[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"doc-detail-201574-en":3,"doc-seo-201574-105":30,"detail-sidebar-cat-0-en-105":90},{"code":4,"msg":5,"data":6},0,"success",{"doc_id":7,"user_id":8,"nickname":9,"user_avatar":10,"doc_module":4,"category_id":11,"category_name":12,"doc_title":13,"doc_description":14,"doc_content":15,"file_id":16,"file_url":17,"file_type":18,"file_size":19,"view_count":4,"is_deleted":4,"is_public":20,"is_downloadable":20,"audit_status":20,"page_count":21,"language":22,"language_code":23,"site_id":24,"html_lang":23,"table_of_contents":25,"faqs":26,"seo_title":27,"seo_description":14,"update_tm":28,"read_time":29},201574,1649267921044,"Ava Thompson","https://us-avatar.wpscdn.com/avatar/1800007509477c92dfb?_k=1786009248482753345",4,"Exam","AAMC MCAT Content Checklist - Content Masterlist","AAMC MCAT content checklist compiled by Med-Pathway.com THE MCAT Experts, recapitulating the MCAT content outline for high-yield biology topics. Covers protein structure and function, including amino acids, peptides, protein folding and denaturing, separation, non-enzymatic protein roles, and enzyme kinetics with regulation and inhibition. Also details genetic information flow from gene to protein, nucleic acid structure, replication and repair, transcription and translation, and gene expression control. Includes foundational Mendelian genetics, meiosis-driven diversity, mutation, and analytic methods like Hardy–Weinberg and gene mapping.","AAMC MCAT © Content Checklist compiled by Med-Pathway.com THE MCAT Experts  \nThe authors of the MCAT are the American Association of Medical Colleges (AAMC) . They released a book that explains the MCAT exam in depth. They give sample questions and passages and specifically delineate the content that is covered on the MCAT. We have studied this document and have recapitulated the Content Outline here.  \nContent Category 1A: Structure/function of proteins and their constituent  \namino acids  \nAmino Acids/Peptides  \n☐ Absolute configuration at the α position ☐ Amino acids as dipolar ions ☐ Acidic or basic  \n☐ Hydrophobic or hydrophilic  \n☐ Sulfur linkage for cysteine and cysteine ☐ Peptide linkage: polypeptides and proteins ☐ Hydrolysis  \nProteins  \n☐ 1°, 2°, 3°, 4° structure of proteins ☐ Denaturing and folding  \n☐ Hydrophobic interactions ☐ Solvation layer (entropy)  \n☐ Role of proline, cysteine and hydrophobic bonding  \nProtein separation techniques ☐ Isoelectric point ☐ Electrophoresis  \nNon-Enzymatic Protein Function ☐ Binding  \n☐ Immune system  \n☐ Motors  \nEnzyme Structure/Function  \n☐ Enzyme function in catalyzing biological reactions  \n☐ Classification of enzymes by reaction type ☐ Effects of local conditions on enzyme activity  \n☐ Reduction of activation energy ☐ Substrates and enzyme specificity ☐ Active Site Model ☐ Induced-fit Model  \n☐ Mechanism of catalysis  \n☐ Cofactors and Coenzymes  \n☐ Water-soluble vitamins  \nControl of Enzyme Kinetics ☐ General (catalysis)☐ Michaelis-Menten  \n☐ Cooperativity  \n☐ Feedback regulation  \nInhibition  \n☐ Competitive and Non-competitive  \n☐ Mixed  \n☐ Uncompetitive  \nEnzyme regulation ☐ Allosteric enzymes  \n☐ Covalently-modified enzymes  \n☐ Zymogens  \nAAMC MCAT © Content Checklist compiled by Med-Pathway.com THE MCAT Experts  \nAAMC MCAT © Content Checklist compiled by Med-Pathway.com THE MCAT Experts  \nContent Category 1B: Transmission of genetic information from the gene to  \nthe protein  \nNucleic Acid Structure and Function ☐ Nucleotides and nucleosides ☐ Sugar phosphate backbone ☐ Pyrimidine, purine residues ☐ Deoxyribonucleic acid (DNA): double helix,  \nWatson–Crick model of DNA structure ☐ Base pairing specificity: A with T, G with C  \n☐ Function in transmission of genetic information  \n☐ DNA denaturation, reannealing, hybridization  \nDNA Replication and Repair  \n☐ Mechanism of replication: separation of strands, specific coupling of free nucleic  \nacids  \n☐ Semi-conservative nature of replication ☐ Specific enzymes involved in replication ☐ Origins of replication, multiple origins in  \neukaryotes  \n☐ Replicating the ends of DNA molecules  \nThe Genetic Code  \n☐ Central Dogma: DNA → RNA ☐ The triplet code  \n☐ Codon-anticodon relationship ☐ Degenerate code, wobble pairing ☐ Missense, nonsense codons  \n☐ Initiation, termination codons  \n☐ Messenger RNA (mRNA)  \nTranscription ☐ tRNA and rRNA  \n☐ Mechanism of transcription  \n☐ mRNA processing in eukaryotes, introns, exons  \n☐ Ribozymes, spliceosomes, small nuclear ribonucleoproteins, small nuclear RNA  \n☐ Evolutionary importance of introns  \nTranslation  \n☐ Roles of mRNA, tRNA, rRNA ☐ Role and structure of ribosomes ☐ Initiation, termination co-factors ☐ Post-translational modification of proteins  \nEukaryotic Chromosome Organization ☐ Chromosomal proteins  \n☐ Single copy vs. repetitive DNA ☐ Supercoiling  \n☐ Heterochromatin vs. euchromatin  \n☐ Telomeres, centromeres ☐ Repair during replication  \n☐ Repair during replication  \n☐ Repair of mutations  \n☐ Telomeres, centromeres  \nGene Expression in Prokaryotes ☐ Jacob-Monod Model ☐ Gene repression in bacteria ☐ Positive control in bacteria  \nControl of Gene Expression in Eukaryotes ☐ Transcriptional regulation  \n☐ DNA binding proteins, transcription factors  \n☐ Gene amplification and duplication ☐ Post-transcriptional control, basic concept of  \nsplicing (introns, exons)☐ Cancer as a failure of normal cellular controls,  \noncogenes, tumor suppressor genes ☐ Regulation of chromatin structu","cbCaiiG2HiUlsiJm","https://ap.wps.com/l/cbCaiiG2HiUlsiJm","pdf",369647,1,24,"English","en",105,"# Content Categories\n## 1A: Structure/function of proteins and their constituent amino acids\n## 1B: Transmission of genetic information from the gene to the protein\n## 1C: Transmission of heritable information and processes that increase genetic diversity","[{\"question\":\"What topics does the checklist cover under Content Category 1A?\",\"answer\":\"It covers amino acids and peptides, protein structure and folding/denaturing, protein separation techniques, non-enzymatic protein functions, enzyme structure/function, kinetics (including Michaelis-Menten and cooperativity), inhibition, and enzyme regulation.\"},{\"question\":\"How does Content Category 1B describe genetic information flow?\",\"answer\":\"It follows gene-to-protein transmission: nucleic acid structure and function, DNA replication and repair, the genetic code, transcription, translation, and broader topics like eukaryotic chromosome organization and gene expression control in prokaryotes and eukaryotes.\"},{\"question\":\"Which genetics concepts are included in Content Category 1C?\",\"answer\":\"It includes Mendelian genetics (genotype/phenotype, alleles, dominance patterns), meiosis and genetic variability (segregation, independent assortment, linkage, recombination), sex-linked characteristics, mutation, and analytic methods such as the Hardy–Weinberg principle and gene mapping.\"}]","AAMC MCAT Content Checklist - Content Masterlist | 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topics does the checklist cover under Content Category 1A?","Question",{"text":74,"@type":75},"It covers amino acids and peptides, protein structure and folding/denaturing, protein separation techniques, non-enzymatic protein functions, enzyme structure/function, kinetics (including Michaelis-Menten and cooperativity), inhibition, and enzyme regulation.","Answer",{"name":77,"@type":72,"acceptedAnswer":78},"How does Content Category 1B describe genetic information flow?",{"text":79,"@type":75},"It follows gene-to-protein transmission: nucleic acid structure and function, DNA replication and repair, the genetic code, transcription, translation, and broader topics like eukaryotic chromosome organization and gene expression control in prokaryotes and eukaryotes.",{"name":81,"@type":72,"acceptedAnswer":82},"Which genetics concepts are included in Content Category 1C?",{"text":83,"@type":75},"It includes Mendelian genetics (genotype/phenotype, alleles, dominance patterns), meiosis and genetic variability (segregation, independent assortment, linkage, recombination), sex-linked characteristics, mutation, and analytic methods such as the Hardy–Weinberg principle and gene mapping.","https://schema.org",{"og:url":52,"og:type":86,"og:title":13,"og:site_name":58,"og:description":14},"article",{"robots":88,"canonical":52},"index,follow",{"doc_id":7,"site_id":24},{"code":4,"msg":5,"data":91},[92,96,100,103,107,112,117,122,127,130,134],{"id":20,"doc_module":4,"doc_module_name":46,"category_name":93,"show_sort_weight":94,"slug":95},"Story & 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