SCRM Antibody

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Description

Possible Interpretations of "SCRM Antibody"

Given the absence of explicit references, the term could be misinterpreted or conflated with existing antibody types:

Hypothetical InterpretationRelated Concepts in SourcesSupporting Evidence
Single-Chain Fragment Variable (scFv)scFv antibodies are engineered for diagnostic/therapeutic use .Sources describe scFv antibodies but use "scFv," not "SCRM."
Systemic Sclerosis-Related Autoantibodies (SSc-Ab)Autoantibodies like ATA, RNAP3, and ACA are linked to systemic sclerosis .SSc-associated antibodies are well-documented but not labeled "SCRM" .
SARS-CoV-2-Specific AntibodiesBroadly neutralizing antibodies against SARS-CoV-2 spike protein .Studies focus on RBD/non-RBD binders but do not use "SCRM" .
Recombinant AntibodiesEngineered antibodies for therapeutic/diagnostic purposes .Terms like "recombinant" or "monoclonal" are used, not "SCRM" .

Key Limitations in Current Data

The provided sources emphasize well-characterized antibody types and therapeutic applications but lack mention of "SCRM Antibody." Critical gaps include:

  • Terminology Discrepancies: No standardized abbreviation or full name matches "SCRM" in immunology.

  • Structural/Functional Data: No descriptions of antigen specificity, binding mechanisms, or clinical applications.

  • Research Context: No studies cite "SCRM Antibody" in diagnostic/therapeutic trials or basic science.

Recommendations for Further Inquiry

To address the ambiguity, consider the following steps:

  1. Verify Terminology: Cross-check with original sources or databases (e.g., PubMed, Cochrane) for alternative spellings.

  2. Explore Contextual Clues: Determine if "SCRM" refers to a specific:

    • Disease-Associated Antibody (e.g., autoimmune, cancer).

    • Antigen Target (e.g., viral protein, tumor marker).

  3. Consult Emerging Research: Recent advancements in antibody engineering (e.g., scFv libraries , SARS-CoV-2 neutralizers ) may include novel terms.

Synthesis of Relevant Antibody Research

While "SCRM Antibody" remains undefined, the following data highlights analogous antibody types and their applications:

Table 1: Antibody Types and Applications

Antibody TypeKey FeaturesClinical/Research UseSources
scFv AntibodiesSingle-chain, engineered for high affinityDiagnostics, immunotoxins, gene delivery
SSc-Associated AutoantibodiesATA, RNAP3, ACA linked to fibrosis/vasculopathyBiomarkers for systemic sclerosis
Broadly Neutralizing AntibodiesTarget SARS-CoV-2 spike domains (RBD, S2)Therapeutics, variant-resistant treatments

Product Specs

Buffer
Preservative: 0.03% Proclin 300
Constituents: 50% Glycerol, 0.01M PBS, pH 7.4
Form
Liquid
Lead Time
Made-to-order (14-16 weeks)
Synonyms
SCRM antibody; BHLH116 antibody; EN45 antibody; ICE1 antibody; At3g26744 antibody; MDJ14.1 antibody; MLJ15.14Transcription factor ICE1 antibody; Basic helix-loop-helix protein 116 antibody; AtbHLH116 antibody; bHLH 116 antibody; Inducer of CBF expression 1 antibody; Transcription factor EN 45 antibody; Transcription factor SCREAM antibody; bHLH transcription factor bHLH116 antibody
Target Names
SCRM
Uniprot No.

Target Background

Function
SCRM Antibody is a transcriptional activator that regulates the cold-induced transcription of CBF/DREB1 genes. It binds specifically to the MYC recognition sites (5'-CANNTG-3') found in the CBF3/DREB1A promoter. Furthermore, SCRM Antibody mediates stomatal differentiation in the epidermis, likely by controlling the sequential roles of SPCH, MUTE, and FAMA. It functions as a dimer with SPCH during stomatal initiation.
Gene References Into Functions
  1. MPK3 and MPK6 can phosphorylate ICE1, a basic-helix-loop-helix transcription factor that regulates the expression of CBF genes. PMID: 29056551
  2. The unified ICE-CBF pathway provides transcriptional feedback control of freezing tolerance during cold acclimation. PMID: 26311645
  3. Seedling growth was significantly reduced in a T-DNA insertion mutant of ICE1, ice1-2, when grown on 1/2 MS medium lacking sugars, but was restored to wild-type (WT) levels by supplementation with 56 mM glucose. PMID: 26048037
  4. The ICE2 gene has originated from a duplication event approximately 17.9MYA, followed by sub- and neofunctionalization of the ancestral ICE1 gene. PMID: 25443829
  5. Research has uncovered the unexpected roles of OST1 in modulating C-repeat-binding factor-dependent cold signaling in Arabidopsis. PMID: 25669882
  6. Evidence suggests that the ZHOUPI/ICE1 complex might have ancient origins, acquiring novel megagametophyte-specific functions in heterosporous land plants that were conserved in the angiosperm endosperm. PMID: 24553285
  7. Jasmonate functions as a critical upstream signal of the ICE-CBF/DREB1 pathway to positively regulate Arabidopsis freezing tolerance. PMID: 23933884
  8. The serine 403 to alanine substitution enhances the transactivation activity of ICE1 and the freezing tolerance of Arabidopsis. PMID: 21447070
  9. The inducer of CBF expression1 (ICE1) protein, which is involved in the transcriptional control of cold responses, has been found to bind to a MYC element in the BAP1 promoter and is required for the cooling induction of BAP1. PMID: 21098676
  10. Regulon genes repressed by siz1 did not affect the expression of ICE1, which encodes a MYC transcription factor. PMID: 17416732

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Database Links

KEGG: ath:AT3G26744

STRING: 3702.AT3G26744.1

UniGene: At.25302

Subcellular Location
Nucleus.
Tissue Specificity
Widely expressed in the whole plant with high expression in leaves and stem. Broad expression within stomatal cell lineages of leaf epidermis.

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