molcell-summary
GitHub专为 Molecular Cell 论文撰写单段式 Summary(摘要)。用于机制已定稿后的润色,要求150词内无子标题,明确分子机制、量化结果及生理意义,规避行话,确保对分子生物学读者清晰。
触发场景
安装
npx skills add brycewang-stanford/Awesome-Journal-Skills --skill molcell-summary -g -y
SKILL.md
Frontmatter
{
"name": "molcell-summary",
"description": "Use to write Molecular Cell's Summary — a single unstructured paragraph (~150 words; re-check on the official site) that conveys the molecular question, the mechanism, and its physiological consequence, named and quantified for a molecular-biology readership. Late-stage polish."
}
Summary / Abstract (molcell-summary)
When to trigger
- Mechanism, framing, and structure are settled (do this late).
- The abstract reads like a method recap with no molecular mechanism or result.
- It exceeds the word ceiling, uses subheadings, or is dense with undefined acronyms.
- It states that something happens but never how at the molecular level.
What Molecular Cell calls it
Molecular Cell's abstract is the Summary: a single, unstructured paragraph (no subheadings, no citations) of roughly ≤150 words (treat as a ceiling; confirm the current cap). It is written for a molecular-biology readership — you can assume familiarity with the process but must still name the mechanism and quantify. It must convey the molecular question, the mechanism, and why it matters physiologically.
Five-move structure (no labels in the text)
- Molecular context / stakes (1 sentence) — the process and the step at issue.
- Gap / question (1 sentence) — what molecular event was unknown.
- What we did + what we found (2–3 sentences) — the mechanism, with the key quantified results and the orthogonal evidence that proves it.
- Mechanism stated explicitly — name the molecular cause (residue, base, interface, step), not just the phenotype.
- Physiological consequence (1 sentence) — why the mechanism matters in cells/in vivo.
Because Molecular Cell rewards depth, the Summary should make clear the mechanism is established by independent methods, not merely proposed.
Hard constraints
- ≤ ~150 words (confirm the current cap on the official site).
- Single paragraph; no subheadings, no citations, no figure/table references.
- Define any acronym on first use, or avoid it.
- Names the molecular mechanism explicitly (the how), not only the observation.
- At least one quantified result (e.g., "10-fold faster," "a 2.9 Å structure," not "significantly").
- First sentence is legible to a molecular biologist outside the exact subfield.
Jargon blacklist (rewrite on sight)
- "Herein we report…", "Importantly,", "Interestingly,", "Notably,", "Strikingly,"
- Strings of ≥2 undefined gene/protein/complex acronyms in one sentence.
- "elucidate", "delineate", "interrogate", "dissect", "shed light on" as filler verbs.
- Hedging stacks: "may potentially suggest that it could…".
- Ending on "further studies are needed" — end on the physiological consequence.
Quantification check
Every effect claim should carry a number somewhere in the paper, and the headline belongs in the Summary: a rate, a fold-change, an affinity, a resolution, an occupancy. A Summary with zero numbers is not finished.
What the in-house editor reads first
Molecular Cell's initial triage is run by professional in-house scientific editors. They decide in minutes whether the paper goes to review, and the Summary plus the title are usually all they read when they decide. Two questions dominate: (1) is there a molecular mechanism here, worked out and validated — or only a phenotype with a proposed cause; and (2) is the mechanism proven by more than one approach. Write the Summary so both answers are visible without the figures. A Summary that names a molecule, a molecular action, and a physiological consequence survives triage; a Summary that lists assays performed does not.
Worked micro-example (before → after)
Before (method recap, no mechanism, no number, 39 words):
Here we studied the helicase XYZ using cryo-EM and biochemistry. We solved several structures and performed unwinding assays. XYZ was important for replication. These findings advance our understanding of DNA replication.
After (mechanism named, quantified, physiological stake, ~85 words):
How replicative helicases couple ATP hydrolysis to strand separation at a stalled fork is unclear. Combining a 2.9 Å cryo-EM structure with single-molecule unwinding, we find that the helicase XYZ grips the lagging strand through a conserved β-hairpin and that hydrolysis at a single subunit ratchets one nucleotide per step. A hairpin point mutant uncouples ATPase from unwinding, slowing fork progression 12-fold and sensitizing cells to replication stress. XYZ thus converts nucleotide hydrolysis into processive, strand-selective translocation that safeguards genome duplication.
The "after" version names the actor (XYZ), the molecular mechanism (β-hairpin grip; single-subunit ratchet), a quantified effect (2.9 Å; 12-fold), orthogonal evidence (structure + single-molecule + mutant), and a physiological consequence.
Output format
【Summary】 single paragraph (word count: N ≤ ~150)
【Five moves present?】 context / gap / approach+result / mechanism named / physiological consequence
【Mechanism explicit?】 yes/no — the named molecular cause
【Quantified headline result?】 yes/no + the number
【Jargon hits removed】 [...]
【Next】 molcell-highlights
Anti-patterns
- Do not use subheadings or a structured-abstract format — the Summary is one paragraph.
- Do not describe only the phenomenon; name the molecular mechanism.
- Do not open with the technique; open with the molecular stake.
- Do not pad past the ceiling; the limit is a feature.
- Do not confuse the Summary with the eTOC blurb (that one is third-person and lay; see
molcell-highlights).
The ~150-word cap is a working default — confirm against the current Molecular Cell information-for-authors page.
版本历史
- 9f86f09 当前 2026-07-19 17:05


