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20
exercises/practice/rna-transcription/.docs/instructions.md
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# Instructions | ||
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Your task is determine the RNA complement of a given DNA sequence. | ||
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Both DNA and RNA strands are a sequence of nucleotides. | ||
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The four nucleotides found in DNA are adenine (**A**), cytosine (**C**), guanine (**G**) and thymine (**T**). | ||
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The four nucleotides found in RNA are adenine (**A**), cytosine (**C**), guanine (**G**) and uracil (**U**). | ||
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Given a DNA strand, its transcribed RNA strand is formed by replacing each nucleotide with its complement: | ||
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- `G` -> `C` | ||
- `C` -> `G` | ||
- `T` -> `A` | ||
- `A` -> `U` | ||
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~~~~exercism/note | ||
If you want to look at how the inputs and outputs are structured, take a look at the examples in the test suite. | ||
~~~~ |
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exercises/practice/rna-transcription/.docs/introduction.md
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# Introduction | ||
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You work for a bioengineering company that specializes in developing therapeutic solutions. | ||
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Your team has just been given a new project to develop a targeted therapy for a rare type of cancer. | ||
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~~~~exercism/note | ||
It's all very complicated, but the basic idea is that sometimes people's bodies produce too much of a given protein. | ||
That can cause all sorts of havoc. | ||
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But if you can create a very specific molecule (called a micro-RNA), it can prevent the protein from being produced. | ||
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This technique is called [RNA Interference][rnai]. | ||
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[rnai]: https://admin.acceleratingscience.com/ask-a-scientist/what-is-rnai/ | ||
~~~~ |
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{ | ||
"authors": [ | ||
"BNAndras" | ||
], | ||
"files": { | ||
"solution": [ | ||
"src/lib.cairo" | ||
], | ||
"test": [ | ||
"tests/rna_transcription.cairo" | ||
], | ||
"example": [ | ||
".meta/example.cairo" | ||
] | ||
}, | ||
"blurb": "Given a DNA strand, return its RNA Complement Transcription.", | ||
"source": "Hyperphysics", | ||
"source_url": "https://web.archive.org/web/20220408112140/http://hyperphysics.phy-astr.gsu.edu/hbase/Organic/transcription.html" | ||
} |
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pub fn to_rna(dna: ByteArray) -> ByteArray { | ||
let mut rna = ""; | ||
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let mut i = 0; | ||
while i < dna | ||
.len() { | ||
let nucleotide = dna[i]; | ||
if nucleotide == 'C' { | ||
rna += "G"; | ||
} else if nucleotide == 'G' { | ||
rna += "C"; | ||
} else if nucleotide == 'T' { | ||
rna += "A"; | ||
} else if nucleotide == 'A' { | ||
rna += "U"; | ||
} | ||
i += 1; | ||
}; | ||
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return rna; | ||
} |
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# This is an auto-generated file. | ||
# | ||
# Regenerating this file via `configlet sync` will: | ||
# - Recreate every `description` key/value pair | ||
# - Recreate every `reimplements` key/value pair, where they exist in problem-specifications | ||
# - Remove any `include = true` key/value pair (an omitted `include` key implies inclusion) | ||
# - Preserve any other key/value pair | ||
# | ||
# As user-added comments (using the # character) will be removed when this file | ||
# is regenerated, comments can be added via a `comment` key. | ||
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[b4631f82-c98c-4a2f-90b3-c5c2b6c6f661] | ||
description = "Empty RNA sequence" | ||
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[a9558a3c-318c-4240-9256-5d5ed47005a6] | ||
description = "RNA complement of cytosine is guanine" | ||
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[6eedbb5c-12cb-4c8b-9f51-f8320b4dc2e7] | ||
description = "RNA complement of guanine is cytosine" | ||
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[870bd3ec-8487-471d-8d9a-a25046488d3e] | ||
description = "RNA complement of thymine is adenine" | ||
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[aade8964-02e1-4073-872f-42d3ffd74c5f] | ||
description = "RNA complement of adenine is uracil" | ||
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[79ed2757-f018-4f47-a1d7-34a559392dbf] | ||
description = "RNA complement" |
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[package] | ||
name = "rna_transcription" | ||
version = "0.1.0" | ||
edition = "2023_11" |
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pub fn to_rna(dna: ByteArray) -> ByteArray { | ||
panic!("implement `to_rna`") | ||
} |
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exercises/practice/rna-transcription/tests/rna_transcription.cairo
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use rna_transcription::to_rna; | ||
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#[test] | ||
fn empty_RNA_sequence() { | ||
assert_eq!(to_rna(""), ""); | ||
} | ||
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#[test] | ||
#[ignore] | ||
fn RNA_complement_of_cytosine_is_guanine() { | ||
assert_eq!(to_rna("C"), "G"); | ||
} | ||
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#[test] | ||
#[ignore] | ||
fn RNA_complement_of_guanine_is_cytosine() { | ||
assert_eq!(to_rna("G"), "C"); | ||
} | ||
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#[test] | ||
#[ignore] | ||
fn RNA_complement_of_thymine_is_adenine() { | ||
assert_eq!(to_rna("T"), "A"); | ||
} | ||
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#[test] | ||
#[ignore] | ||
fn RNA_complement_of_adenine_is_uracil() { | ||
assert_eq!(to_rna("A"), "U"); | ||
} | ||
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#[test] | ||
#[ignore] | ||
fn RNA_complement() { | ||
assert_eq!(to_rna("ACGTGGTCTTAA"), "UGCACCAGAAUU"); | ||
} |
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