open original source or index record ↗

DOI: 10.1021/acs.jpcb.8b10359

Citation and original source

Original source: Silanteva IA, Komolkin AV, Morozova EA, Vorontsov-Velyaminov PN, Kasyanenko NA. Role of Mono- and Divalent Ions in Peptide Glu-Asp-Arg-DNA Interaction. The journal of physical chemistry. B; 2019 Mar 2019.

Molekul research summary: https://molekul.io/research/pinealon-30762356. Cite the original publication for its findings and this page when referring to Molekul’s summary or evidence appraisal.

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Related compound profiles

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