primary transcript वाक्य
उदाहरण वाक्य
मोबाइल
- The inclusion of both exon and intron sequences within primary transcripts explains the size difference between larger primary transcripts and smaller, mature mRNA ready for translation into protein.
- The protein SXL attaches to an intron segment located within the 52 UTR segment of the primary transcript, which leads to the inclusion of the intron after processing.
- When RNA polymerase II reaches a " termination sequence " ( TTATTT on the DNA template and AAUAAA on the primary transcript ), the end of transcription is signaled.
- This gene contains 34 exons and three exons of the primary transcripts are alternatively spliced to generate up to eight different mature mRNAs and after translation eight different protein products.
- A "'primary transcript "'is the single-stranded ribonucleic acid ( RNA ) product synthesized by Micrograph of gene transcription of ribosomal RNA illustrating the growing primary transcripts
- A "'primary transcript "'is the single-stranded ribonucleic acid ( RNA ) product synthesized by Micrograph of gene transcription of ribosomal RNA illustrating the growing primary transcripts
- Given the primary transcript begins at base 7539277, the promoter overlaps with it by 304 bases . 20 predicted transcription factor binding sites with their transcription factor family was collected as well.
- Studies of primary transcripts produced by RNA polymerase II reveal that an average primary transcript is 7, 000 nucleotides in length, with some growing as long as 20, 000 nucleotides in length.
- Studies of primary transcripts produced by RNA polymerase II reveal that an average primary transcript is 7, 000 nucleotides in length, with some growing as long as 20, 000 nucleotides in length.
- Pan-editing starts with the base-pairing of the unedited primary transcript with a guide RNA ( gRNA ), which contains complementary sequences to the regions around the insertion / deletion points.
- Back in France, he is nominated directeur de recherche at CNRS and worked at Institut Jacques Monod where he develops from 1973 to 2001 the analysis of primary transcripts ( pre-mRNA ) and of their metabolism in functional RNA within polyribosome.
- A micrograph of ongoing gene transcription of ribosomal RNA illustrating the growing primary transcripts . " Begin " indicates the 5'end of the DNA, where new RNA synthesis begins; " end " indicates the 3'end, where the primary transcripts are almost complete.
- A micrograph of ongoing gene transcription of ribosomal RNA illustrating the growing primary transcripts . " Begin " indicates the 5'end of the DNA, where new RNA synthesis begins; " end " indicates the 3'end, where the primary transcripts are almost complete.
- Despite being located in intronic regions of a coding gene in the direction of transcription, it has its own promoter regions and forms a ~ 3433-nt long primary transcript of miR-21 ( known as pri-miR-21 ) which is independently transcribed.
- It binds to Drosha, an RNase III enzyme, to form the Microprocessor complex that cleaves a primary transcript known as pri-miRNA to a characteristic stem-loop structure known as a pre-miRNA, which is then further processed to miRNA fragments by the enzyme Dicer.
- A microRNA molecule is synthesized as a long RNA primary transcript known as a " pri-miRNA ", which is cleaved by Drosha to produce a characteristic stem-loop structure of about 70 base pairs long, known as a " pre-miRNA ."
- The primary transcript is cleaved by the Drosha ribonuclease III enzyme to produce an approximately 70-nt stem-loop precursor miRNA ( pre-miRNA ), which is further cleaved by the cytoplasmic Dicer ribonuclease to generate the mature miRNA and antisense miRNA star ( miRNA * ) products.
- The primary transcript originally described, contained 11 exons with protein coding beginning on exon 2 and ending in exon 11 ( transcript variant 2 ), resulting in a 398 amino acid protein with two strongly predicted transmembrane domains ( TMDs ), coded in exons 2 and 7 ( isoform 2 ).
- RNA polymerase is often incapable of synthesizing a primary transcript if the targeted gene's promoter region contains specific methylated cytosines residues that hinder binding of transcription-activating factors and recruit other enzymes to stabilize a tightly bound nucleosome structure, excluding access to RNA polymerase and preventing the production of primary transcripts.
- RNA polymerase is often incapable of synthesizing a primary transcript if the targeted gene's promoter region contains specific methylated cytosines residues that hinder binding of transcription-activating factors and recruit other enzymes to stabilize a tightly bound nucleosome structure, excluding access to RNA polymerase and preventing the production of primary transcripts.
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