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SIDD

Chemical reaction

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Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionMay 24, 2025
Entity authorityQ7390291
Source-derived summary

In bioinformatics, SIDD is short for Stress-Induced (DNA) Duplex Destabilization. It is the melting of the DNA which is not induced by a promoter, but purely by the superhelical (also called topological) nature of the DNA. It is based on a statistical mechanics treatment of DNA made by Craig J. Benham and Richard M. Fye. This stress-induced unwinding was shown to coincide with DNA promoter regions of bacterial plasmids and may direct the global response of cells to changes in their external environments by affecting which genes are transcribed.

The computational model itself calculates the probability profile of a given base-pair sequence of DNA to denature, as well as the energy profile of sequence. It is through this energy profile that the technique derives its name: base pairs at lower energies are less stable (destabilized) than those of higher energies and more likely to denature. Stress related to the linking number (specifically its twist component) of the DNA causes the destabilization of the double helix (duplex); hence, Stress-Induced Duplex Destabilization.

Applet

Craig Benham has also developed an online applet that calculates the SIDD profile of input DNA sequences. It also shows the probability profile for the given base pair sequence to denature, as well as counting the number and location of denaturation runs.

As the full SIDD computational method takes up a large amount of machine processing time (due to its complex nature), an accelerated algorithm proposed by Benham, et al., in their 1999 paper is implemented in the WebSIDD algorithm. This accelerated algorithm truncates the partition function by ignoring contributions of certain conformational states.

Editorial summary

This brief starts where responsible research should: with the source description of “SIDD” as chemical reaction. Everything that follows is an evidence route, not borrowed authority.

Editorial reviewA sound reference starting point where classification, measurement and the date of the underlying evidence remain visible. The current lead gives the account dated anchors—1999—that can be checked directly. The selected authority fields contribute no independent date. The account is most persuasive where SIDD, Chemical and reaction can be independently traced.
Editorial analysis

Why this record matters

The subject matters to the science & nature register because the source frames it as chemical reaction. Its deeper value depends on whether names, dates, institutions and citations support that framing.

Evidence profile

Stable identifiers, scientific names and standards terminology offer the best bridge between this overview and specialist evidence. The source revision retrieved here is dated May 24, 2025. The linked authority identifier is Q7390291. None of the 0 selected statements returned an explicit reference. The first chronological checks are 1999.

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A general summary may omit uncertainty, sample limits or methodological disagreement that is explicit in the technical record. The source lead contains qualifying language; that uncertainty should survive quotation, summary and reuse. Authority statements aid reconciliation but still require their own references, qualifiers and ranks to be checked.

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Source & attribution

This entry incorporates text from SIDD” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.