2x YT, Double Yeast-Tryptone medium
- Product Code: GMNB-2YE01
- Availability: In Stock
Tags: 2x YT media
Overview
The GMExpression formulation is supplied as pre-weighed dehydrated base (Tryptone 16 g/L, yeast extract 10 g/L, NaCl 5 g/L; total 31 g/L) with pre-balanced pH 7.0 ± 0.2. Optional sterile-filtered antibiotic stocks (kanamycin for M13K07 / VCSM13 helper-phage selection, ampicillin or carbenicillin for phagemid selection) and MgSO4 (for λ tail-attachment supplementation) are supplied as post-autoclave additions. 2×YT is the broth-of-record for phage-display library biopanning across the antibody-, peptide-, and scaffold-engineering literature.
We also have
LB Broth (Lennox / Miller) · NZCYM Broth (lambda gold-standard) · Bacteriophage Nutrient Broth (ΦX174 propagation grade) · TSB + 10 % Glycerol (host cryostock) · SM Buffer (phage diluent / storage) · BHI Broth (Gram-positive phage hosts)
Package Contents
Each GMExpression 2×YT kit contains:
- Mixture A — pre-weighed dehydrated 2×YT base (Tryptone 80 g, yeast extract 50 g, NaCl 25 g; total 155 g for 5 L final volume). Triple-foil-pouched; CofA traceable to the peptone and yeast-extract lots.
- Stock B (optional) — 50 mg/mL kanamycin sulfate, filter-sterilised at 0.22 µm, sterile-fill 5 mL amber vial; dosed at 1 mL/L for 50 µg/mL final (M13K07 / VCSM13 helper-phage selection).
- Stock C (optional) — 100 mg/mL ampicillin or carbenicillin sodium, filter-sterilised, sterile-fill 5 mL vial; dosed at 1 mL/L for 100 µg/mL final (phagemid selection).
- Stock D (optional) — 1 M MgSO4 · 7H2O, filter-sterilised, sterile-fill 10 mL vial; dosed at 10 mL/L for 10 mM Mg2+ λ-tail-attachment supplementation.
- Instruction manual including M13 helper-phage propagation, phage-display biopanning round protocol, PEG-precipitation phage harvest method, and a recombinant-protein expression annex (A5 booklet, v1.0).
Customisation options on request: animal-origin-free 2×YT (soy-substituted peptone), low-endotoxin 2×YT for clinical-grade phage display, antifoam-supplemented 2×YT for fermenter use, IPTG-supplemented 2×YT for induction workflows.
Composition — per 1 L equivalent unless stated otherwise
2×YT Broth (Miller 1972 / Sambrook & Russell 2001 / BD Difco 244020; per 1 L)
| Component | Concentration | Function |
|---|---|---|
| Tryptone (pancreatic digest of casein) | 16.0 g | Primary nitrogen and free amino acid source; 60 % more than LB — supports OD600 3–6 |
| Yeast extract | 10.0 g | B-vitamins, purines, pyrimidines, NAD precursors; 2× the LB load — directly drives higher burst size and recombinant protein yield |
| Sodium chloride (NaCl) | 5.0 g | Osmotic balance (86 mM); maintained at LB-Lennox level to preserve phage adsorption rates |
Total dry solids: 31 g/L. Pre-autoclaving pH: 7.0 ± 0.2 at 25 °C — typically requires ~ 0.2 mL of 5 M NaOH per litre to reach pH 7.0 (the higher peptone content shifts the equilibrium slightly acidic).
Optional supplements for phage / phage-display / expression workflows
| Supplement | Final concentration | Use case | Notes |
|---|---|---|---|
| Kanamycin sulfate (CAS 25389-94-0) | 50 µg/mL | M13K07, VCSM13 helper phage selection | Add 1 mL of 50 mg/mL stock per litre post-autoclave; stable in 2×YT at 37 °C for 24–48 h |
| Ampicillin or carbenicillin sodium | 100 µg/mL | Phagemid selection (pComb, pIT2, pAK / pYK series) | Add 1 mL of 100 mg/mL stock per litre post-autoclave; carbenicillin is more stable than ampicillin in 37 °C cultures |
| Chloramphenicol | 25–35 µg/mL | Dual-selection with pComb / pAK vectors | Add 1 mL of 25 mg/mL ethanolic stock per litre |
| MgSO4 · 7H2O | 10 mM (= 2.47 g/L) | λ phage lysate at 2×YT yields | Add 10 mL of 1 M sterile filtrate per litre post-autoclave |
| IPTG (Isopropyl β-D-thiogalactopyranoside) | 0.1–1.0 mM | Lac-operator induction (BL21(DE3), Rosetta etc.) | Add when culture reaches OD600 0.4–0.8; do not pre-induce |
| Glucose | 1–2 % w/v (= 10–20 g/L) | "2YTAG" for phage-display amplification | Catabolite-represses helper-phage promoter; standard phagemid round-amplification format |
Use and Applications
- M13 / fd / f1 filamentous-phage stock production. 2×YT + Kan 50 µg/mL inoculated with M13K07 or VCSM13 helper phage + F+ E. coli (TG1, JM109, ER2738, XL1-Blue); shake overnight 30 or 37 °C, 250 rpm; PEG-precipitate the supernatant to harvest the phage. Typical titre 1012–1013 PFU/mL — an order of magnitude above LB.
- Phage-display library biopanning rounds. 2×YT + Amp/Carb + Kan + glucose ("2YTAG") for round amplification; 2×YT + Amp/Carb alone for the helper-phage rescue step. Standard Smith / Winter / Marks / Bradbury protocols.
- λ phage liquid lysate. 2×YT + 10 mM MgSO4 + λ at MOI 0.01; harvest at clearing; expect > 1010 PFU/mL. NZCYM remains the gold standard but 2×YT is a routine alternative.
- Recombinant protein expression. Routine high-density growth broth for BL21(DE3), Rosetta, NiCo21, C41/C43, and Origami strains under IPTG induction; final OD600 4–6 in shake flasks, 8–12 in stirred bioreactors with antifoam.
- Plasmid maxiprep host growth. Single-colony inoculation of 2×YT + selection antibiotic; overnight to OD600 4–5 gives 2–3× the wet-cell mass of an equivalent LB culture, enabling proportionally larger plasmid yields per litre.
- Single-stranded DNA template preparation for Sanger sequencing or site-directed mutagenesis using M13mp / pBluescript / pCAB phagemids.
- Helper-phage propagation for M13K07 and VCSM13 (both carry a kanamycin-resistance cassette; the helper-phage–infected cells are selected on kanamycin).
Compatible Microorganisms
Phage-display and filamentous-phage hosts (primary use)
- E. coli TG1 (F+, supE, hsdD5, thi) — antibody scFv / Fab phage-display reference host (Cambridge Antibody Technology / MRC LMB heritage)
- E. coli ER2738 (F+) — New England Biolabs PhD-series peptide display host
- E. coli JM109 (F+) — M13 propagation and ssDNA preparation
- E. coli XL1-Blue (F+, tetR) — Agilent phagemid host
- E. coli SS320 (F+, electroporation-optimised) — large phage-display library electroporation
Recombinant protein expression hosts
- E. coli BL21(DE3), BL21-Star, BL21-CodonPlus — T7 promoter-driven expression
- E. coli Rosetta(DE3), Rosetta2(DE3) — rare-codon supplementation
- E. coli Origami(DE3), SHuffle — disulfide-bond-supportive expression
- E. coli NiCo21(DE3) — metal-affinity-optimised expression
- E. coli C41(DE3), C43(DE3) — membrane-protein and toxic-protein expression
General molecular biology hosts
- Cloning strains: DH5α, TOP10, NEB Stable, NEB 5-alpha
- BAC / cosmid hosts: DH10B, EPI300
Not optimised for: ΦX174 (use LB Lennox + 5 mM CaCl2 with E. coli C; 2×YT is too rich), Gram-positive phages (use BHI), mycoplasmas (use PPLO + serum), strictly anaerobic phage hosts (use anaerobic-modified BHI).
Preparation
Critical control points
- F-pilus expression temperature. Filamentous phages adsorb to the F pilus, whose expression is temperature-regulated. Standard biopanning rounds are performed at 30 °C to maintain the F-pilus at maximum density; 37 °C reduces F-pilus density and lowers phage recovery. Helper-phage rescue is also typically done at 30 °C for the same reason. Plasmid maxiprep and recombinant protein expression are routinely done at 37 °C.
- Glucose catabolite repression. The "2YTAG" format (2×YT + Amp + Glucose) deliberately includes 1–2 % glucose to keep the phagemid lac / lacUV5 promoter driving pIII-fusion expression under catabolite repression during phagemid round amplification, preventing premature pIII display, particle assembly, and pIII-toxicity-driven clone bias. When switching to the rescue step, the cells must be washed out of glucose-containing broth (and, if the phagemid promoter is IPTG-inducible, IPTG added) for full helper-phage rescue and particle release.
- Antifoam compatibility with downstream phage work. Silicone antifoams are generally phage-inert; polypropylene-glycol-based antifoams (some Antifoam 204 formulations) can reduce filamentous-phage infectivity by 20–50 % per round. Verify antifoam compatibility before fermenter-scale display work.
- Oxygen transfer rate. 2×YT cultures consume oxygen at 2–3× the rate of LB cultures at equivalent OD600. Shake flasks: 1:5 culture-to-flask ratio, 250 rpm minimum; fermenters: aeration ≥ 1 vvm or DO control ≥ 30 % saturation throughout the growth phase.
Cautions
Storage and Expiry · Safety
- Dehydrated powder (Mixture A): store sealed at 15–25 °C in original packaging away from direct sunlight. Shelf life 36 months from manufacture.
- Sterilised broth (unsupplemented): 2–8 °C or 15–25 °C in sealed glass, 6 months; 1 month after opening.
- Sterilised broth + kanamycin: 2–8 °C, 2 weeks.
- Sterilised broth + ampicillin / carbenicillin: 2–8 °C, 1 week (ampicillin) or 2 weeks (carbenicillin).
- 2×YT + MgSO4: 2–8 °C, 1 month (Mg2+ does not precipitate without phosphate).
- Kanamycin 50 mg/mL stock: −20 °C aliquots, 12 months; 2–8 °C, 2 months.
- Ampicillin 100 mg/mL stock: −20 °C aliquots, 6 months; 2–8 °C, 1 month.
Safety notes. 2×YT is a non-hazardous routine bacterial broth. The principal biosafety concerns are the host strain (most phage-display hosts are BSL-1) and the antibiotic stocks (kanamycin, ampicillin and carbenicillin are reproductive toxins on long-term occupational exposure; handle in PPE and follow institutional waste-stream rules). M13K07 and VCSM13 helper phages are non-pathogenic E. coli-specific viruses (BSL-1). SDS available on request.
References
- Miller, J. H. (1972). Experiments in Molecular Genetics. Cold Spring Harbor Laboratory Press. [Original 2×YT recipe]
- Sambrook, J. & Russell, D. W. (2001). Molecular Cloning: A Laboratory Manual, 3rd ed., CSH Press. Chapter 3 (Phage display) and Appendix A: 2×YT and M13 propagation protocols.
- Vieira, J. & Messing, J. (1987). Production of single-stranded plasmid DNA. Methods in Enzymology 153: 3–11.
- Smith, G. P. (1985). Filamentous fusion phage: novel expression vectors that display cloned antigens on the virion surface. Science 228: 1315–1317.
- Marks, J. D., Hoogenboom, H. R., Bonnert, T. P., McCafferty, J., Griffiths, A. D., Winter, G. (1991). By-passing immunization: human antibodies from V-gene libraries displayed on phage. Journal of Molecular Biology 222: 581–597.
- Barbas, C. F., Burton, D. R., Scott, J. K., Silverman, G. J. (2001). Phage Display: A Laboratory Manual. Cold Spring Harbor Press.
- BD Difco & BBL Manual, 12th ed., 2×YT Broth monograph (BD 244020).
- Russel, M., Lowman, H. B., Clackson, T. (2004). Introduction to phage biology and phage display. In Clackson & Lowman (eds), Phage Display, IRL/Oxford University Press.
- Rondot, S., Koch, J., Breitling, F., Dübel, S. (2001). A helper phage to improve single-chain antibody presentation in phage display. Nature Biotechnology 19: 75–78. [Hyperphage]
- Hanahan, D. (1983). Studies on transformation of Escherichia coli with plasmids. Journal of Molecular Biology 166: 557–580. [SOB / SOC origin]


