Cis Trans Isomer

Cis-trans isomerism is a form of geometric isomerism in which compounds share the same molecular formula and atom connectivity but differ in the spatial arrangement of substituents around a rigid structure. It arises when rotation is restricted, commonly by a carbon-carbon double bond or a ring, so groups on the same side form a cis isomer, whereas groups on opposite sides form a trans isomer. This change in three-dimensional geometry can alter polarity, boiling point, melting point, and chemical or biological behavior. Recognizing cis-trans isomers helps chemists interpret molecular structure, predict physical properties, analyze reaction products, and understand how molecular shape influences pharmaceuticals, biomolecules, and functional materials.

Cis Trans Isomer - Related Videos

Education

JoVE Core - Organic Chemistry

Disubstituted Cyclohexanes: cis-trans Isomerism

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2023

Depending upon the different spatial orientation of the substituents, the disubstituted cycloalkanes exhibit two types of stereoisomers. The cis isomers have the substituents on the same side of the ring, whereas the trans isomers have the substituents on the opposite sides. These stereoisomers exhibit different physical properties and cannot be interconverted without breaking the carbon-carbon bonds. In cyclohexane, the substituents can occupy different positions generating distinct isomers.

Cis-regulatory Sequences

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2020

Cis-regulatory sequences are short fragments of non-coding DNA that are present on the same chromosomes as the genes that they regulate. These fragments serve as binding sites for transcriptional regulators, proteins that are responsible for controlling gene transcription and differential gene expression across cell types in eukaryotes. Cis-regulatory sequences can be close to the gene of interest or thousands of bases away in the DNA sequence; however, those sequences that are further away are...

Research

JoVE Journal - Developmental Biology

Cell Aggregation Assays to Evaluate the Binding of the Drosophila Notch with Trans-Ligands and its Inhibition by Cis-Ligands

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Cited by 3 •

2018

Complexity of in vivo systems makes it difficult to distinguish between the activation and inhibition of Notch receptor by trans- and cis-ligands, respectively. Here, we present a protocol based on in vitro cell-aggregation assays for qualitative and semi-quantitative evaluation of the binding of Drosophila Notch to trans-ligands vs cis-ligands.

Constitutional Isomers of Alkanes

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2023

Organic compounds of the same molecular formula can have different structural formulas called constitutional isomers, and the phenomenon is known as constitutional isomerism. Alkanes with four or more carbons showing multiple structures with the same molecular formula thereby exhibit constitutional isomerism. The linear isomer of an alkane is prefixed by the term “n”; hence a linear isomer of pentane is known as n-pentane. Based on the type of branching, some of the branched isomers are given...

Quantitative Comparison of cis-Regulatory Element (CRE) Activities in Transgenic Drosophila melanogaster

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Cited by 15 •

2011

Phenotypic variation for traits can result from mutations in cis-regulatory element (CRE) sequences that control gene expression patterns. Methods derived for use in Drosophila melanogaster can quantitatively compare the levels of spatial and temporal patterns of gene expression mediated by modified or naturally occurring CRE variants.

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