JLU-SPH - iGEM 2026

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Parts

1.Design Overview

Rapid and specific identification of respiratory pathogens requires molecular components that are not only sensitive, but also modular and reusable.

To support our RPA–Cas12a detection platform, we developed a modular Part collection covering the biosynthesis of the core LbCas12a nuclease and pathogen-specific assay components for target amplification and recognition.

Once the core LbCas12a nuclease is available, the detection system follows a common molecular workflow: Target Recognition → RPA Amplification → Cas12a Recognition → Signal Generation

To organize our Parts according to their roles in the overall platform, we divided the collection into two functional layers:

1.1 Core Enzyme Biosynthesis Layer

This layer provides the core LbCas12a nuclease required for the detection platform.

It includes:

E. coli B codon-optimized LbCas12a CDS

T7-driven His₆–TEV–LbCas12a Expression Cassette

1.2 Pathogen-Specific Recognition Layer

This layer determines which pathogen is detected.

It includes:

Synthetic target templates

RPA primer pairs

Cas12a crRNAs

Together, these Parts form a modular toolkit for expandable nucleic-acid detection.

2. Collection at a Glance

2.1 Core Enzyme Biosynthesis Parts

Part Main Role Suggested Type BBa #
E. coli B codon-optimized LbCas12a CDS Core LbCas12a coding sequence CDS / Basic Part BBa_26806TBI
T7-driven His6-TEV- LbCas12a Recombinant LbCas12a production Engineered Region / Composite Part BBa_26OVD7TR

2.2 Pathogen-Specific Parts

Part Synthetic Target Forward Primer Reverse Primer Cas12a crRNA
Respiratory syncytial virus BBa_26RITQGC BBa_26M42NDA BBa_26IVYHX0 BBa_26LPPRQU
Human metapneumovirus-B BBa_268ZOMYX BBa_26C5IQYJ BBa_26Q062XR BBa_269BNB8L
Haemophilus influenzae BBa_26G8N35H BBa_26OB5PRH BBa_26E3BKR1 BBa_26IXTE4N
Streptococcus pneumoniae BBa_26Q36DFE BBa_26HAUKYN BBa_26WQYC45 BBa_263AQFBT
Bordetella pertussis BBa_260SEHAI BBa_26H3W838 BBa_26K5KK6T BBa_269UE9N9

2.3 LbCas12a Biosynthesis Parts

LbCas12a serves as the shared core nuclease of our RPA–Cas12a detection platform. To support recombinant production of this enzyme, we designed two biosynthesis-related Parts: a codon-optimized LbCas12a CDS and a complete T7-driven expression cassette.

Part Name Part Type Function
E. coli B codon-optimized
LbCas12a CDS
CDS / Basic Part Encodes the LbCas12a nuclease derived from Lachnospiraceae bacterium ND2006. The CDS was codon-optimized for recombinant expression in E. coli and serves as a reusable core nuclease coding module.
T7-driven His6-TEV- LbCas12a Expression Cassette Engineered Region /
Composite Part
Provides a complete T7-driven expression unit for recombinant production of LbCas12a in E. coli BL21(DE3), incorporating elements for inducible expression, His₆-mediated affinity purification, and optional TEV-mediated tag removal.

2.4 Synthetic Target Templates

Synthetic target templates provide defined DNA substrates for assay development.

They represent selected pathogen-associated genomic regions and can serve as positive-control templates for RPA amplification and downstream Cas12a-based detection.

Using synthetic DNA allows the molecular workflow to be developed without requiring intact pathogenic organisms.

Pathogen Part Name Part Type Function
Respiratory syncytial virus (RSV) RSV N Gene Synthetic Target Template PCR product / Basic Part A synthetic, non-infectious DNA target template containing a conserved region of the HRSV N gene, designed to serve as a positive control for RPA amplification and CRISPR-Cas12a-based nucleic acid detection of HRSV, including subgroup A and subgroup B.
Human metapneumovirus-B (hMPV-B) hMPV-B N Gene Synthetic Target Template PCR product / Basic Part A synthetic, non-infectious DNA target template containing a conserved region of Human metapneumovirus-B, designed to serve as a positive control for RPA amplification and CRISPR-Cas12a-based nucleic acid detection
Haemophilus influenzae (HI) HI ompP6 Gene Synthetic Target Template PCR product / Basic Part A synthetic, non-infectious DNA target template containing a conserved region of Haemophilus influenzae, designed to serve as a positive control for RPA amplification and CRISPR-Cas12a-based nucleic acid detection
Streptococcus pneumoniae SPN lytA Gene Synthetic Target Template PCR product / Basic Part A 251 bp Streptococcus pneumoniae target amplicon containing the target sequence required for recognition by the SPN-specific Cas12a crRNA. It is intended to serve as the amplification target and positive-control template in an RPA-Cas12a nucleic acid detection system.
Bordetella pertussis BP IS1663 Gene Synthetic Target Template PCR product / Basic Part A synthetic, non-infectious DNA target template containing a selected target region from Bordetella pertussis. It is designed to serve as a positive-control template for RPA isothermal amplification and subsequent CRISPR-Cas12a-based nucleic acid detection.

2.5 RPA Primer Parts

Recombinase Polymerase Amplification enables rapid amplification of DNA under isothermal conditions.

For each pathogen, a corresponding forward and reverse primer pair forms the amplification component of the pathogen-specific layer.

Pathogen Primer Role Part Name Role in Our System
Respiratory syncytial virus (RSV) Forward Primer RSV N Gene RPA Forward Primer RSV N Gene primer pair: amplifies the selected HRSV Ngene target for downstream Cas12a recognition.
Reverse Primer RSV N Gene RPA Reverse Primer
Human metapneumovirus-B (hMPV-B) Forward Primer hMPV-B N Gene RPA Forward Primer hMPV-B N Gene primer pair: form the pathogenspecific RPA amplification module for hMPV-B detection.
Reverse Primer hMPV-B N Gene RPA Reverse Primer
Haemophilus influenzae (HI) Forward Primer HI ompP6 Gene RPA Forward Primer HI ompP6 Gene primer pair: amplifies the selected H. influenzae target sequence and generates the substrate for downstream Cas12a recognition.
Reverse Primer HI ompP6 Gene RPA Reverse Primer
Streptococcus pneumoniae Forward Primer SPN lytA Gene RPA Forward Primer SPN lytA Gene primer pair: amplifies the selected 251 bp Streptococcus pneumoniae target sequence and generates the substrate for downstream Cas12a recognition.
Reverse Primer SPN lytA Gene RPA Reverse Primer
Bordetella pertussis Forward Primer BP IS1663 Gene RPA Forward Primer BP IS1663 Gene primer pair: amplifies the selected Bordetella pertussis target sequence and generates the substrate for downstream Cas12a recognition.
Reverse Primer BP IS1663 Gene RPA Reverse Primer

2.6 Cas12a crRNA Parts

RPA provides target amplification, while Cas12a crRNAs provide sequence-specific recognition.

Each crRNA contains a guide region corresponding to the target sequence.

Following recognition of the amplified DNA, the Cas12a–crRNA complex activates Cas12a-mediated collateral cleavage for downstream signal generation.

Therefore, the crRNA functions as the recognition module of our detection platform.

Pathogen Part Name Role in Our System
Respiratory syncytial virus (RSV) RSV N Gene-targeting LbCas12a crRNA This synthetic crRNA contains an LbCas12acompatible directrepeat region and an HRSVspecific spacer.It guides LbCas12a toward the selected HRSV target sequence.
Human metapneumovirus-B (hMPV-B) hMPV-B N Gene-targeting LbCas12a crRNA This crRNA guides Cas12a recognition of the hMPV-B target sequence following RPA amplification.
Haemophilus influenzae (HI) HI ompP6 Gene-targeting LbCas12a crRNA This synthetic Cas12a crRNA guides recognition of the selected H. influenzae target following RPA amplification.
Streptococcus pneumoniae SPN lytA Gene-targeting LbCas12a crRNA This synthetic Cas12a crRNA contains a Cas12a-compatible direct-repeat region and an SPN-specific spacer. It guides Cas12a to recognize the complementary target sequence within the SPN RPA amplicon following RPA amplification.
Bordetella pertussis BP IS1663 Gene-targeting LbCas12a crRNA This synthetic Cas12a crRNA guides recognition of the selected Bordetella pertussis target following RPA amplification.

Functional Classification

3.1 Biosynthesis Module

Provides the core LbCas12a nuclease required for the detection platform.

Includes:

E. coli B codon-optimized LbCas12a CDS

T7-driven His₆–TEV–LbCas12a Expression Cassette

3.2 Target and Recognition Module

Determines molecular specificity.

Includes:

Synthetic target templates

Pathogen-specific RPA primers

Cas12a crRNAs

3.3 Amplification Module

Supports pathogen-specific nucleic-acid amplification.

Includes:

RPA primer pairs

From Parts to a Modular Detection Toolkit

Our Part collection can therefore be summarized as:

Foundation Step - Produce the Core Enzyme

Use the LbCas12a biosynthesis Parts to support recombinant production of the core LbCas12a nuclease.

Step 1 - Select the Pathogen

Choose the pathogen-specific target.

Step 2 - Amplify the Target

Use the corresponding RPA primer pair.

Step 3 - Recognize the Amplicon

Use the corresponding Cas12a crRNA together with LbCas12a to recognize the amplified target.

The key principle is simple:The pathogen-specific components change, while the core LbCas12a biosynthesis module can remain reusable across different pathogen-specific assays.