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Tissue-specific transcription factors contribute to diverse cellular functions in mammals. For example, the gene for beta globin, a major component of hemoglobin, is present in all cells of the body. However, it is only expressed in red blood cells because the transcription factors that can bind to the promoter sequences of the beta globin gene are only expressed in these cells. Tissue-specific transcription factors also ensure that mutations in these factors may impair only the function of specific tissues or body parts without affecting the entire organism.

An additional layer of complexity is added by transcription factors in eukaryotes exerting combinatorial control. That means input provided by several transcription factors synchronously regulates the expression of a single gene. The combination of several transcriptional activators and repressors enables a gene to be differentially regulated and adapt to a variety of environmental changes without the need for additional genes.

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Transcription FactorsTissue specificBeta GlobinHemoglobinRed Blood CellsPromoter SequencesCombinatorial ControlTranscriptional ActivatorsTranscriptional RepressorsGene ExpressionEukaryotes

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9.7 : General Transcription Factors

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9.1 : ما هو التعبير الجيني؟

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9.2 : هيكل الحمض النووي الريبي

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9.3 : أنواع الحمض النووي الريبي

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9.4 : نسخ

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9.5 : بوليميراز الحمض النووي الريبي البكتيري

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9.6 : بوليميرات الحمض النووي الريبي حقيقية النواة

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9.8 : بروتينات ملحق RNA Polymerase II

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9.9 : عوامل استطالة النسخ

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9.10 : معالجة ما قبل الرنا المرسال: تعديل نهايات ما قبل الرنا المرسال

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9.11 : معالجة ما قبل الرنا المرسال: ربط الحمض النووي الريبي

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9.12 : هيكل الكروماتين وربط الحمض النووي الريبي

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9.13 : الربط البديل للحمض النووي الريبي

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9.14 : التصدير النووي للرنا المرسال

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9.15 : نقل تخليق الحمض النووي الريبي

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