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PHASE II", "@type": ["Award", "Item"], "status": "current", "principals_allowed": {"view": ["system.Everyone"], "edit": ["group.admin"]}}, "display_title": "zhong-ext-grant-note", "status": "released", "uuid": "ec392ca8-8498-4ee0-b8f4-bf1ef99cb7ae", "name": "zhong-ext-grant-note", "principals_allowed": {"view": ["system.Everyone"], "edit": ["group.admin", "role.owner", "userid.986b362f-4eb6-4a9c-8173-3ab267227777"]}}, "location": "tab:attribution"}], "static_headers": [{"lab": {"display_title": "4DN DCIC, HMS", "uuid": "828cd4fe-ebb0-4b36-a94a-d2e3a36cc989", "@id": "/labs/4dn-dcic-lab/", "@type": ["Lab", "Item"], "status": "current", "principals_allowed": {"view": ["system.Everyone"], "edit": ["group.admin", "role.lab_submitter", "submits_for.828cd4fe-ebb0-4b36-a94a-d2e3a36cc989"]}}, "body": "<b>In Situ Hi-C</b>\n\n<p>\n   In situ Hi-C is a method to detect and quantify the pairwise interactions between chromosome regions across the entire genome. 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Compared to standard dilution Hi-C, this technique reduces the frequency of random ligation because the ligation is performed <i>in situ</i> inside the nucleus, a constrained space, instead of in solution, where DNA fragments are floating freely. In addition, this protocol can be done more quickly in the lab and was the first to introduce the use of 4-cutter restriction enzymes as opposed to the previous 6-cutters, providing higher resolution.\n</p>\n<p>\nThe protocol involves cross-linking the cells with formaldehyde to form links between physically adjacent DNA regions. The cells are then permeabilized with their nuclei intact. A 4-cutter restriction enzyme is used to digest the chromatin into multiple DNA fragments. The resulting fragments are biotinylated by end filling of the fragments ends. The fragments are then ligated and the DNA is purified and sheared. 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