Skip to Content

Dear Customer:

The current international situation is complex and volatile, and uncertain tariff policies may potentially impact our product prices. Given these uncertainties, we value your understanding regarding order-related matters.

If you decide to place an order during this period, we reserve the right to adjust the price based on the evolving situation. We understand that market changes may cause inconvenience. We will negotiate with you if there’s a significant price fluctuation due to tariff policy changes before the order’s actual delivery, and in such cases we may adjust or cancel the order as necessary.

We are planning system maintenance between Friday, Apr 18 at 9:00 PM CDT and Saturday, Apr 19 at 9:00 AM CDT. This will impact both web and offline transactions, including online orders, quotes, price and availability checks, and order status inquiries. We apologize for any inconvenience.

For important updates on recent policy changes, please click here for more details.

Merck
CN

ChromID identifies the protein interactome at chromatin marks.

Nature biotechnology (2020-03-04)
Rodrigo Villaseñor, Ramon Pfaendler, Christina Ambrosi, Stefan Butz, Sara Giuliani, Elana Bryan, Thomas W Sheahan, Annika L Gable, Nina Schmolka, Massimiliano Manzo, Joël Wirz, Christian Feller, Christian von Mering, Ruedi Aebersold, Philipp Voigt, Tuncay Baubec
ABSTRACT

Chromatin modifications regulate genome function by recruiting proteins to the genome. However, the protein composition at distinct chromatin modifications has yet to be fully characterized. In this study, we used natural protein domains as modular building blocks to develop engineered chromatin readers (eCRs) selective for DNA methylation and histone tri-methylation at H3K4, H3K9 and H3K27 residues. We first demonstrated their utility as selective chromatin binders in living cells by stably expressing eCRs in mouse embryonic stem cells and measuring their subnuclear localization, genomic distribution and histone-modification-binding preference. By fusing eCRs to the biotin ligase BASU, we established ChromID, a method for identifying the chromatin-dependent protein interactome on the basis of proximity biotinylation, and applied it to distinct chromatin modifications in mouse stem cells. Using a synthetic dual-modification reader, we also uncovered the protein composition at bivalently modified promoters marked by H3K4me3 and H3K27me3. These results highlight the ability of ChromID to obtain a detailed view of protein interaction networks on chromatin.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Histone H1 Antibody, clone AE-4, clone AE-4, Upstate®, from mouse
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥933.32
100 g
Available to ship on April 18, 2025
Details...
CN¥1,718.03
Millipore
Benzonase® Nuclease HC, Purity > 99%, Effective Viscosity Reduction and Removal of Nucleic Acids from protein solutions
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥933.32
100 g
Available to ship on April 18, 2025
Details...
CN¥1,718.03
Roche
Anti-GFP, from mouse IgG1κ (clones 7.1 and 13.1)
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥933.32
100 g
Available to ship on April 18, 2025
Details...
CN¥1,718.03
Roche
cOmplete, EDTA-free Protease Inhibitor Cocktail, Tablets provided in glass vials
Sign Into View Organizational & Contract Pricing
SKUPack SizeAvailabilityPriceQuantity
25 g
Available to ship on April 18, 2025
Details...
CN¥933.32
100 g
Available to ship on April 18, 2025
Details...
CN¥1,718.03