caption a7 caption a8 therapeutic efficacy Search Results


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ATCC caption a7 caption a8 synergy
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New England Biolabs separate window caption a7 caption a8 brca2 c 67 3 a g splicing
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
Separate Window Caption A7 Caption A8 Brca2 C 67 3 A G Splicing, supplied by New England Biolabs, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Biosynth Carbosynth linker a1 a2 a3 a4 a5 a6 a7 a8 a9 a10 a11 a12 a13 a14 a15 a16 a17 a18 a19 a20 a21 a22 a23 a24 a25 a26 a27 a28 a29 a30 a31
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
Linker A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 A13 A14 A15 A16 A17 A18 A19 A20 A21 A22 A23 A24 A25 A26 A27 A28 A29 A30 A31, supplied by Biosynth Carbosynth, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bio-Rad caption a7 caption a8 example 384 well plate layouts
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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Thermo Fisher separate window caption a7 caption a8 agarose
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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ATCC t5 caption a7 caption a8 mic values
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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SEASTAR CHEMICALS sea star embryos
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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Bruker Corporation separate window caption a7 caption a8 principle
A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of <t>BRCA2:c.67+3A>G</t> are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.
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Image Search Results


A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of BRCA2:c.67+3A>G are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.

Journal: Molecular carcinogenesis

Article Title: Consequences of germline variation disrupting the constitutional translational initiation codon start sites of MLH1 and BRCA2 : use of potential alternative start sites and implications for predicting variant pathogenicity

doi: 10.1002/mc.22116

Figure Lengend Snippet: A) Translation from all but one of these potential start codons (c.103) is predicted to result in an out-of-frame protein product. Two of the ATP-binding and hydrolysis domain motifs are shown (bases 91–129 and 187–204). Two further ATP-binding and hydrolysis motifs lie at bases 289–321 and 436–441. B) Alternative translation start sites following the aberrant splicing event as a result of BRCA2:c.67+3A>G are highlighted at position c.323 and c.367. The N-terminal transactivation domain that spans bases 67–315 is lost as a result of translation initiation at c.323 and c.367. In the event that the ATG at c.323 is recognized as the translation initiation signal, an out of frame protein would be synthesized terminating 12 amino acids after initiation. Initiation at c.367 would result in an in-frame protein product, lacking the N-terminal transactivation domain.

Article Snippet: Two downstream ATG sites in exon 4 at c.323 and c.367 were selected for functional analysis to determine their potential use as alternate translation initiation sites. fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window caption a7 caption a8 BRCA2 :c.67+3A>G splicing products detected by RT-PCR M – 100bp DNA marker (New England Biolabs); Lane 1 variant carrier; Lanes 2–5, normal unaffected female controls; lane 6, no-template control.

Techniques: Binding Assay, Synthesized

Schematic representation of each construct is shown. The GFP sequence is in-frame with the most 3′ potential start site. Error bars are based on the standard error between repeat experiments. A) Relative GFP fluorescent level of predicted potential alternate start sites with and without the presence of the variant MLH1c.1A>G(p.Met1Val). The ATG at position c.103 is in-frame with the ATG at c.1, and produced higher GFP protein level than the two initiation sites not in-frame with position c.1 (c.89 and c.122, which are in-frame with each other). B) Effect of exon 2 loss from BRCA2 transcripts on the initiation of translation. An out-of-frame ATG codon at position c.323 in exon 4 is preferred to an in-frame alternative at c.370. Each experiment was conducted in triplicate, and then repeated twice.

Journal: Molecular carcinogenesis

Article Title: Consequences of germline variation disrupting the constitutional translational initiation codon start sites of MLH1 and BRCA2 : use of potential alternative start sites and implications for predicting variant pathogenicity

doi: 10.1002/mc.22116

Figure Lengend Snippet: Schematic representation of each construct is shown. The GFP sequence is in-frame with the most 3′ potential start site. Error bars are based on the standard error between repeat experiments. A) Relative GFP fluorescent level of predicted potential alternate start sites with and without the presence of the variant MLH1c.1A>G(p.Met1Val). The ATG at position c.103 is in-frame with the ATG at c.1, and produced higher GFP protein level than the two initiation sites not in-frame with position c.1 (c.89 and c.122, which are in-frame with each other). B) Effect of exon 2 loss from BRCA2 transcripts on the initiation of translation. An out-of-frame ATG codon at position c.323 in exon 4 is preferred to an in-frame alternative at c.370. Each experiment was conducted in triplicate, and then repeated twice.

Article Snippet: Two downstream ATG sites in exon 4 at c.323 and c.367 were selected for functional analysis to determine their potential use as alternate translation initiation sites. fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window caption a7 caption a8 BRCA2 :c.67+3A>G splicing products detected by RT-PCR M – 100bp DNA marker (New England Biolabs); Lane 1 variant carrier; Lanes 2–5, normal unaffected female controls; lane 6, no-template control.

Techniques: Construct, Sequencing, Variant Assay, Produced